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缺乏 RAGE 可改善 1 型糖尿病小鼠坐骨神经损伤后的再生。

RAGE deficiency improves postinjury sciatic nerve regeneration in type 1 diabetic mice.

机构信息

Diabetes Research Program, Department of Medicine, New York University Langone Medical Center, New York, New York, USA.

出版信息

Diabetes. 2013 Mar;62(3):931-43. doi: 10.2337/db12-0632. Epub 2012 Nov 19.

Abstract

Peripheral neuropathy and insensate limbs and digits cause significant morbidity in diabetic individuals. Previous studies showed that deletion of the receptor for advanced end-glycation products (RAGE) in mice was protective in long-term diabetic neuropathy. Here, we tested the hypothesis that RAGE suppresses effective axonal regeneration in superimposed acute peripheral nerve injury attributable to tissue-damaging inflammatory responses. We report that deletion of RAGE, particularly in diabetic mice, resulted in significantly higher myelinated fiber densities and conduction velocities consequent to acute sciatic nerve crush compared with wild-type control animals. Consistent with key roles for RAGE-dependent inflammation, reconstitution of diabetic wild-type mice with RAGE-null versus wild-type bone marrow resulted in significantly improved axonal regeneration and restoration of function. Diabetic RAGE-null mice displayed higher numbers of invading macrophages in the nerve segments postcrush compared with wild-type animals, and these macrophages in diabetic RAGE-null mice displayed greater M2 polarization. In vitro, treatment of wild-type bone marrow-derived macrophages with advanced glycation end products (AGEs), which accumulate in diabetic nerve tissue, increased M1 and decreased M2 gene expression in a RAGE-dependent manner. Blockade of RAGE may be beneficial in the acute complications of diabetic neuropathy, at least in part, via upregulation of regeneration signals.

摘要

周围神经病变和感觉丧失的四肢和手指会导致糖尿病患者出现严重的发病率。先前的研究表明,在糖尿病性周围神经病变中,RAGE(晚期糖基化终产物受体)的缺失对小鼠具有保护作用。在这里,我们检验了这样一种假设,即 RAGE 抑制了因组织损伤性炎症反应而导致的急性周围神经损伤中的有效轴突再生。我们报告称,与野生型对照动物相比,RAGE 缺失,尤其是在糖尿病小鼠中,导致急性坐骨神经挤压后有髓纤维密度和传导速度显著增加。与 RAGE 依赖性炎症的关键作用一致,用 RAGE 缺失型而非野生型骨髓重建糖尿病野生型小鼠,导致轴突再生和功能恢复显著改善。与野生型动物相比,挤压后糖尿病 RAGE 缺失型小鼠的神经节段中浸润的巨噬细胞数量更多,并且这些巨噬细胞在糖尿病 RAGE 缺失型小鼠中显示出更高的 M2 极化。在体外,用在糖尿病神经组织中积累的晚期糖基化终产物(AGEs)处理野生型骨髓来源的巨噬细胞,以 RAGE 依赖性方式增加 M1 并减少 M2 基因表达。阻断 RAGE 可能有益于糖尿病性周围神经病的急性并发症,至少部分原因是通过上调再生信号。

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