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首页> 外文期刊>The journal of clinical investigation >Dendritic cell dysfunction and diabetic sensory neuropathy in the cornea
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Dendritic cell dysfunction and diabetic sensory neuropathy in the cornea

机译:角膜中的树突状细胞功能障碍和糖尿病感觉神经病

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Diabetic peripheral neuropathy (DPN) often leads to neurotrophic ulcerations in the cornea and skin; however, the underlying cellular mechanisms of this complication are poorly understood. Here, we used post-wound corneal sensory degeneration and regeneration as a model and tested the hypothesis that diabetes adversely affects DC populations and infiltration, resulting in disrupted DC-nerve communication and DPN. In streptozotocin-induced type 1 diabetic mice, there was a substantial reduction in sensory nerve density and the number of intraepithelial DCs in unwounded (UW) corneas. In wounded corneas, diabetes markedly delayed sensory nerve regeneration and reduced the number of infiltrating DCs, which were a major source of ciliary neurotrophic factor (CNTF) in the cornea. While CNTF neutralization retarded reinnervation in normal corneas, exogenous CNTF accelerated nerve regeneration in the wounded corneas of diabetic mice and healthy animals, in which DCs had been locally depleted. Moreover, blockade of the CNTF-specific receptor CNTFRα induced sensory nerve degeneration and retarded regeneration in normal corneas. Soluble CNTFRα also partially restored the branching of diabetes-suppressed sensory nerve endings and regeneration in the diabetic corneas. Collectively, our data show that DCs mediate sensory nerve innervation and regeneration through CNTF and that diabetes reduces DC populations in UW and wounded corneas, resulting in decreased CNTF and impaired sensory nerve innervation and regeneration.
机译:糖尿病性周围神经病(DPN)通常导致角膜和皮肤的神经营养性溃疡。然而,对该并发症的潜在细胞机制了解甚少。在这里,我们使用伤口后角膜感觉变性和再生为模型,并检验了以下假设:糖尿病不利地影响DC人口和渗透,从而导致DC神经沟通和DPN中断。在链脲佐菌素诱导的1型糖尿病小鼠中,未受伤的(UW)角膜的感觉神经密度和上皮内DC的数量大大减少。在受伤的角膜中,糖尿病显着延迟了感觉神经的再生并减少了浸润性DC的数量,DC是角膜中睫状神经营养因子(CNTF)的主要来源。尽管CNTF中和作用会阻碍正常角膜的神经支配,但外源CNTF会加速糖尿病小鼠和健康动物的受伤角膜(其中DC已被局部消耗)的神经再生。此外,在正常角膜中,CNTF特异性受体CNTFRα的阻断诱导感觉神经变性并阻碍了再生。可溶性CNTFRα还可以部分恢复糖尿病抑制的感觉神经末梢的分支和糖尿病性角膜的再生。总体而言,我们的数据表明DC通过CNTF介导感觉神经的支配和再生,而糖尿病减少了UW和受伤的角膜的DC人口,导致CNTF减少和感觉神经的支配和再生受损。

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