30 results on '"Jiaqi Meng"'
Search Results
2. Visual and patient-reported outcomes of a diffractive trifocal intraocular lens in highly myopic eyes: a prospective multicenter study
- Author
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Jiaqi Meng, Yanwen Fang, Jingcai Lian, Xu Chen, Jing Zhou, Wenwen He, Keke Zhang, Fan Yang, Yi Lu, and Xiangjia Zhu
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Ophthalmology ,Health Professions (miscellaneous) - Abstract
Background To investigate the visual and patient-reported outcomes of a diffractive trifocal intraocular lens (IOL) in highly myopic eyes. Methods Patients with planned cataract removal by phacoemulsification and implantation of a trifocal IOL (AT LISA tri 839MP) were enrolled in the prospective, multicenter cohort study. Patients were allocated into three groups according to their axial length (AL): control group, AL Results After surgery, the uncorrected distance visual acuity improved from 0.59 ± 0.41 to 0.06 ± 0.12 logMAR (P P P P Conclusions In eyes with a high degree of myopia (AL
- Published
- 2023
3. Synthesis of cuprous oxide nanoparticles on graphitic carbon nitride and reduced graphene oxide and their catalytic performance toward the reduction of 4-nitrophenol
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Zhiling Xiang, Xinyi Wang, Lina Xu, Zhen Wang, Jiaqi Meng, Jingjia Zhang, Jingxiang Zhao, and Hongxia Wang
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Mechanics of Materials ,Mechanical Engineering ,General Materials Science - Published
- 2022
4. Chronic Inflammation Pathway NF-κB Cooperates with Epigenetic Reprogramming to Drive the Malignant Progression of Glioblastoma
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Kefeng, Lin, Wenli, Gao, Ning, Chen, Shuyao, Yang, Han, Wang, Ran, Wang, Fang, Xie, Jiaqi, Meng, Eric W-F, Lam, Suyi, Li, Wei, Cheng, Puxiang, Chen, Hongjin, Wu, Jinsong, Yan, Di, Jin, and Bilian, Jin
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Histones ,Inflammation ,Cell Line, Tumor ,NF-kappa B ,Humans ,Enhancer of Zeste Homolog 2 Protein ,Cell Biology ,Glioblastoma ,Molecular Biology ,Applied Microbiology and Biotechnology ,Ecology, Evolution, Behavior and Systematics ,Epigenesis, Genetic ,Developmental Biology - Abstract
Without an effective strategy for targeted therapy, glioblastoma is still incurable with a median survival of only 15 months. Both chronic inflammation and epigenetic reprogramming are hallmarks of cancer. However, the mechanisms and consequences of their cooperation in glioblastoma remain unknown. Here, we discover that chronic inflammation governs H3K27me3 reprogramming in glioblastoma through the canonical NF-κB pathway to target EZH2. Being a crucial mediator of chronic inflammation, the canonical NF-κB signalling specifically directs the expression and redistribution of H3K27me3 but not H3K4me3, H3K9me3 and H3K36me3. Using RNA-seq screening to focus on genes encoding methyltransferases and demethylases of histone, we identify EZH2 as a key methyltransferase to control inflammation-triggered epigenetic reprogramming in gliomagenesis. Mechanistically, NF-κB selectively drives the expression of EZH2 by activating its transcription, consequently resulting in a global change in H3K27me3 expression and distribution. Furthermore, we find that co-activation of NF-κB and EZH2 confers the poorest clinical outcome, and that the risk for glioblastoma can be accurately molecularly stratified by NF-κB and EZH2. It is notable that NF-κB can potentially cooperate with EZH2 in more than one way, and most importantly, we demonstrate a Synergistic effect of cancer cells induced by combinatory inhibition of NF-κB and EZH2, which both are frequently over-activated in glioblastoma. In summary, we uncover a functional cooperation between chronic inflammation and epigenetic reprogramming in glioblastoma, combined targeting of which by inhibitors guaranteed in safety and availability furnishes a potent strategy for effective treatment of this fatal disease.
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- 2022
5. Author Correction: Aberrant TGF-β1 signaling activation by MAF underlies pathological lens growth in high myopia
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Xiangjia Zhu, Yu Du, Dan Li, Jie Xu, Qingfeng Wu, Wenwen He, Keke Zhang, Jie Zhu, Linying Guo, Ming Qi, Ailin Liu, Jiao Qi, Guangyu Wang, Jiaqi Meng, Zhenglin Yang, Kang Zhang, and Yi Lu
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Multidisciplinary ,General Physics and Astronomy ,General Chemistry ,General Biochemistry, Genetics and Molecular Biology - Published
- 2022
6. Focus on Early COPD: Definition and Early Lung Development
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Ying Wang, Fengyuan Li, Can Li, Jiaqi Meng, and Weichang Yang
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medicine.medical_specialty ,Birth weight ,Review ,Disease ,early lung development ,Pulmonary Disease, Chronic Obstructive ,Pregnancy ,Risk Factors ,Air Pollution ,medicine ,Humans ,definition ,Child ,Intensive care medicine ,Lung ,Cause of death ,early COPD ,Childhood asthma ,COPD ,business.industry ,Mortality rate ,Infant, Newborn ,General Medicine ,medicine.disease ,Asthma ,respiratory tract diseases ,medicine.anatomical_structure ,Premature Birth ,Female ,High incidence ,business - Abstract
Chronic obstructive pulmonary disease (COPD) is a disease with high incidence rate and mortality rates worldwide. It is the third leading cause of death in the world. Nevertheless, little progress has been made in treating and preventing the disease. Under these circumstances, the concept of “early COPD” was proposed. Although this concept is not new, most health-care workers do not fully understand early COPD and tend to confuse it with mild COPD. In this review, we mainly discuss the definition of early COPD and the developmental trajectory of lung function. Although patients with early COPD have no symptoms, their lung function is already lower than that of normal people. A relatively complete definition is needed to identify this group of people. Reduced lung function is the diagnostic criterion for COPD, but lung development is a long-term dynamic process. In addition to smoking and air pollution, we should pay more attention to prenatal and childhood risk factors, for example, parents smoking, birth weight, preterm birth, mode of delivery, childhood respiratory infections and childhood asthma. Health-care workers need to be fully aware of early COPD, to reduce the morbidity of COPD and take effective measures to prevent these risk factors.
