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4篇 您的检索式:作者名="Xiuyan Cui"
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1Influence of leptin on luteinizing hormone and follicle stimulating hormone secreted from cultured rat anterior pituitary cells显示文摘BACKGROUND: Leptin may regulate reproductive function via release of hypothalamic neuropeptide Y. However, it is unknown whether this regulatory effect is limited to the hypothalamus. OBJECTIVE: To detect the effect of different dosages of leptin on luteinizing hormone (LH) and follicle stimulating hormone (FSH) secretion from in vitro cultured rat anterior pituitary cells. DESIGN: Contrast study based on cells. SETTING: This study was performed in the Basic Institute of Chengde Medical College, Chengde City, Hebei Province, China from March to June 2007. MATERIALS: Eighteen female Wistar rats of three months of age, weighing 200-220 g, and of clean grade were used. Leptin was provided by Peprotech Company, DMEM culture medium by Invitrogen Company, and the radioimmunological kit by Beijing Zhongshan Jinqiao Biotechnology Co., Ltd. METHODS: Three glandular organs were regarded as one group for culture of anterior pituitary cells. In the control group, saline was added to the culture medium instead of leptin. In the leptin group, leptin was prepared into different concentrations of 1×10-12, 1×10-11, 1×10-9, 1×10-7, and 1×10-6 mol/L for stimulation of cultured cells. The culture supernatant was obtained at three hours after additional of saline/leptin. MAIN OUTCOME MEASURES: Contents of LH and FSH were detected by radioimmunology. RESULTS: Following leptin stimulation, LH release increased with increasing concentrations of leptin up to 1×10-9 mol/L, where LH release peaked. LH release then progressively decreased with increasing leptin concentrations (P < 0.01). LH release in the leptin (1×10-12, 1×10-11, 1×10-7, and 1×10-6 mol/L) groups was significantly higher than that in the control group (P < 0.01). FSH content in the leptin (1×10-11, 1×10-9, and 1×10-7 mol/L) groups was significantly higher than that in the control group (P < 0.01). CONCLUSION: Leptin can directly affect pituitary tissue to promote the secretion of LH and FSH in a dose-dependent manner.Yuebing Qiao Xiuyan Ma Huixian Cui 2008Neural Regeneration Research2008,3,6:2
2Ceritinib: From Synthesis to Clinical Applications显示文摘Xiuyan Cui Weihua Song Qi Yang Zhangqun Yang 2016Journal of Pharmacy and Pharmacology2016,4,8:0
3High-throughput fluorescent screening of thioredoxin reductase inhibitors to inhibit Mycobacterium tuberculosis显示文摘Tuberculosis(TB)is a chronic infectious disease,which is caused by the pathogen Mycobacterium tuberculosis(Mtb)and reemerged as a global health risk with a significant proportion of multi-drug resistant and extensively drug resistant TB cases.It is very urgent to find some novel high-confidence drug targets in Mtb for discovering the effective anti-TB agents.Thioredoxin reductase(TrxR)has been identified to be a highly viable target for anti-TB drugs for its important role in protecting the pathogen from thiol-specific oxidizing stress,regulating intracellular dithiol/disulfide homeostasis and DNA replication and repair.In the present work,a near-infrared(NIR)fluorescent probe DDAT was developed for the detection of TrxR activity and used to high-throughput screen the TrxR inhibitors from natural products.Two screened TrxR inhibitors from Sappan Lignum and microbial metabolites that were further used to inhibit Mycobacterium tuberculosis.All the results indicate that DDAT is a practical fluorescent molecular tool for the discovery of potential anti-TB drugs.Fei Yan Xin Zhao Ruibo Li Xiuyan Han Qiulong Yan Lei Feng Xiulan Xin Jingnan Cui Xiaochi Ma 2024Chinese Chemical Letters2024,35,3:0
4Rapid formation of Csp^(3)–Csp^(3) bonds through copper-catalyzed decarboxylative Csp^(3)–H functionalization显示文摘Transition-metal-catalyzed decarboxylative and C–H functionalization strategy for the construction of Csp^(2)-Csp^(2),Csp^(2)-Csp,and Csp^(2)-Csp^(3) bonds has been extensively studied.However,research surveys of this synthetic strategy for the Csp^(3)-Csp^(3) bond forming reactions are surprisingly scarce.Herein,we present an efficient approach for the rapid formation of Csp^(3)–Csp^(3) bond through copper-catalyzed decarboxylative Csp^(3)–H functionalization.The present method should provide a useful access to C3-substituted indole scaffolds with possible biological activities.Mechanistic experiments and DFT calculations supported a dual-Cu(Ⅱ)-catalytic cycle involving rate-determining decarboxylation in an outer-sphere radical pathway and spin-crossover-promoted C–C bond formation.This strategy offers a promising synthesis method for the construction of Csp^(3)–Csp^(3) bond in the field of synthetic and pharmaceutical chemistry and extends the number of still limited copper-catalyzed decarboxylative Csp^(3)–Csp^(3) bond forming reaction.Wenwen Cui Yu Li Xufeng Li Junxin Li Xiuyan Song Jian Lv Yuan-Ye Jiang Daoshan Yang 2023Chinese Chemical Letters2023,34,1:0
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