9 results on '"Gizem, Bor"'
Search Results
2. Internal Lamellar and Inverse Hexagonal Liquid Crystalline Phases During the Digestion of Krill and Astaxanthin Oil-in-Water Emulsions
- Author
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Anan Yaghmur, Saleh Lotfi, Sarah Atoussa Ariabod, Gizem Bor, Mark Gontsarik, and Stefan Salentinig
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astaxanthin oil ,krill oil ,lamellar and inverse hexagonal liquid crystalline phases ,lipolysis ,omega-3 polyunsaturated fatty acids ,synchrotron small angle X-ray scattering ,Biotechnology ,TP248.13-248.65 - Abstract
Krill oil represents an important alternative natural source of omega-3 (ω-3) polyunsaturated fatty acids (PUFAs). Considering the beneficial health effects of these essential fatty acids, particularly in various disorders including cancer, cardiovascular, and inflammation diseases, it is of paramount importance to gain insight into the digestibility of krill oil. In this work, we study the fate of krill oil-in-water emulsion, stabilized by sodium caseinate, during lipolysis by coupling time-resolved synchrotron small-angle X-ray scattering (SAXS) to flow-through lipolysis model. For gaining further insight into the effect of ω-3 PUFA-containing oil type on the dynamic structural features occurring during lipolysis, two additional astaxanthin oil-in-water emulsions, stabilized using either sodium caseinate or citrem, were subjected to lipolysis under identical experimental conditions. In addition to the difference in lipid composition in both oils, ω-3 PUFAs in astaxanthin oil, similar to fish oil, exist in the form of triacylglycerols; whereas most of those in krill oil are bound to phospholipids. SAXS showed the formation of highly ordered nanostructures on exposure of these food emulsions to the lipolysis medium: the detection of a biphasic feature of coexisting inverse hexagonal (H2) and lamellar (Lα) liquid crystalline phases in the digested krill oil droplets' interiors, as compared to a neat Lα phase in the digested astaxanthin oil droplets. We discuss the dynamic phase behavior and describe the suggested important role of these phases in facilitating the delivery of nutrients throughout the body. In addition, the potential implication in the development of food and drug nanocarriers is briefly described.
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- 2019
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3. PEGylation of Phosphatidylglycerol/Docosahexaenoic Acid Hexosomes with d-α-Tocopheryl Succinate Poly(ethylene glycol)
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Gizem, Bor, Jen-Hao, Lin, Kui-Yu, Lin, Hung-Chih, Chen, Ray Putra, Prajnamitra, Stefan, Salentinig, Patrick C H, Hsieh, Seyed Moein, Moghimi, and Anan, Yaghmur
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Mice ,Docosahexaenoic Acids ,alpha-Tocopherol ,Humans ,Animals ,Nanoparticles ,Phosphatidylglycerols ,Tissue Distribution ,Succinates ,Polyethylene Glycols - Abstract
Considering the broad therapeutic potential of omega-3 polyunsaturated fatty acids such as docosahexaenoic acid (DHA), here we study the effect of PEGylation of DHA-incorporated hexosomes on their physicochemical characteristics and biodistribution following intravenous injection into mice. Hexosomes were formed from phosphatidylglycerol and DHA with a weight ratio of 3:2. PEGylation was achieved through the incorporation of either d-α-tocopheryl succinate poly(ethylene glycol)
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- 2022
4. A structurally diverse library of glycerol monooleate/oleic acid non-lamellar liquid crystalline nanodispersions stabilized with nonionic methoxypoly(ethylene glycol) (mPEG)-lipids showing variable complement activation properties
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Gizem Bor, Laura Woythe, Shen Y. Helvig, Helene Andersen, Simon Pham, Seyed Moein Moghimi, Anan Yaghmur, and Molecular Biosensing for Med. Diagnostics
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Ethylene Glycol ,Nanoparticle ,02 engineering and technology ,010402 general chemistry ,Cubosomes ,01 natural sciences ,Glycerides ,Biomaterials ,chemistry.chemical_compound ,Colloid and Surface Chemistry ,Dynamic light scattering ,PEG ratio ,Humans ,Cryogenic transmission electron microscopy ,synchrotron small angle X-ray scattering ,Aqueous solution ,Hexosomes ,D-α-tocopheryl succinate ,Poloxamer ,021001 nanoscience & nanotechnology ,mPEG-diacylglycerol ,Liquid Crystals ,0104 chemical sciences ,Surfaces, Coatings and Films ,Electronic, Optical and Magnetic Materials ,Complement system ,Complement activation ,Oleic acid ,Pharmaceutical Preparations ,chemistry ,Chemical engineering ,Nanoparticles ,0210 nano-technology ,Micellar cubosomes ,Ethylene glycol ,Oleic Acid - Abstract