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- 2021
7. Mechanisms of circRNA/lncRNA-miRNA interactions and applications in disease and drug research
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Benchi Ma, Shihao Wang, Wenzheng Wu, Pufan Shan, Yufan Chen, Jiaqi Meng, Liping Xing, Jingyi Yun, Longhui Hao, Xiaoyu Wang, Shuyan Li, and Yinghui Guo
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Pharmacology ,General Medicine - Published
- 2023
8. Tolerance to lens tilt and decentration of two multifocal intraocular lenses: using the quick contrast sensitivity function method
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Dongling Guo, Jiaqi Meng, Keke Zhang, Wenwen He, Shiyu Ma, Zhong-lin Lu, Yi Lu, and Xiangjia Zhu
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Ophthalmology ,Health Professions (miscellaneous) - Abstract
Background Quick contrast sensitivity function (qCSF) method is an advanced quick method for contrast sensitivity function (CSF) evaluation. This study evaluated the contrast sensitivity (CS) of eyes undergoing cataract surgery with multifocal intraocular lens (IOL) implantation and its tolerance to IOL tilt and IOL decentration using the qCSF method. Methods Patients undergoing uneventful phacoemulsification and a trifocal IOL (Zeiss AT LISA tri 839MP, Carl Zeiss, Germany) or an extended depth-of-focus (EDOF) IOL (Tecnis Symfony ZXR00, Johnson & Johnsons, USA) implantation were included. Monocular contrast sensitivity was measured using the qCSF method at one month post-surgery. IOL tilt and decentration were measured using an optical aberrometer (OPD-Scan III, NIDEK, Japan). Results Seventy-two patients/eyes with the 839MP IOL and 64 patients/eyes with the ZXR00 IOL were included. Area under the log CSF (AULCSF) and CS acuity did not differ significantly between the two groups. The ZXR00 IOL group showed better CS at 1 cpd (1.137 ± 0.164 vs. 1.030 ± 0.183 logCS) and 1.5 cpd (1.163 ± 0.163 vs. 1.071 ± 0.161 logCS), while the 839MP IOL group had better CS at 6 cpd (0.855 ± 0.187 vs. 0.735 ± 0.363 logCS). In the 839MP IOL group, all CSF metrics were negatively correlated with IOL tilt (all P P > 0.05). Among myopic eyes, fewer CSF metrics were negatively correlated with IOL tilt in the ZXR00 IOL group than in the 839MP IOL group. No significant correlation was found between CSF metrics and IOL decentration. Conclusions The ZXR00 and the 839MP IOL groups presented comparable CSF. CS was negatively correlated with IOL tilt, instead of decentration in multifocal IOLs, particularly among myopic eyes. The ZXR00 IOL had better tolerance to IOL tilt in myopic eyes.
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- 2022
9. Mitochondrion-targeting near-infrared fluorescent probe for detecting intracellular nanomolar level hydrogen sulfide with high recognition rate
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Xuefei Wang, Jiaqi Meng, Kaiquan Zhang, Zhiyuan Tian, Ming Liu, and Weier Bao
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Hydrogen sulfide ,Stimulation ,02 engineering and technology ,Mitochondrion ,01 natural sciences ,Biochemistry ,Analytical Chemistry ,chemistry.chemical_compound ,Humans ,Hydrogen Sulfide ,Fluorescent Dyes ,Microscopy, Confocal ,Chemistry ,Optical Imaging ,010401 analytical chemistry ,equipment and supplies ,021001 nanoscience & nanotechnology ,Fluorescence ,Mitochondrial respiration ,Mitochondria ,0104 chemical sciences ,Microscopy, Fluorescence ,Biophysics ,Signal transduction ,0210 nano-technology ,Intracellular ,HeLa Cells - Abstract
Hydrogen sulfide (H2S) typically plays biphasic biological roles in living organisms with subnormal H2S exerting cytoprotective effects such as participating in cardioprotective signaling pathways while H2S with higher-than-normal concentrations in localized tissues acting the opposite way such as inhibiting mitochondrial respiration. Such concentration-dependent biological and pathological roles of H2S with the wide involvement of mitochondria and the elusive feature of H2S definitely highlight the vital significance of fast and precise estimation of the physiological level of H2S in specific microenvironments, particularly within cellular mitochondria. In this work, we developed a new type of fluorescent probe (QcyCHO) featured with H2S-triggered off-to-on near-infrared (NIR) fluorescence conversion within ~ 10 min, limit of detection (LOD) down to 8.3 nM, and high recognition specificity over other similarly interfering species. The ideal mitochondrion-targeting ability, high recognition specificity over typical interfering substances and other physiologically relevant species, and the ability for mapping intracellular H2S in living cells of QcyCHO probe were also unequivocally confirmed, which imply its potential for shedding light on the biology of H2S and therapeutic development in H2S-associated diseases by identifying the specific physiological stimuli inducing H2S production and determining the levels of H2S at the location and time of stimulation.
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- 2021
10. Construction Quality Control Study of Double-Layer Continuous Paving for Large-Thickness Cement-Stabilized Base
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Tao Hu, Mengyuan Zhang, Xuancang Wang, Jiaqi Meng, and Longting Ding
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050210 logistics & transportation ,Materials science ,Article Subject ,05 social sciences ,0211 other engineering and technologies ,Base (geometry) ,Compaction ,02 engineering and technology ,Proctor compaction test ,Engineering (General). Civil engineering (General) ,Paint adhesion testing ,Transverse plane ,021105 building & construction ,0502 economics and business ,Shear strength ,Axle load ,Species evenness ,TA1-2040 ,Composite material ,Civil and Structural Engineering - Abstract
In order to verify the interlayer bonding effect of double-layer continuous paving technology of the thick cement-stabilized base and solve the construction quality control problem of the double-layer continuous paving, based on the interlayer bonding mechanism and the evenness passing mechanism, the laboratory interlayer adhesion test, field test of evenness disturbance, and compaction test were conducted to verify the continuous paving interlayer bonding state. The effect of interval time on interlayer bonding state, evenness, and compactness was analyzed, and construction quality control measures were proposed. The test results show that the double-layer continuous paving process could significantly improve the interlayer bonding state, but there is still a gap from the ideal state (completely continuous). The pull-off strength of continuous paving specimens was 2.1 times that of the discontinuous paving specimens; the shear strength was 2.4 times that of discontinuous paving specimens. At different paving intervals, the longitudinal evenness of the upper and lower layers has little difference. The 140 kN axle load controls the transverse evenness disturbance within 3 mm, which met the requirements of the specification. Based on the evenness passing mechanism, the evenness control standard of double-layer continuous paving base was proposed. The compaction process of double-layer continuous paving base was proposed, and the feasibility was verified through the field test of compaction. The best interval time for double-layer continuous paving was also proposed; it is recommended that the best time for paving the upper layer is after the lower layer is laid for 6 hours (the final setting time of the cement). The construction quality control measures proposed in this study provide a theoretical basis for the construction of double-layer continuous paving technology with thick cement-stabilized base.
