机械敏感性 Piezo1 通道通过调节 TGF-β1/smad 和 Hippo/YAP1 通路促进神经源性膀胱纤维化。

IF 3.3 3区 生物学 Q3 CELL BIOLOGY
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引用次数: 0

摘要

膀胱纤维化是神经源性膀胱(NB)的最终常见途径,其潜在机制尚未完全明了。本研究旨在评估机械敏感通道 Piezo1 参与膀胱纤维化的情况。在进行回肠膀胱成形术或输尿管再植术时,从手术切口边缘取全厚膀胱标本。通过切断双侧腰6(L6)和骶1(S1)脊神经,制作了NB大鼠模型。利用药理抑制和Piezo1缺失两种方法,研究了Piezo1在TGF-β1诱导的SV-HUC-1细胞纤维化模型中的功能。研究人员利用 RNA-seq、免疫荧光、免疫组织化学(IHC)和 Western 印迹技术评估了纤维化程度和生化信号通路。人类 NB 膀胱中 Piezo1 蛋白表达明显升高。NB 大鼠膀胱中 Piezo1 蛋白的丰度显著增加。RNA-seq分析显示,脊髓损伤(SCI)诱导的膀胱纤维化中,ECM-受体相互作用信号通路和含胶原蛋白的ECM增加。此外,NB 大鼠模型的膀胱显示出 YAP1 和 TGF-β1/Smad 的活化。在SV-HUC-1细胞中,siRNA抑制Piezo1会导致坏死反应和TGF-β1/Smad通路的激活。然而,Piezo1 特异性激动剂 Yoda1 能显著减少这些效应。TGF-β1 增加了 SV-HUC-1 细胞中 Piezo1 的活化和组织坏死反应。在TGF-β1诱导的SV-HUC-1细胞纤维化模型中,TGF-β1/Smad通路被激活,而Hippo/YAP1信号通路被阻断。抑制 Piezo1 可进一步阻止这一过程。Piezo1可能通过调控TGF-β1/Smad和Hippo/YAP1通路,参与了NB膀胱纤维化的进展和SV-HUC-1细胞的坏死性改变。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mechanosensitive Piezo1 channels promote neurogenic bladder fibrosis via regulating TGF-β1/smad and Hippo/YAP1 pathways

Bladder fibrosis is the final common pathway of neurogenic bladder (NB), and its underlying mechanisms are not fully understood. The current study aims to evaluate the involvement of Piezo1, a mechanosensitive channel, in bladder fibrosis. A full-thickness bladder specimen was taken during ileocystoplasty or ureteral reimplantation from the surgical cut's edge. By chopping off the bilateral lumbar 6 (L6) and sacral 1 (S1) spinal nerves, NB rat models were produced. Utilizing both pharmacological inhibition and Piezo1 deletion, the function of Piezo1 in the TGF-β1-induced fibrosis model of SV-HUC-1 cells was delineated. RNA-seq, immunofluorescence, immunohistochemistry (IHC), and Western blotting were used to evaluate the degrees of fibrosis and biochemical signaling pathways. Piezo1 protein expression was noticeably elevated in the human NB bladder. The abundance of Piezo1 protein in bladder of NB rats was significantly increased. RNA-seq analysis revealed that the ECM-receptor interaction signaling pathway and collagen-containing ECM were increased in spinal cord injury (SCI)-induced bladder fibrosis. Moreover, the bladder of the NB rat model showed activation of YAP1 and TGF-β1/Smad. In SV-HUC-1 cells, siRNA suppression of Piezo1 led to profibrotic responses and activation of the TGF-β1/Smad pathway. However, Yoda1, a Piezo1-specific agonist, significantly reduced these effects. TGF-β1 increased Piezo1 activation and profibrotic responses in SV-HUC-1 cells. In the TGF-β1-induced fibrosis model of SV-HUC-1 cells, the TGF-β1/Smad pathway was activated, whereas the Hippo/YAP1 signal pathway was blocked. Inhibition of Piezo1 further prevented this process. Piezo1 is involved in the progression of NB bladder fibrosis and profibrotic alterations in SV-HUC-1 cells, likely through regulating the TGF-β1/Smad and Hippo/YAP1 pathways.

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来源期刊
Experimental cell research
Experimental cell research 医学-细胞生物学
CiteScore
7.20
自引率
0.00%
发文量
295
审稿时长
30 days
期刊介绍: Our scope includes but is not limited to areas such as: Chromosome biology; Chromatin and epigenetics; DNA repair; Gene regulation; Nuclear import-export; RNA processing; Non-coding RNAs; Organelle biology; The cytoskeleton; Intracellular trafficking; Cell-cell and cell-matrix interactions; Cell motility and migration; Cell proliferation; Cellular differentiation; Signal transduction; Programmed cell death.
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