93 results on '"Yang, Xuke"'
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2. Rapid metabolic reprogramming mediated by the AMP-activated protein kinase during the lytic cycle of Toxoplasma gondii
3. Co-evaporated oriented DMA1-xCsxPbI3 perovskite films for photovoltaics
4. High-temperature rheological behavior and non-isothermal pyrolysis mechanism of macerals separated from different coals
5. Flexible short-wavelength infrared photodetector based on extrinsic Sb2Se3
6. Smelting Vanadium–Titanium Magnetite by COREX Process: Effect of V–Ti Bearing Pellet Ratio on the Softening and Melting Behavior of Mixed Burden
7. Rapid thermal evaporation for cadmium selenide thin-film solar cells
8. The beta subunit of AMP-activated protein kinase is critical for cell cycle progression and parasite development in Toxoplasma gondii
9. π–π Stacking at the Perovskite/C60 Interface Enables High‐Efficiency Wide‐Bandgap Perovskite Solar Cells
10. The α subunit of AMP‐activated protein kinase is critical for the metabolic success and tachyzoite proliferation of Toxoplasma gondii.
11. (Bi,Sb)2Se3 Alloy Thin Film for Short‐Wavelength Infrared Photodetector and TFT Monolithic‐Integrated Matrix Imaging.
12. (Bi,Sb)2Se3 Alloy Thin Film for Short‐Wavelength Infrared Photodetector and TFT Monolithic‐Integrated Matrix Imaging
13. Insight into the High Mobility and Stability of In2O3:H Film
14. Intermediate Phase Formation and its Manipulation for Vacuum‐Assisted Blade‐Coated Wide‐Bandgap Perovskite
15. Insight into the High Mobility and Stability of In2O3:H Film.
16. TexSe1– xPhotodiode Shortwave Infrared Detection and Imaging
17. Vertically Aligned One-Dimensional Crystal-Structured Sb2Se3 for High-Efficiency Flexible Solar Cells via Regulating Selenization Kinetics
18. Growth Mechanism of Thermally Evaporated γ‐CsPbI3 Film
19. Over 11% Efficient CuGaSe 2 Solar Cells Without Using KCN Treatment
20. A Coccidia-Specific Phosphate Transporter Is Essential for the Growth of Toxoplasma gondii Parasites
21. Cation‐Exchange Enables In Situ Preparation of PbSe Quantum Dot Ink for High Performance Solar Cells
22. Growth Mechanism of Thermally Evaporated γ‐CsPbI3 Film.
23. TexSe1–x Photodiode Shortwave Infrared Detection and Imaging.
24. Vertically Aligned One-Dimensional Crystal-Structured Sb2Se3 for High-Efficiency Flexible Solar Cells via Regulating Selenization Kinetics.
25. Fabrication and Optimization of CdSe Solar Cells for Possible Top Cell of Silicon‐Based Tandem Devices
26. Improved Carrier Lifetimes of CdSe Thin Film via Te Doping for Photovoltaic Application.
27. Essential role of pyrophosphate homeostasis mediated by the pyrophosphate-dependent phosphofructokinase in Toxoplasma gondii
28. Vertically Aligned One-Dimensional Crystal-Structured Sb2Se3for High-Efficiency Flexible Solar Cells viaRegulating Selenization Kinetics
29. All-vacuum fabrication of yellow perovskite light-emitting diodes
30. Rapid thermal annealing process for Se thin-film solar cells
31. Over 11% Efficient CuGaSe2 Solar Cells Without Using KCN Treatment.
32. HTL-Free Sb2(S, Se)3 Solar Cells with an Optimal Detailed Balance Band Gap
33. Filter‐free self‐power CdSe /Sb 2 (S 1−x ,Se x ) 3 nearinfrared narrowband detection and imaging
34. Role of amylopectin synthesis in Toxoplasma gondii and its implication in vaccine development against toxoplasmosis
35. Figure S1. Alignment of curated sequences used for phylogenetic analysis from Role of amylopectin synthesis in Toxoplasma gondii and its implication in vaccine development against toxoplasmosis
36. Table S1. Primers used in this study from Role of amylopectin synthesis in Toxoplasma gondii and its implication in vaccine development against toxoplasmosis
37. Figure S2. Quantification of amylopectin levels. A. Quantification of the intensity of PAS staining signals in Figure 2D and 7E, as a way to compare amylopectin levels in indicated strains. Median with interquartile range, ***p ≤ 0.001, Student's t test. B. Amylopectin in ME49 and the Δss mutant was hydrolyzed to glucose by α-amylase and α-glucosidase. Then the level of amylopectin derived glucose was determined by high performance liquid chromatography, following the previously described methods (Hu et al., Carbohydr Polym. 196, 359-367). For data processing, in each experiment, the measured amylopectin level in ME49 tachyzoites was set as 1 and used as a reference for normalization of the rest samples. Tachyzoites and bradyzoites were obtained as described in Figure 2D
38. Figure S3. Replication rates of ME49 and the Δss mutant (24 hours post-infection) in different media, as determined by the number of parasites in each PV. Means ± SEM of three independent experiments, ***p <0.001, two-way ANOVA. from Role of amylopectin synthesis in Toxoplasma gondii and its implication in vaccine development against toxoplasmosis
39. Figure S5. ME49 and Δss parasites were first induced with alkaline medium plus ambient CO2 for 12 days to form bradyzoites. Then, the medium was changed to standard tachyzoite growth medium and the parasites were cultured with 5% CO2 for indicated amounts of time. Subsequently, parasitophorous vacuoles were examined under a phase contrast microscope to check the status of egress. After 48 hours of induction, almost all ME49 vacuoles were egressed and no intact vacuoles were left. In contrast, egress of the Δss mutant was much delayed
40. Figure S4. Phenotypic analysis on two additional Δss clones. (A) Intracellular replication, similar to figure 4C. ***P < 0.001, two-way ANOVA. (B) Amylopectin accumulation determined by PAS staining, as in figure 2D. (C) Efficiency of bradyzoite transition upon alkaline induction, as in figure 4D. *P < 0.05, student's t-test. from Role of amylopectin synthesis in Toxoplasma gondii and its implication in vaccine development against toxoplasmosis
41. CdSe thin film solar cell
42. Acquisition of exogenous fatty acids renders apicoplast-based biosynthesis dispensable in tachyzoites of Toxoplasma
43. HTL-Free Sb2(S, Se)3 Solar Cells with an Optimal Detailed Balance Band Gap.
44. Filter‐free self‐power CdSe/Sb2(S1−x,Sex)3 nearinfrared narrowband detection and imaging.
45. Co-evaporated oriented DMA1-xCsxPbI3perovskite films for photovoltaics
46. Effect of increasing the proportion of high-alumina iron ore on structures and properties of sinter produced in iron ore blending sintering process
47. Ambiguity Solution of Relative Position of Carrier Phase Differential
48. HTL-Free Sb2(S, Se)3Solar Cells with an Optimal Detailed Balance Band Gap
49. π-π Stacking at the Perovskite/C 60 Interface Enables High-Efficiency Wide-Bandgap Perovskite Solar Cells.
50. (Bi,Sb) 2 Se 3 Alloy Thin Film for Short-Wavelength Infrared Photodetector and TFT Monolithic-Integrated Matrix Imaging.
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