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首页> 外文期刊>Journal of Cellular Physiology >Enhancement of Lytic Activity by Leptin Is Independent From Lipid Rafts in Murine Primary Splenocytes
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Enhancement of Lytic Activity by Leptin Is Independent From Lipid Rafts in Murine Primary Splenocytes

机译:增强瘦素的溶解性活动独立于在初选小鼠脂质筏脾细胞

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摘要

Leptin, a pleiotropic adipokine, is known as a regulator of food intake, but it is also involved in inflammation, immunity, cell proliferation, and survival. Leptin receptor is integrated inside cholesterol-rich microdomains called lipid rafts, which, if disrupted or destroyed, could lead to a perturbation of lytic mechanism. Previous studies also reported that leptin could induce membrane remodeling. In this context, we studied the effect of membrane remodeling in lytic activity modulation induced by leptin. Thus, primary mouse splenocytes were incubated with methyl-beta-cyclodextrin (beta-MCD), a lipid rafts disrupting agent, cholesterol, a major component of cell membranes, or ursodeoxycholic acid (UDCA), a membrane stabilizer agent for 1 h. These treatments were followed by splenocyte incubation with leptin (absence, 10 and 100 ng/ml). Unlike beta-MCD or cholesterol, UDCA was able to block leptin lytic induction. This result suggests that leptin increased the lytic activity of primary spleen cells against syngenic EO771 mammary cancer cells independently from lipid rafts but may involve membrane fluidity. Furthermore, natural killer cells were shown to be involved in the splenocyte lytic activity. To our knowledge it is the first publication in primary culture that provides the link between leptin lytic modulation and membrane remodeling. (C) 2016 Wiley Periodicals, Inc.
机译:瘦素、多效adipokine称为监管机构的食物摄入,但也参与其中在炎症、免疫、细胞增殖,和生存。在那些高胆固醇microdomains称为脂质木筏,如果中断或消失,导致扰动的裂解机理。先前的研究也报道,瘦素诱导膜重塑。研究膜重塑的影响溶解性活动瘦素引起的调制。因此,主要的小鼠脾细胞被孵化脂质与methyl-beta-cyclodextrin (beta-MCD)木筏扰乱剂、胆固醇、一个专业细胞膜的组成部分,或者熊去氧胆酸(UDCA)膜稳定剂1 h。这些治疗脾细胞紧随其后孵化与瘦素(缺席、10、100ng / ml)。能够阻止瘦素溶解性归纳。表明瘦素增加溶解性活动原发性脾细胞对syngenic EO771独立于乳腺癌细胞脂质木筏但可能涉及膜流动性。此外,自然杀伤细胞被证明参与的脾细胞溶解性活动。我们的知识是第一个出版主要文化提供了之间的联系瘦素裂解调制和膜重塑。(C) 2016年威利期刊公司。

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