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- 2020
11. Influence of IOL Weight on Long-Term IOL Stability in Highly Myopic Eyes
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Yuxi, Chen, Jiaqi, Meng, Kaiwen, Cheng, Qiang, Lu, Ling, Wei, Yi, Lu, and Xiangjia, Zhu
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General Medicine - Abstract
PurposeThis study aimed to investigate the influence of intraocular lens (IOL) weight on long-term IOL stability in highly myopic eyes.Materials and MethodsA total of 205 highly myopic cataract eyes of 205 patients implanted with the MC X11 ASP (Group A, 86 eyes) or 920H IOL (Group B, 119 eyes) were included in this retrospective study. Eyes were divided into 3 subgroups according to the IOL power: low (≥-5 to ResultsGroup B had a significantly greater IOL weight than Group A (Group B vs. Group A: 28.31 ± 2.01 mg vs. 25.71 ± 4.62 mg, P < 0.001). Correspondingly, Group B presented significantly greater overall and inferior decentration than Group A, especially for low and medium IOL power (all P < 0.05). In both groups, overall and vertical decentration was significantly correlated with IOL weight (all P < 0.05). Group B showed a significantly greater ACO area than Group A (P < 0.05). Multivariate analysis showed that decentration in Group A was affected by IOL weight, while decentration in Group B was affected by IOL weight and AL.ConclusionsHigher IOL weight may lead to greater long-term IOL decentration in highly myopic eyes, while the haptic design may play a role in anterior capsular contraction.
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- 2022
12. Sp1 induced gene TIMP1 is related to immune cell infiltration in glioblastoma
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Lu Liu, Shuyao Yang, Kefeng Lin, Xiaoman Yu, Jiaqi Meng, Chao Ma, Zheng Wu, Yuchao Hao, Ning Chen, Qi Ge, Wenli Gao, Xiang Wang, Eric W.-F. Lam, Lin Zhang, Fangcheng Li, Bilian Jin, and Di Jin
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Multidisciplinary ,Lymphocytes, Tumor-Infiltrating ,Tissue Inhibitor of Metalloproteinase-1 ,Carcinogenesis ,Sp1 Transcription Factor ,Cell Line, Tumor ,Tumor Microenvironment ,Humans ,Glioblastoma - Abstract
Tumor immune microenvironment exerts a profound effect on the population of infiltrating immune cells. Tissue inhibitor of matrix metalloproteinase 1 (TIMP1) is frequently overexpressed in a variety of cells, particularly during inflammation and tissue injury. However, its function in cancer and immunity remains enigmatic. In this study, we find that TIMP1 is substantially up-regulated during tumorigenesis through analyzing cancer bioinformatics databases, which is further confirmed by IHC tissue microarrays of clinical samples. The TIMP1 level is significantly increased in lymphocytes infiltrating the tumors and correlated with cancer progression, particularly in GBM. Notably, we find that the transcriptional factor Sp1 binds to the promoter of TIMP1 and triggers its expression in GBM. Together, our findings suggest that the Sp1-TIMP1 axis can be a potent biomarker for evaluating immune cell infiltration at the tumor sites and therefore, the malignant progression of GBM.
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- 2022
13. Targeting Cooperation of Chronic Inflammation with Epigenetic Reprogramming Triggers a Synthetic Lethality in Glioblastoma Multiforme
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Kefeng Lin, Wenli Gao, Ning Chen, Han Wang, Ran Wang, Shuyao Yang, Fang Xie, Jiaqi Meng, Eric W.-F. Lam, Chao Ma, Suyi Li, Ning Kang, Yuchao Hao, Zheng Wu, Qi Ge, Lili Guo, Wei Cheng, Puxiang Chen, Hongjin Wu, Jinsong Yan, Di Jin, and Bilian Jin
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macromolecular substances - Abstract
Background Without an effective strategy for targeted therapy, glioblastoma multiforme (GBM) is still incurable, with a median survival of only 15 months. Both chronic inflammation and epigenetic reprogramming are hallmarks of cancer. However, the mechanisms and consequences of their cooperation in GBM remain unknown. Methods Western blotting was carried out to detect levels of various histone modifications affected by NF-κB signalling. Then, RNA-seq was used to screen genes encoding methyltransferases and demethylases of histone. Dual-luciferase reporter gene and ChIP assays were performed to determine whether NF-κB activates the transcription of EZH2. Subsequently, ChIP-seq and RT-qPCR were performed to explore the variety of H3K27me3 distribution. Expression levels of p65 and EZH2 in glioma samples were evaluated by IHC, and tumorigenicity assays (in vitro and in vivo) were performed to demonstrate the effects of combining NF-κBi and EZH2i on GBM progression. Results We discovered that chronic inflammation governs H3K27me3 reprogramming in GBM through the canonical NF-κB pathway to target EZH2. Being a crucial mediator of chronic inflammation, the canonical NF-κB signalling specifically directs the expression and redistribution of H3K27me3 but not H3K4me3, H3K9me3 and H3K36me3. Then, we identified EZH2 as a key methyltransferase to control inflammation-triggered epigenetic reprogramming in gliomagenesis. Mechanistically, NF-κB selectively drives the expression of EZH2 by activating its transcription, consequently resulting in a global change of H3K27me3 expression and distribution. Furthermore, we find that co-activation of NF-κB and EZH2 confers the poorest clinical outcome, and that the risk for GBM can be accurately molecularly stratified by NF-κB and EZH2. It is notable that NF-κB can potentially cooperate with EZH2 in more than one way, and most importantly, we demonstrated a synthetic lethality of cancer cells induced by combinatory inhibition of NF-κB and EZH2, which both are frequently over-activated in GBM. Conclusions We uncover a functional cooperation between chronic inflammation and epigenetic reprogramming in GBM. Thus, combined targeting of NF-κB and EZH2 by inhibitors can be a potent strategy for the effective treatment of this fatal disease.
