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Induction of receptor for advanced glycation end products by insufficient leptin action triggers pancreatic beta-cell failure in type 2 diabetes

机译:瘦素作用不足诱导晚期糖基化终产物的受体触发2型糖尿病的胰腺β细胞衰竭

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摘要

Glucolipotoxicity, which is exerted by free fatty acids (FFA) and prolonged hyperglycemia, is implicated in pancreatic -cell failure in diabetes. Pattern recognition receptors such as receptor for advanced glycation end products (RAGE) and toll-like receptors 2 and 4 could mediate danger signals in -cells. We examined whether RAGE contributes to -cell failure in a type 2 diabetes mouse model. Pancreatic islets were isolated from ob/ob, db/db, diet-induced obesity (DIO), RAGE-null (RAGE/), and RAGE+/+ wild-type (WT) control mice and dispersed into single cells for flow cytometry. RAGE expression was detected in insulin-positive -cells of ob/ob and db/db mice, but not of WT, DIO, or RAGE/ mice: thus, inadequate leptin receptor signaling and RAGE expression may be linked. Compared with RAGE+/+ db/db mice, RAGE/ db/db mice showed higher -cell number and mass with less apoptosis as well as glucose tolerance with higher insulin secretion without any differences in serum levels of FFA and adiponectin. Palmitate or oleate pretreatment combined with a leptin antagonist induced RAGE expression, AGE-elicited apoptosis, and impaired glucose-stimulated insulin secretion by advanced glycation end products (AGE) in MIN6 cells. FFA elevation with concomitant AGE formation during prolonged hyperglycemia could cause -cell damage through insufficient leptin action and subsequent RAGE induction in type 2 diabetes.
机译:游离脂肪酸(FFA)和长时间的高血糖引起的糖脂毒性与糖尿病的胰腺细胞衰竭有关。模式识别受体,例如晚期糖基化终末产物(RAGE)的受体以及收费型受体2和4,可以介导细胞内的危险信号。我们检查了RAGE是否在2型糖尿病小鼠模型中导致-细胞衰竭。从ob / ob,db / db,饮食诱导的肥胖症(DIO),RAGE-null(RAGE /)和RAGE + / +野生型(WT)对照小鼠中分离出胰岛,然后分散到单个细胞中进行流式细胞术。在ob / ob和db / db小鼠的胰岛素阳性细胞中检测到RAGE表达,但在WT,DIO或RAGE /小鼠中未检测到RAGE表达:因此,瘦素受体信号传导和RAGE表达可能不足。与RAGE + / + db / db小鼠相比,RAGE / db / db小鼠显示更高的细胞数量和质量,凋亡更少,葡萄糖耐量更高,胰岛素分泌更高,而FFA和脂联素的血清水平没有任何差异。棕榈酸酯或油酸酯预处理与瘦素拮抗剂组合可导致MIN6细胞中晚期糖基化终产物(AGE)引起RAGE表达,AGE诱导凋亡和受损的葡萄糖刺激胰岛素分泌。在长期高血糖期间,FFA升高并伴有AGE形成,可能通过瘦素作用不足和随后的2型糖尿病RAGE诱导而引起细胞损伤。

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