首页> 外文期刊>American Journal of Transplantation >Modulation of Wnt and Hedgehog Signaling Pathways Is Linked to Retinoic Acid-Induced Amelioration of Chronic Allograft Dysfunction
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Modulation of Wnt and Hedgehog Signaling Pathways Is Linked to Retinoic Acid-Induced Amelioration of Chronic Allograft Dysfunction

机译:Wnt和刺猬信号通路的调节与视黄酸诱导的慢性同种异体移植功能障碍的改善有关。

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Chronic renal allograft damage (CAD) is manifested by a smoldering inflammatory process that leads to transplant glomerulopathy, diffuse interstitial fibrosis and tubular atrophy with loss of tubular structures. Using a Fischer 344 (RT1lvl) to Lewis (RT1l) rat renal allograft model, transcriptomic profiling and pathway mapping, we have previously shown that dynamic dysregulation of the Wnt signaling pathways may underlie progressive CAD. Retinoic acid, an important regulator of differentiation during vertebrate embryogenesis, can moderate the damage observed in this experimental model of CAD. We show here that subsets of the Hedgehog (Hh) and canonical Wnt signaling pathways are linked to the pathophysiology of progressive fibrosis, loss of cilia in epithelia and chronic dysfunction. Oral treatment with 13cis retinoic acid (13cRA) was found to selectively ameliorate the dysregulation of the Hh and canonical Wnt pathways associated with CAD, and lead to a general preservation of cilial structures. Interplay between these pathways helps explain the therapeutic effects of retinoic acid treatment in CAD, and suggests future targets for moderating chronic fibrosing organ damage.
机译:慢性肾脏同种异体移植损伤(CAD)表现为闷热的炎症过程,导致移植肾小球病变,弥漫性间质纤维化和肾小管萎缩,并丢失肾小管结构。使用Fischer 344(RT1lvl)到Lewis(RT11)大鼠肾同种异体移植模型,转录组谱分析和途径作图,我们先前已经表明,Wnt信号通路的动态失调可能是进行性CAD的基础。维甲酸是脊椎动物胚胎发生过程中分化的重要调节剂,它可以缓解这种CAD实验模型中观察到的损伤。我们在这里显示,刺猬(Hh)和经典Wnt信号通路的子集与进行性纤维化,纤毛在上皮细胞丢失和慢性功能障碍的病理生理学相关。发现口服13cis视黄酸(13cRA)可以选择性地缓解与CAD相关的Hh和经典Wnt通路的失调,并导致总体保留丝状结构。这些途径之间的相互作用有助于解释维甲酸在CAD中的治疗效果,并提出减轻慢性纤维化器官损伤的未来目标。

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