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- 2022
14. In-situ route for the graphitized carbon/TiO2 composite photocatalysts with enhanced removal efficiency to emerging phenolic pollutants
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Xinyue Wang, Yihang Guo, Peiyu Xia, Lingyu Li, Jiaqi Meng, Yunqing Liu, and Yuxin Yang
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Anatase ,Aqueous solution ,Materials science ,Composite number ,chemistry.chemical_element ,02 engineering and technology ,General Medicine ,010402 general chemistry ,021001 nanoscience & nanotechnology ,01 natural sciences ,0104 chemical sciences ,Catalysis ,Chemical engineering ,chemistry ,Photocatalysis ,Degradation (geology) ,0210 nano-technology ,Photodegradation ,Carbon - Abstract
TiO2 is the most photoactive material because of its superstrong photooxidizing ability, and TiO2 photocatalysis has been widely applied in sustainable water treatment and environmental remediation. However, poor sunlight or visible-light harvesting efficiency and fast recombination rate of the photogenerated charge carriers severely limit the practical applications of TiO2. To overcome these problems, the present work demonstrates a facile in-situ co-condensation method combined with hydrothermal treatment to prepare a series of graphitized carbon/TiO2 composite photocatalysts, and anatase TiO2 phase and π-π-conjugated polycyclic aromatic carbon structure are created simultaneously. As-prepared TiO2/C composites exhibit remarkably high visible-light photocatalytic activity in the degradation of aqueous emerging phenolic pollutants, acetaminophen (APAP) and methylparaben (MPB), and apparent rate constant of the TiO2/C composite with carbon doping level of 10.3% for APAP and MPB removal is 7.6 and 2.8 times higher than that of bare TiO2, and 6.2 and 2.6 times higher than that of Degussa P25 TiO2. Based on the results of photoelectrochemical experiments, indirect chemical probe measurements, and ESR spectroscopy, it is verified that doping TiO2 with graphitized carbon is responsible for this enhanced photocatalytic activity, which renders the improved visible-light harvesting ability, the accelerated separation of the photogenerated charge carriers, and enlarged BET surface areas. Through analyzing the intermediates yielded in the photodegradation process, the pathway of visible-light photocatalytic degradation of APAP and MPB over the TiO2/C composite is proposed.
- Published
- 2020
15. Contrast Sensitivity Function: A More Sensitive Index for Assessing Protective Effects of the Cilioretinal Artery on Macular Function in High Myopia
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Ling, Wei, Jiaqi, Meng, Kaiwen, Cheng, Wenwen, He, Jiao, Qi, Zhong-Lin, Lu, Yi, Lu, and Xiangjia, Zhu
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General Medicine - Abstract
To assess the benefits of the cilioretinal artery on macular function in high myopia using the quantitative contrast sensitivity function (qCSF) method.This cross-sectional study was conducted at the Eye and Ear, Nose, and Throat Hospital of Fudan University. In total, 137 highly myopic patients (with axial length [AL] ≥ 26.00 mm) were enrolled and divided into cilioretinal artery absent and present groups based on their fundus photographs. One eye in each patient was randomly selected. Choroid thickness was measured using macular optical coherence tomography. The best-corrected visual acuity (BCVA) was evaluated by Early Treatment Diabetic Retinopathy Study charts, and the area under the log CSF (AULCSF), CSF acuity, and CS at six spatial frequencies were evaluated with the qCSF method.Although no significant BCVA difference was found between the cilioretinal artery absent (97 patients) and present (40 patients) groups, choroid thickness, AULCSF, CSF acuity, and CSF at low and intermediate spatial frequencies (1-6 cycles per degree) were all significantly higher in the cilioretinal artery present group than in the absent group (all P0.05). In addition, eyes with temporal cilioretinal arteries exhibited significantly higher AULCSF, CSF acuity, and CSFs at 3 and 6 cycles per degree (all P0.05) than those with a nasal one (all P0.05). Multivariate analysis showed that better AULCSF was associated with the presence of cilioretinal artery and the interaction of AL and choroid thickness.The cilioretinal artery may associate with the larger choroid thickness in highly myopic eyes and may play a role in preserving qCSF outcomes, which are more sensitive than chart-based acuity tests.
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- 2022
16. The Influence of Analysis Mode Selection on Prediction Accuracy of Corneal Astigmatism Using Pentacam
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Jiaqi Meng, Jifeng Yu, Wenwen He, Ling Wei, Yi Lu, and Xiangjia Zhu
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Medicine (General) ,medicine.medical_specialty ,genetic structures ,Optical power ,Astigmatism ,Pupil ,toric intraocular lens ,R5-920 ,Cornea ,Ophthalmology ,medicine ,Pentacam ,Original Research ,Physics ,Mode selection ,ocular biometry ,General Medicine ,medicine.disease ,Ring mode ,eye diseases ,medicine.anatomical_structure ,Intraocular lenses ,cataract ,Medicine ,sense organs ,corneal astigmatism ,Corneal astigmatism - Abstract
Purpose: To evaluate the influence of analysis mode selection on prediction accuracy of corneal astigmatism using Pentacam.Methods: Fifty-nine eyes of 59 patients implanted with toric intraocular lenses (IOLs) were included in the retrospective study. Preoperative corneal astigmatism (total refractive power) measured with Pentacam was analyzed based on 2-, 3-, 4-, or 5-mm ring or zone mode either centered on corneal apex or pupil center. Actual corneal astigmatism was calculated based on residual astigmatism on the corneal plane, surgical-induced astigmatism, and effective toric power on the corneal plane. Prediction error, the difference between actual corneal astigmatism and measured astigmatism, was compared among different analysis modes. Influences of local topography on prediction error were also evaluated.Results: Based on the zone mode, prediction error was lower when centered on corneal apex than on pupil center at different diameters, whereas based on the ring mode, this difference was only seen at 2-mm cornea (all P < 0.05). When centered on the corneal apex, the zone mode showed lower prediction error than the ring mode at 4- and 5-mm corneas (both P < 0.001), regardless of asymmetric or symmetric astigmatism. In symmetric bowtie, the zone mode showed lower prediction error than the ring mode at 2-mm cornea of the small bowtie, and 4- and 5-mm corneas of the large bowtie (all P < 0.05).Conclusions: For toric IOL planning, the corneal apex may be a better reference center. At a cornea diameter ≥4 mm, the zone mode is more accurate than the ring mode. Local topography affects prediction accuracy in the symmetric bowtie.