Pluronic F127-stabilized non-lamellar liquid crystalline aqueous nanodispersions are promising injectable platforms for drug and contrast agent delivery. These nanodispersions, however, trigger complement activation in the human blood, where the extent of complement activation and opsonization processes may compromise their biological performance and safety. Here, we introduce a broad family of nanodispersions from glycerol monooleate (GMO) and oleic acid (OA) in different weight ratios, and stabilized with a plethora of nonionic methoxypoly(ethylene glycol) (mPEG)-lipids of different PEG chain length and variable lipid moiety (monounsaturated or saturated diglycerides or D-α-tocopheryl succinate). Through an integrated biophysical approach involving dynamic light scattering, synchrotron small-angle scattering, and cryo-transmission electron microscopy, we examine the impact of nonionic mPEG-lipid stabilization on size, internal self-assembled architecture, and gross morphological characteristics of nanodispersions. The results show how the nonionic mPEG-lipid type and concentration, and dependent on GMO/OA weight ratio, can variably modulate the internal architectures of nanoparticles. Assessment of complement profiling from selected nanodispersions with diverse structural heterogeneity further suggests a variable modulatory role for the lipid type of the nonionic mPEG-lipid in the extent of complement activation, which span from no activation to moderate to high levels. We comment on plausible mechanisms driving the observed complement activation variability and discuss the potential utility of these nanodispersions for future development of injectable nanopharmaceuticals.
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- 2021
5. Nanomedicines for cancer therapy: current status, challenges and future prospects
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Intan Diana Mat Azmi, Anan Yaghmur, and Gizem Bor
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Tumor penetration ,Cancer therapy ,Pharmaceutical Science ,Early detection ,Antineoplastic Agents ,02 engineering and technology ,030226 pharmacology & pharmacy ,03 medical and health sciences ,0302 clinical medicine ,Neoplasms ,Tumor Microenvironment ,medicine ,Humans ,Drug Carriers ,business.industry ,Cancer ,021001 nanoscience & nanotechnology ,medicine.disease ,Nanomedicine ,Systemic toxicity ,Risk analysis (engineering) ,Blood circulation ,Government Regulation ,Nanoparticles ,0210 nano-technology ,business ,Half-Life - Abstract
The emergence of nanomedicine as an innovative and promising alternative technology shows many advantages over conventional cancer therapies and provides new opportunities for early detection, improved treatment, and diagnosis of cancer. Despite the cancer nanomedicines’ capability of delivering chemotherapeutic agents while providing lower systemic toxicity, it is paramount to consider the cancer complexity and dynamics for bridging the translational bench-to-bedside gap. It is important to conduct appropriate investigations for exploiting the tumor microenvironment, and achieving a more comprehensive understanding of the fundamental biological processes in cancer and their roles in modulating nanoparticle–protein interactions, blood circulation, and tumor penetration. This review provides an overview of the current cancer nanomedicines, the major challenges, and the future opportunities in this research area.
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- 2019
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6. Cell medium-dependent dynamic modulation of size and structural transformations of binary phospholipid/ω-3 fatty acid liquid crystalline nano-self-assemblies: Implications in interpretation of cell uptake studies
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Petra Hamerlik, Stefan Salentinig, Gizem Bor, Evrim Şahin, Seyed Moein Moghimi, Begüm Nur Ödevci, Martin Roursgaard, Anan Yaghmur, and Letizia Liccardo
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Materials science ,Nanoparticle tracking analysis ,Nanoparticle ,Biomaterials ,Colloid ,Colloid and Surface Chemistry ,Phase (matter) ,Lyotropic ,Fatty Acids, Omega-3 ,Glioblastoma multiforme T10 cells ,Humans ,Lamellar structure ,Cryogenic transmission electron microscopy ,Micelles ,Phospholipids ,Hexosomes ,Hexagonal phase ,Poloxamer ,ISAsomes ,Surfaces, Coatings and Films ,Electronic, Optical and Magnetic Materials ,Liquid Crystals ,Chemical engineering ,Monocytic THP-1 cells ,Nanoparticles ,Micellar cubosomes ,Synchrotron small angle X-ray scattering - Abstract
Lyotropic non-lamellar liquid crystalline (LLC) nanoparticles, with their tunable structural features and capability of loading a wide range of drugs and reporter probes, are emerging as versatile injectable nanopharmaceuticals. Secondary emulsifiers, such as Pluronic block copolymers, are commonly used for colloidal stabilization of LLC nanoparticles, but their inclusion often compromises the biological safety (e.g., poor hemocompatibility and enhanced cytotoxicity) of the formulation. Here, we introduce a library of colloidally stable, structurally tunable, and pH-responsive lamellar and non-lamellar liquid crystalline nanoparticles from binary mixtures of a phospholipid (phosphatidylglycerol) and three types of omega-3 fatty acids (ω-3 PUFAs), prepared in the absence of a secondary emulsifier and organic solvents. We study formulation size distribution, morphological heterogeneity, and the arrangement of their internal self-assembled architectures by nanoparticle tracking analysis, synchrotron small-angle X-ray scattering, and cryo-transmission electron microscopy. The results show the influence of type and concentration of ω-3 PUFAs in nanoparticle structural transitions spanning from a lamellar (Lα) phase to inverse discontinuous (micellar) cubic Fd3m and hexagonal phase (H2) phases, respectively. We further report on cell-culture medium-dependent dynamic fluctuations in nanoparticle size, number and morphology, and simultaneously monitor uptake kinetics in two human cell lines. We discuss the role of these multiparametric biophysical transformations on nanoparticle-cell interaction kinetics and internalization mechanisms. Collectively, our findings contribute to the understanding of fundamental steps that are imperative for improved engineering of LLC nanoparticles with necessary attributes for pharmaceutical development.
