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Sphingolipids and insulin resistance: the five Ws

机译:鞘脂和胰岛素抵抗:五个Ws

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Purpose of review Inhibition of sphingolipid synthesis increases insulin sensitivity, resolves hepatic steatosis, and prevents the onset of diabetes in obese rodents. I herein review these interventional studies, aiming to summarize the five Ws - the 'Who, What, Where, When, and Why' questions that need to be addressed to understand roles of sphingolipids in the pathogenesis of diabetes. Recent findings Who: ceramides and glucosylceramides are likely to be independent antagonists of insulin action. Where: recent data suggest that ceramides may inhibit insulin action in skeletal muscle, whereas glucosylceramides may be more efficacious in adipose tissue. In contrast, sphingolipid accumulation in the liver appears to be insufficient to induce insulin resistance. What: ceramides and glucosylceramides inhibit different insulin signaling events, but it is unclear whether these actions account for the broad spectrum of therapeutic benefits resulting from sphingolipid depletion. When: recent data suggest that obesity-induced inflammation is important for the induction of sphingolipid synthesis. Why: sphingolipids have an evolutionary conserved role to starve cells of nutrients, and the inhibition of insulin action is possibly a component of this broader action. Summary Despite considerable attention to the question of how sphingolipids induce metabolic disease, there exist enormous gaps in knowledge. Further elucidation of these molecular details will be essential for the development of new therapeutic strategies for inhibiting sphingolipid action and ameliorating metabolic diseases.
机译:审查目的抑制鞘脂合成可增加胰岛素敏感性,解决肝脂肪变性,并防止肥胖啮齿动物患上糖尿病。在此,我将回顾这些干预性研究,旨在总结五个W题-“谁,什么,什么地方,什么时候以及为什么”这些问题,这些问题需要理解以了解鞘脂在糖尿病发病机理中的作用。最新发现谁:神经酰胺和葡萄糖基神经酰胺可能是胰岛素作用的独立拮抗剂。哪里:最新数据表明神经酰胺可能抑制骨骼肌的胰岛素作用,而葡萄糖基神经酰胺可能在脂肪组织中更有效。相反,鞘脂在肝脏中的积累似乎不足以诱导胰岛素抵抗。内容:神经酰胺和葡萄糖基神经酰胺抑制不同的胰岛素信号转导事件,但尚不清楚这些作用是否解释了鞘脂消耗引起的广泛治疗益处。时间:最新数据表明,肥胖引起的炎症对于鞘脂合成的诱导很重要。原因:鞘脂对饥饿的营养细胞具有进化上的保守作用,而胰岛素作用的抑制可能是这种更广泛作用的一部分。总结尽管人们对鞘脂如何诱发代谢性疾病的问题给予了极大的关注,但在知识上仍然存在巨大的空白。这些分子细节的进一步阐明对于开发新的抑制鞘脂作用和改善代谢疾病的治疗策略至关重要。

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