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- 2021
17. Carboxylesterase and lipase-catalyzed degradation of phthalate esters in soil and water: Congener structure selectivity and specificity
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Jianqiang Sun, Haofeng Zhu, Xindong Yang, Yan Zheng, Tianchi Sun, Honglei Xu, Jiaqi Meng, and Anping Zhang
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Soil Science ,Plant Science ,General Environmental Science - Published
- 2022
18. Enhanced gas-phase photocatalytic removal of aromatics over direct Z-scheme-dictated H3PW12O40/g-C3N4 film-coated optical fibers
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Xinyue Wang, Yuxin Yang, Jiaqi Meng, Yihang Guo, Xia Yang, and An Hu
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Materials science ,Process Chemistry and Technology ,Doping ,02 engineering and technology ,010402 general chemistry ,021001 nanoscience & nanotechnology ,01 natural sciences ,Toluene ,Redox ,Catalysis ,0104 chemical sciences ,chemistry.chemical_compound ,Reaction rate constant ,Chemical engineering ,chemistry ,Photocatalysis ,Charge carrier ,0210 nano-technology ,Benzene ,General Environmental Science - Abstract
Environmentally benign photocatalytic oxidation is one of the most promising approaches to remove volatile, highly toxic and refractory aromatics, and the key points of gas-phase photocatalytic oxidation of aromatics are to develop efficient photocatalysts and design suitable photoreactors. Here, the custom-designed H3PW12O40/g-C3N4 film-coated optical fiber photoreactor is demonstrated for gas-phase simulated sunlight photocatalytic removal of aromatics including benzene, toluene and m-xylene. At relative humidity of 73% and air atmosphere, the H3PW12O40/g-C3N4 film-coated optical fibers with H3PW12O40 doping level of 3.2% exhibit remarkably higher photocatalytic removal efficiency of benzene, toluene and m-xylene than that of the g-C3N4 film, and apparent rate constant of the H3PW12O40/g-C3N4 film for benzene, toluene and m-xylene removal is 2.42, 1.75 and 3.67 times higher than that of g-C3N4 film. The enhanced photocatalytic activity of the H3PW12O40/g-C3N4 film is ascribed to direct Z-scheme-dictated charge carrier migration mechanism, imparting not only superior photogenerated charge carrier separation ability but also undiminished redox capability of the photogenerated electrons and holes; additionally, the increased contact area of catalyst film with the substrates and improved light harvesting ability give rise to the important contribution to gas-phase photocatalytic removal of aromatics. Moreover, the catalyst film exhibits excellent adhesion, stability and recyclability, and the activity loss is negligible after total thirty times’ catalytic runs.
- Published
- 2019
19. NF‐κB p65 promotes ovarian cancer cell proliferation and migration via regulating mortalin
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Mengyuan Lv, Ling Yang, Shan Li, Shi Qiu, Wen Liu, Jiaqi Meng, and Ji Zuo
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Transcriptional Activation ,mortalin ,0301 basic medicine ,proliferation ,Apoptosis ,Biology ,migration ,Mitochondrial Proteins ,Small hairpin RNA ,03 medical and health sciences ,chemistry.chemical_compound ,0302 clinical medicine ,Downregulation and upregulation ,Cell Movement ,Biomarkers, Tumor ,Tumor Cells, Cultured ,medicine ,Transcriptional regulation ,Humans ,HSP70 Heat-Shock Proteins ,Promoter Regions, Genetic ,Cell Proliferation ,Ovarian Neoplasms ,Gene knockdown ,Cell growth ,NF‐κB ,Transcription Factor RelA ,NF-κB ,Original Articles ,Cell Biology ,medicine.disease ,Cell biology ,Gene Expression Regulation, Neoplastic ,ovarian cancer ,030104 developmental biology ,chemistry ,030220 oncology & carcinogenesis ,Molecular Medicine ,Female ,Original Article ,Ovarian cancer ,Chromatin immunoprecipitation - Abstract
Previous studies show that mortalin, a HSP70 family member, contributes to the development and progression of ovarian cancer. However, details of the transcriptional regulation of mortalin remain unknown. We aimed to determine whether NF‐κB p65 participates in the regulation of mortalin expression in ovarian cancer cells and to elucidate the underlying mechanism. Chromatin immunoprecipitation and luciferase reporter assay were used to identify mortalin gene sequences, to which NF‐κB p65 binds. Results indicated that NF‐κB p65 binds to the mortalin promoter at a site with the sequence ‘CGGGGTTTCA’. Using lentiviral pLVX‐NF‐κB‐puro and Lentivirus‐delivered NF‐κB short hairpin RNA (shRNA), we created ovarian cancer cell lines in which NF‐κB p65 was stably up‐regulated and down‐regulated. Using these cells, we found that downregulation of NF‐κB p65 inhibits the growth and migration of ovarian cancer cells. Further experimental evidence indicated that downregulation of NF‐κB p65 reduced mortalin, and upregulation of mortalin rescued the proliferation and migration of ovarian cancer cells reduced by NF‐κB p65 knockdown. In conclusion, NF‐κB p65 binds to the mortalin promoter and promotes ovarian cancer cells proliferation and migration via regulating mortalin.
- Published
- 2019
20. Formation and Evolution of Ideal Interfirm Collaborative Innovation Networks Based on Decision-Making Rules for Partner Selection
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Houxing Tang, Jiaqi Meng, Qifan Hu, Fang Li, and Yanping Gui
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Algebra and Number Theory ,Logic ,collaborative innovation ,knowledge sharing ,network structure ,partner selection ,decision-making rules ,Geometry and Topology ,Mathematical Physics ,Analysis - Abstract
On the basis of an external and static perspective on the topological structure of collaborative innovation networks, it is extremely difficult to answer the two most important concerns, namely, which structure is ideal and how to develop it in practice. By contrast, this study transfers to internal and dynamic perspectives, and then proposes that the essence of developing the ideal network lies in choosing the best partners. Therefore, we firstly propose the basic decision-making rules for selecting partners. In order of priority: knowledge distance, knowledge complementarity and barter exchange. Secondly, a model is constructed to describe this process of selecting partners and exchanging knowledge. Thirdly, the simulation results show that a small-world network is ideal in the initial stage of collaborative innovation. However, a random network is ideal in the mature periods. This result shows that the ideal network structure is not fixed, but affected by the life cycle of collaborative innovation alliance. Furthermore, this supports the notion that a small world is spontaneously generated in the real world, and also confirms that the formation of a small-world network will be driven intrinsically by a firm’s demand for external knowledge, and not necessarily by the external driving force of social capital. Finally, these findings solve the above two most important questions.
- Published
- 2022
21. MOF-Based Nanoagent Enables NIR-Triggered Dual Damage to Mitochondria via Synergistically Reinforced Oxidative Stress and Calcium Overload
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Jiaqi Meng, Ming Liu, Guanghui Ma, Wei Wei, Rongrong Jia, Siyuan Liu, Weier Bao, Shuang Wang, Yugang Wang, and Zhiyuan Tian
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Chemistry ,medicine ,Biophysics ,Mitochondrion ,DUAL (cognitive architecture) ,medicine.disease_cause ,Calcium overload ,Oxidative stress - Abstract
We herein developed a core-shell type antitumor nanoagent based on the synergistically reinforced oxidative stress and calcium overload to mitochondria, both of which were triggered by near-infrared (NIR) light. The folic acid (FA) moiety decorated on MOF shells enabled efficient cellular uptake of nanoagents. The upconversion nanoparticle (UCNP) core converted NIR light to ultraviolet (UV) light with the latter catalyzed Fe3+-to-Fe2+ reduction and simultaneously activated the photoacid generator encapsulated in the cavities of MOFs, which enabled the release of free Fe2+ and photoacidification of intracellular microenvironment, respectively. The overexpressed H2O2 in the mitochondria, highly reactive Fe2+ and acidic milieu synergistically reinforced Fenton reactions for producing lethal hydroxyl radicals in mitochondria. Moreover, the photoacidification of plasma induced calcium influx, leading to calcium overload in the mitochondria. The therapeutic potency of the nanoagent based on the dual mitochondrial damage has been unequivocally confirmed in cell- and patient-derived tumor xenograft models in vivo.
