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2篇 您的检索式:作者名="Leng Leng Chng"
    题名 作者 年代 出处 被引量
1Hypoxia increases adipogenesis and affects adipocytokine production in orbital fibroblasts-a possible explanation of the link between smoking and Graves' ophthalmopathy显示文摘AIM:To assess the effects of hypoxia on human orbital fibroblasts(OF)on adipogenesis and adipocytokine production.METHODS:Human OF were derived from tissues obtained from patients with Graves'ophthalmopathy(GO)and from patients without known thyroid diseases undergoing blepharoplasty.The OF were cultured separately under normoxic and hypoxic conditions.Comparisons of adipocytokine concentrations using multiplex ELISA and lipid accumulation in the cells using Oil Red O staining were subsequently performed.RESULTS:There was increased adipogenesis in OF from GO subject when exposed to hypoxic culture conditions.This was not observed in OF from normal controls.Hypoxia led to an increase in leptin and a decrease in MCP-1 secretion in OF cultures.CONCLUSION:Hypoxia induces adipogenesis in OF and may represent a mechanism by which smoking contributes to deterioration of GO.We also found novel changes to leptin and MCP-1 production in OF cultures exposed to hypoxia suggesting important roles of these cytokines in the disease process.Chiaw Ling Chng Oi Fah Lai Charmaine Sze-Min Chew Yu Pei Peh Stephanie Man-Chung Fook-Chong Lay Leng Seah Daphne Hsu-Chin Khoo 2014International Journal of Ophthalmology(English edition)2014,7,3:10
2Water-soluble Cu30 nanoclusters as a click chemistry catalyst for living cell labeling via azide-alkyne cycloaddition显示文摘Cu(I)-catalyzed azide-alkyne cycloadditions(CuAAC)have gained increasing interest in the selective labeling of living cells and organisms with biomolecules.However,their application is constrained either by the high cytotoxicity of Cu(I)ions or the low activity of CuAAC in the internal space of living cells.This paper reports the design of a novel Cu-based nanocatalyst,watersoluble thiolated Cu30 nanoclusters(NCs),for living cell labeling via CuAAC.The Cu30 NCs offer good biocompatibility,excellent stability,and scalable synthesis(e.g.,gram scale),which would facilitate potential commercial applications.By combining the highly localized Cu(I)active species on the NC surface and good structural stability,the Cu30 NCs exhibit superior catalytic activities for a series of Huisgen cycloaddition reactions with good recyclability.More importantly,the biocompatibility of the Cu30 NCs enables them to be a good catalyst for CuAAC,whereby the challenging labeling of living cells can be achieved via CuAAC on the cell membrane.This study sheds light on the facile synthesis of atomically precise Cu NCs,as well as the design of novel Cu NCs-based nanocatalysts for CuAAC in intracellular bioorthogonal applications.Ge Yang Yali Xie Yaru Wang Ying Tang Leng Leng Chng Fuyi Jiang Fanglin Du Xianfeng Zhou Jackie Y.Ying Xun Yuan 2023Nano Research2023,16,1:0
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