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- 2021
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7. Advances in microfluidic synthesis and coupling with synchrotron SAXS for continuous production and real-time structural characterization of nano-self-assemblies
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Gizem Bor, Ozlem Yesil-Celiktas, Burcu Yaldiz, Esra Ilhan-Ayisigi, and Anan Yaghmur
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Materials science ,Nanostructure ,Microfluidics ,Nanoparticle ,Nanotechnology ,02 engineering and technology ,Flow Cytometer ,01 natural sciences ,Continuous production ,law.invention ,Phase-Transitions ,Gene Delivery ,Colloid and Surface Chemistry ,X-Ray Diffraction ,Size ,law ,Sample-Preparation Platform ,0103 physical sciences ,Nano ,Scattering, Small Angle ,Process optimization ,Physical and Theoretical Chemistry ,Phospholipids ,chemistry.chemical_classification ,Drug-Delivery Systems ,010304 chemical physics ,In situ characterization ,Surfaces and Interfaces ,General Medicine ,Polymer ,Nano-self- assemblies ,SAXS ,Nanoscale Liposomes ,021001 nanoscience & nanotechnology ,Synchrotron ,Characterization (materials science) ,chemistry ,Lipid Nanoparticles ,Nanoparticles ,0210 nano-technology ,Synchrotrons ,Biotechnology - Abstract
Microfluidic platforms have become highly attractive tools for synthesis of nanoparticles, including lipid nano-self-assemblies, owing to unique features and at least three important aspects inherent to miniaturized micro-devices. Firstly, the fluids flow under controlled conditions in the microchannels, providing well-defined flow profiles and shorter diffusion lengths that play important roles in enhancing the continuous production of lipid and polymer nanoparticles with relatively narrow size distributions. Secondly, various geometries adapted to microfluidic device designs can be utilized for enhancing the colloidal stability of nanoparticles and improving their drug loading. Thirdly, microfluidic devices are usually compatible with in situ characterization methods for real-time monitoring of processes occurring inside the microchannels. This is unlike conventional nanoparticle synthesis methods, where a final solution or withdrawn aliquots are separately analysed. These features inherent to microfluidic devices provide a tool-set allowing not only precise nanoparticle size control, but also real-time analyses for process optimization. In this review, we focus on recent advances and developments in the use of microfluidic devices for synthesis of lipid nanoparticles. We present different designs based on hydrodynamic flow focusing, droplet-based methods and controlled microvortices, and discuss integration of microfluidic platforms with synchrotron small-angle X ray scattering (SAXS) for in situ structural characterization of lipid nano-self-assemblies under continuous flow conditions, along with major challenges and future directions in this research area., INP grant from the Danish Agency for Science and Higher Education [8073-00022B], AY and OYC acknowledge the INP grant (Ref. no.: 8073-00022B) from the Danish Agency for Science and Higher Education for initiating and exploring new networking and collaboration opportunities between Danish and Turkish research institutions.