- Published
- 2021
22. Elevated Urbanization-driven Plant Accumulation and Human Intake Risks of Polycyclic Aromatic Hydrocarbons in Crops of Peri-urban Farmlands
- Author
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Anping Zhang, Tianwei Xu, Haofeng Zhu, Jiaqi Meng, Jiacheng Li, Jianqiang Sun, Honglei Xu, Xindong Yang, and Xintao Ye
- Subjects
Crops, Agricultural ,China ,Farms ,Agroforestry ,Health, Toxicology and Mutagenesis ,Urbanization ,Peri ,General Medicine ,Pollution ,Risk Assessment ,Soil ,Coal ,Carcinogens ,Environmental Chemistry ,Humans ,Soil Pollutants ,Environmental science ,Environmental Pollutants ,Polycyclic Aromatic Hydrocarbons ,Environmental Monitoring ,Vehicle Emissions - Abstract
As a ubiquitous carcinogen, polycyclic aromatic hydrocarbons (PAHs) are closely related to anthropogenic activities. The process of urbanization leads to the spatial interlacing of farmlands and urbanized zones. However, field evidence on the influence of urbanization on the accumulation of PAHs in crops of peri-urban farmlands is lacking. This study comparatively investigated the urbanization-driven levels, compositions, and sources of PAHs in 120 paired plant and soil samples collected from the Yangtze River Delta in China and their species-specific human intake risks. The concentrations of PAHs in crops and soils in the peri-urban areas were 2407.92 ng g−1 and 546.64 ng g−1, respectively, which are significantly higher than those in the rural areas. The PAHs in the root were highly relevant to those in the soils (R2 = 0.63, p < 0.01), and the root bioconcentration factors were higher than 1.0, implying the contributions of root uptake to plant accumulations. However, the translocation factors in the peri-urban areas (1.57 ± 0.33) were higher than those in the rural areas (1.19 ± 0.14), indicating the enhanced influence through gaseous absorption. For the congeners, the 2- to 3-ring PAHs showed a higher plant accumulation potential than the 4- to 6-ring PAHs. Principal component and source analyses show that the PAHs in the peri-urban plants predominantly resulted from urbanization parameters, such as coal combustion, vehicle emissions, and biomass burning. The mean values of estimated dietary intake of PAHs from the consumption of peri-urban and rural crops were 9116 ng d−1 and 6601.83 ng d−1, respectively. The intake risks of different crops followed the order rice > cabbage > carrot > pea. Given the significant input of PAHs from urban to farmland, the influence of many anthropogenic pollutants arising from rapid urbanization should be considered when assessing the agricultural food safety.
- Published
- 2021
23. MOFs-based nanoagent enables dual mitochondrial damage in synergistic antitumor therapy via oxidative stress and calcium overload
- Author
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Zhiyuan Tian, Rongrong Jia, Siyuan Liu, Yugang Wang, Guanghui Ma, Ming Liu, Weier Bao, Shuang Wang, Jiaqi Meng, and Wei Wei
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inorganic chemicals ,Infrared Rays ,Radical ,Science ,General Physics and Astronomy ,Drug development ,Mitochondrion ,medicine.disease_cause ,General Biochemistry, Genetics and Molecular Biology ,Article ,In vivo ,medicine ,Humans ,Organic-inorganic nanostructures ,Calcium overload ,Metal-Organic Frameworks ,Multidisciplinary ,Chemistry ,Hydroxyl Radical ,fungi ,General Chemistry ,Photon upconversion ,Mitochondria ,Nanostructures ,Oxidative Stress ,Drug delivery ,Biophysics ,Calcium ,Oxidative stress ,Intracellular ,HeLa Cells - Abstract
Targeting subcellular organelle with multilevel damage has shown great promise for antitumor therapy. Here, we report a core-shell type of nanoagent with iron (III) carboxylate metal-organic frameworks (MOFs) as shell while upconversion nanoparticles (UCNPs) as core, which enables near-infrared (NIR) light-triggered synergistically reinforced oxidative stress and calcium overload to mitochondria. The folate decoration on MOFs shells enables efficient cellular uptake of nanoagents. Based on the upconversion ability of UCNPs, NIR light mediates Fe3+-to-Fe2+ reduction and simultaneously activates the photoacid generator (pHP) encapsulated in MOFs cavities, which enables release of free Fe2+ and acidification of intracellular microenvironment, respectively. The overexpressed H2O2 in mitochondria, highly reactive Fe2+ and acidic milieu synergistically reinforce Fenton reactions for producing lethal hydroxyl radicals (•OH) while plasma photoacidification inducing calcium influx, leading to mitochondria calcium overload. The dual-mitochondria-damage-based therapeutic potency of the nanoagent has been unequivocally confirmed in cell- and patient-derived tumor xenograft models in vivo., Targeting damage to mitochondria has become an effective strategy antitumor therapies. Here, the authors report on nanoagents with upconversion nanoparticles as cores and photoacid-loaded MOFs as shells for NIR triggered Fenton reaction, acidification and calcium overload to provide synergistic mitochondrial damage.
- Published
- 2021
24. Cilioretinal Arteries in Highly Myopic Eyes: A Photographic Classification System and Its Association With Myopic Macular Degeneration
- Author
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Jiaqi Meng, Ling Wei, Keke Zhang, Wenwen He, Yi Lu, and Xiangjia Zhu
- Subjects
medicine.medical_specialty ,Visual acuity ,Younger age ,genetic structures ,visual acuity ,Fundus (eye) ,Foveal ,Ophthalmology ,medicine ,fundus photography ,high myopia ,Original Research ,lcsh:R5-920 ,medicine.diagnostic_test ,business.industry ,myopic macular degeneration ,Fundus photography ,General Medicine ,eye diseases ,Myopic macular degeneration ,Cilioretinal artery ,Medicine ,Multiple linear regression analysis ,sense organs ,cilioretinal artery ,medicine.symptom ,lcsh:Medicine (General) ,business - Abstract
Purpose: To develop a photographic classification for cilioretinal arteries and to investigate its association with myopic macular degeneration (MMD).Methods: One thousand six hundred ninety-two highly myopic eyes of 1,692 patients were included. The presence of a cilioretinal artery was determined by fundus photographs, and a photographic classification was proposed. MMD was classified according to the International META-PM Classification. Associations of the cilioretinal artery and its classifications with MMD and visual acuity were analyzed.Results: Of the eyes tested, 245 (14.5%) had a cilioretinal artery. The cilioretinal arteries were classified into four categories (temporal “cake-fork,” 35.92%; temporal “ribbon,” 53.47%; “multiple,” 6.53%; “nasal,” 4.08%) and 3 distributions based on whether its visible branches reached the central foveal area. Eyes with cilioretinal arteries had significantly less MMD of grade ≥3 and better visual acuity than those without (P < 0.01). Multiple linear regression analysis showed that younger age, male sex, shorter axial length, and the presence of a cilioretinal artery were associated with better visual acuity in highly myopic eyes (all P < 0.05). The “nasal” category presented more MMD with grade ≥3 and worse visual acuity than the other categories (P < 0.05), whereas the “multiple” category contained no eyes with MMD grade ≥3. The cilioretinal arteries reaching the central foveal area showed less MMD of grade ≥3 and better visual acuity than those not (P < 0.05).Conclusions: We propose a photographic classification for cilioretinal arteries that has good clinical relevance to visual functions. The cilioretinal artery may potentially afford protection against MMD.
- Published
- 2020
25. Precise carbon doping regulation of porous graphitic carbon nitride nanosheets enables elevated photocatalytic oxidation performance towards emerging organic pollutants
- Author
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Xueyan Zhang, Yunqing Liu, Miao Ren, Guang Yang, Lang Qin, Yihang Guo, and Jiaqi Meng
- Subjects
General Chemical Engineering ,Environmental Chemistry ,General Chemistry ,Industrial and Manufacturing Engineering - Published
- 2022
26. Rapid electrochemical reduction of a typical chlorinated organophosphorus flame retardant on copper foam: degradation kinetics and mechanisms
- Author
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Liqiu Zhang, Ziwen Du, Liansheng Yang, Yongze Liu, Ze Yin, Chuyi Huang, Jiaqi Meng, Li Feng, and Min Guo
- Subjects
Tris ,Environmental Engineering ,Health, Toxicology and Mutagenesis ,0208 environmental biotechnology ,Inorganic chemistry ,chemistry.chemical_element ,02 engineering and technology ,010501 environmental sciences ,Electrochemistry ,01 natural sciences ,Phosphates ,chemistry.chemical_compound ,Organophosphorus Compounds ,Environmental Chemistry ,0105 earth and related environmental sciences ,Flame Retardants ,Aqueous solution ,Public Health, Environmental and Occupational Health ,General Medicine ,General Chemistry ,Phosphate ,Pollution ,Copper ,Organophosphates ,020801 environmental engineering ,Kinetics ,chemistry ,TCEP ,Degradation (geology) ,Chlorine ,Fire retardant - Abstract
With the widespread use, chlorinated organophosphorus flame retardants (Cl-OPFRs) as a new emerging contaminant have been widely detected in water environments over the last few years. In this study, the degradation of a typical Cl-OPFR, TCEP (tris (2-chloroethyl) phosphate), by electrochemical reduction was investigated. It was found that copper (Cu) foam as the cathode showed more rapid and effective degradation for TCEP, compared to other cathodes. When TCEP was at the low concentrations (0.1 and 1 mg L−1), its degradation by Cu foam could reach above 95% within 20 min, and the maximum rate constant was 0.127 min–1. TCEP reduction was little influenced by the co-existing humic substance and anions, except Cl−. Compared with the reported oxidation methods, electrochemical reduction showed fast and stable degradation for TCEP. For other types of Cl-OPFRs, electrochemical reduction displayed a fast and effective removal for tris (1,3-dichloro-2-propyl) phosphate but lower removal for tris (2-cholroisopropyl) phosphate who possessed methyl units in the branched chains, influencing its reducibility. Based on the product analysis and Fukui function calculation, the bonds of TCEP molecule were found to be gradually broken, and the three oxygen-ethyl-chlorine arms were cleaved one by one. The products including C6H13Cl2O4P (MW = 249.99278 Da), C4H9Cl2O4P (MW = 221.96105 Da) and C4H10ClO4P (MW = 188.0002 Da) were detected at 60 min reaction, and those intermediates showed much lower toxicities than TCEP according to the previous report. The findings may provide a promising treatment for Cl-OPFRs removal from aqueous environments and help understand their reductive fate.
- Published
- 2020
27. Aberrant TGF-β1 signaling activation by MAF underlies pathological lens growth in high myopia
- Author
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Keke Zhang, Yi Lu, Kang Zhang, Ailin Liu, Jiao Qi, Zhenglin Yang, Qing-Feng Wu, Linying Guo, Jie Zhu, Jie Xu, Jiaqi Meng, Guangyu Wang, Xiangjia Zhu, Wenwen He, Yu Du, Dan Li, and Ming Qi
- Subjects
0301 basic medicine ,Male ,genetic structures ,Science ,General Physics and Astronomy ,Smad Proteins ,Biology ,Article ,General Biochemistry, Genetics and Molecular Biology ,Transforming Growth Factor beta1 ,03 medical and health sciences ,Mice ,0302 clinical medicine ,Crystallin ,Lens, Crystalline ,medicine ,Animals ,Humans ,gamma-Crystallins ,skin and connective tissue diseases ,Promoter Regions, Genetic ,Pathological ,Mice, Knockout ,Multidisciplinary ,Blindness ,High myopia ,Hereditary eye disease ,Promoter ,General Chemistry ,Transcription Factor Maf ,medicine.disease ,beta-Crystallins ,Retinal diseases ,eye diseases ,Cell biology ,Up-Regulation ,Mice, Inbred C57BL ,Refractive errors ,030104 developmental biology ,medicine.anatomical_structure ,Tgf β1 signaling ,Lens (anatomy) ,Myopia, Degenerative ,030221 ophthalmology & optometry ,Maf Transcription Factors ,Lens diseases ,Female ,sense organs - Abstract
High myopia is a leading cause of blindness worldwide. Myopia progression may lead to pathological changes of lens and affect the outcome of lens surgery, but the underlying mechanism remains unclear. Here, we find an increased lens size in highly myopic eyes associated with up-regulation of β/γ-crystallin expressions. Similar findings are replicated in two independent mouse models of high myopia. Mechanistic studies show that the transcription factor MAF plays an essential role in up-regulating β/γ-crystallins in high myopia, by direct activation of the crystallin gene promoters and by activation of TGF-β1-Smad signaling. Our results establish lens morphological and molecular changes as a characteristic feature of high myopia, and point to the dysregulation of the MAF-TGF-β1-crystallin axis as an underlying mechanism, providing an insight for therapeutic interventions., High myopia is associated with lens changes, but the underlying mechanisms are unclear. Here, the authors show increased equatorial diameter of the lens in subjects affected by high myopia, and find that these changes are associated with an increase in crystallin expression driven by the transcription factor MAF and TGF-β1 signaling.