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- 2021
8. Cytotoxic and cytostatic side effects of chitosan nanoparticles as a non-viral gene carrier
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Maciej Wnuk, Gülşah Şanlı-Mohamed, Jennifer Mytych, Gizem Bor, Jacek Zebrowski, TR115002, Bor, Gizem, Şanlı Mohamed, Gülşah, and Izmir Institute of Technology. Chemistry
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0301 basic medicine ,Cancer cells ,Cell cycle checkpoint ,Biocompatibility ,Cell Survival ,Cytotoxicity ,Cell ,Pharmaceutical Science ,02 engineering and technology ,Gene delivery ,Monocytes ,03 medical and health sciences ,Cell Line, Tumor ,medicine ,Humans ,Chitosan ,Chemistry ,Gene Transfer Techniques ,DNA ,Transfection ,Plasmid DNA ,021001 nanoscience & nanotechnology ,Molecular biology ,Cell biology ,Luminescent Proteins ,030104 developmental biology ,medicine.anatomical_structure ,Cell culture ,Cancer cell ,Nanoparticles ,0210 nano-technology ,Plasmids - Abstract
Although chitosan nanoparticles (CNs) became a promising tool for several biological and medical applications owing to their inherent biocompatibility and biodegradability features, studies regarding their effects on cytotoxic and cytostatic properties still remain insufficient. Therefore, in the present study, we decided to perform comprehensive analysis of the interactions between CNs–pKindling-Red-Mito (pDNA) and different cell line models derived from blood system and human solid tissues cancers. The resulting CNs-pDNA was investigated in terms of their cellular uptake, transfection efficiency, and physico-chemical, cytotoxic and cytostatic properties. The nanoparticles showed high encapsulation efficiency and physical stability for various formulations even after two days time period. Moreover, high gene expression levels were observed after 96 h of transfection. CNs-pDNA treatment, despite the absence of oxidative stress induction, caused cell cycle arrest in G0/G1 phase and as a consequence led to premature senescence which turned out to be both p21-dependent and p21-independent. Also, observed DNMT2 upregulation may suggest the activation of different pathways protecting from the results of CNs-mediated stress. In conclusion, treatment of different cell lines with CNs-pDNA showed that their biocompatibility was limited and the effects were cell type-dependent.
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- 2016
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9. Structural characterization of self-assemblies of new omega-3 lipids: docosahexaenoic acid and docosapentaenoic acid monoglycerides
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Gizem Bor, Xianrong Shao, Stefan Salentinig, Anan Yaghmur, and Sabah Al-Hosayni
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Docosahexaenoic Acids ,General Physics and Astronomy ,02 engineering and technology ,010402 general chemistry ,01 natural sciences ,chemistry.chemical_compound ,Amphiphile ,Fatty Acids, Omega-3 ,Organic chemistry ,Physical and Theoretical Chemistry ,chemistry.chemical_classification ,Degree of unsaturation ,Molecular Structure ,Chemistry ,Monoglyceride ,021001 nanoscience & nanotechnology ,Eicosapentaenoic acid ,0104 chemical sciences ,Docosahexaenoic acid ,Fatty Acids, Unsaturated ,Monoglycerides ,lipids (amino acids, peptides, and proteins) ,Docosapentaenoic acid ,Nanocarriers ,0210 nano-technology ,Polyunsaturated fatty acid - Abstract
The attractiveness of new omega-3 (ω-3) polyunsaturated fatty acid (PUFA) monoglycerides (MAGs) lies in the amphiphilic nature and the beneficial health effects as PUFA precursors in various disorders including cancer, pulmonary hypertension, and inflammatory diseases. For exploring the potential therapeutic applications of these new amphiphilic lipids, particularly as main lipid constituents in the development of nanocarriers for delivery of drugs and PUFAs, it is of paramount importance to gain insight into their self-assembly behavior on exposure to excess water. This work describes the structural characteristics of self-assemblies based on two newly synthesized MAGs, namely docosahexaenoic acid (MAG-DHA) and docosapentaenoic acid (MAG-DPA) monoglycerides, on exposure to excess water. We found that both lipids tend to form a dominant inverse hexagonal (H2) phase in excess water at 25 °C and a temperature-triggered structural transition to an inverse micellar solution (L2 phase) is detected similar to that recently reported (A. Yaghmur et al., Langmuir, 2017, 33, 14045-14057) for eicosapentaenoic acid monoglyceride (MAG-EPA). An experimental SAXS structural evaluation study on the temperature-dependent behavior of these new monoglycerides is provided, and the effects of unsaturation degree and fatty acyl chain length on the self-assembled structural features in excess water and on the H2-L2 phase transition temperature are discussed. In addition, hexosomes stabilized by using the triblock copolymer F127 and the food-grade emulsifier citrem were investigated to gain insights into the effects of stabilizer and temperature on the internal nanostructure. These nanoparticles are attractive for use in the development of nanocarriers for delivering drugs and/or nutritional compounds as the beneficial health effects of ω-3 PUFA monoglycerides can be combined with those of loaded therapeutic agents or nutraceuticals.
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- 2018
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