- Published
- 2019
28. Evaluation of the White-to-White Distance in 39,986 Chinese Cataractous Eyes
- Author
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Jiaqi Meng, Yi Lu, Dongjin Qian, Wenwen He, Xiangjia Zhu, and Ling Wei
- Subjects
Adult ,Male ,0301 basic medicine ,China ,medicine.medical_specialty ,Biometry ,genetic structures ,Anterior Chamber ,Limbus Corneae ,white-to-white (WTW) ,Cataract ,Cornea ,03 medical and health sciences ,0302 clinical medicine ,Asian People ,Age groups ,Lens thickness ,Ophthalmology ,Lens, Crystalline ,Female patient ,Humans ,Medicine ,high myopia ,corneal diameter ,Aged ,Retrospective Studies ,Aged, 80 and over ,White to white ,Corneal curvature ,business.industry ,Clinical and Epidemiologic Research ,ocular biometry ,Mean age ,General Medicine ,Axial length ,Middle Aged ,eye diseases ,Axial Length, Eye ,Male patient ,030221 ophthalmology & optometry ,Female ,sense organs ,030101 anatomy & morphology ,business ,Tomography, Optical Coherence - Abstract
Purpose To investigate the distribution of white-to-white (WTW) distance and its associations with other biometric parameters in Chinese cataractous eyes. Methods Data on 39,986 eyes from 23,627 Chinese cataract patients were analyzed. Ocular biometric parameters, including WTW distance, corneal curvature, anterior chamber depth (ACD), lens thickness (LT), central corneal thickness (CCT), and axial length (AL), were obtained using the ZEISS IOLMaster 700. Results The mean age of patients was 63.7 ± 12.4 years, and 57.61% were female. The mean WTW distance was 11.69 ± 0.46 mm. The WTW distance was larger in male patients than in female patients for all age groups (all P < 0.001). The WTW distance was positively correlated with corneal curvature and ACD and negatively correlated with age, LT, and CCT (all P < 0.001). Multivariable analysis revealed that a larger WTW distance was associated with younger age; male gender; larger corneal curvature, ACD, and LT; and thinner CCT (all P < 0.001). Notably, the association between WTW distance and AL was not linear. As the AL increased, the WTW distance initially increased, reached a peak in the group with ALs of 24.5 to 26 mm, and then slowly decreased. However, all of the myopic eyes (AL > 24.5 mm) still had larger WTWs than the normal and short eyes (AL ≤ 24.5 mm). Conclusions In Chinese cataractous eyes, the WTW distance was larger in younger male patients with flatter corneas, deeper anterior chambers, thicker lenses, and thinner central corneas. The association between WTW distance and AL was not linear, and WTW distance was the largest in eyes with ALs of 24.5 to 26 mm.
- Published
- 2021
29. Acid-induced molecule self-assembly synthesis of Z-scheme WO3/g-C3N4 heterojunctions for robust photocatalysis against phenolic pollutants
- Author
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Yuxin Yang, Miao Ren, Xuhui Ding, Xueyan Zhang, Xinyue Wang, Yihang Guo, Yunqing Liu, and Jiaqi Meng
- Subjects
Materials science ,General Chemical Engineering ,Radical ,Photoelectrochemistry ,Graphitic carbon nitride ,Heterojunction ,02 engineering and technology ,General Chemistry ,010402 general chemistry ,021001 nanoscience & nanotechnology ,Photochemistry ,01 natural sciences ,Redox ,Industrial and Manufacturing Engineering ,0104 chemical sciences ,chemistry.chemical_compound ,chemistry ,Photocatalysis ,Environmental Chemistry ,Sodium tungstate ,Charge carrier ,0210 nano-technology - Abstract
Searching for effective strategies of boosting charge carrier separation and improving photooxidation ability are highly desirable to design graphitic carbon nitride-based photocatalysts for efficient organic pollutant degradation. Here we demonstrate an in situ acid-induced self-assembly of melamine and sodium tungstate method combined with hydrothermal treatment, by forming WO3/melamine-cyanuric acid supramolecular complex, to fabricate porous sheet-like WO3/g-C3N4 heterojunctions with oxygen doping; meanwhile, the morphology of WO3/g-C3N4 nanosheets can be further regulated by selecting different short-chain carboxylic acids. The heterojunctions exhibit enhanced visible-light photocatalytic activity than bulk g-C3N4 and supramolecule-based g-C3N4 in degradation of phenolic pollutants, acetaminophen and methylparaben. The tests including active species trapping, photoelectrochemistry and photoluminescence firmly evidence that the extraordinary Z-scheme charge transfer manner plays dominated role to this excellent activity, which can accelerate charge carrier separation and retain powerful redox ability of electrons on conduction band of g-C3N4 and holes on valence band of WO3 simultaneously; additionally, porous sheet-like nanostructures and oxygen doping also positively influence the activity via improving light harvesting, providing plentiful active sites, shortening charge carrier migration distance and further facilitating charge carrier separation. LC−MS analysis and TOC monitoring find the target pollutants are completely degraded under oxidation of holes, superoxide and hydroxyl radicals.
- Published
- 2021
30. [Untitled]
- Author
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Jiaqi Meng, Chao Li, and Cui Zhe
- Subjects
Retinex algorithm ,Color constancy ,Scale (ratio) ,business.industry ,Computer science ,Image quality ,ComputingMethodologies_IMAGEPROCESSINGANDCOMPUTERVISION ,Image processing ,Image (mathematics) ,Computer vision ,Artificial intelligence ,Hardware_ARITHMETICANDLOGICSTRUCTURES ,MATLAB ,business ,Field-programmable gate array ,computer ,Hardware_LOGICDESIGN ,computer.programming_language - Abstract
Keywords: Retinex; image dehazing; FPGA Abstract: This paper based on Retinex algorithm for image processing go fog, and Retinex algorithm for some optimization in FPGA, in slightly affect image quality while significantly reducing the FPGA resources. Then on the successful implementation of the algorithm in FPGA, and with the effect on matlab found to compare with the original fog effect FPGA matlab results are basically the same.
- Published
- 2015
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