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Molecular Mechanisms Underlying Peritoneal EMT and Fibrosis

机译:腹膜EMT和纤维化的分子机制

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摘要

Peritoneal dialysis is a form of renal replacement alternative to the hemodialysis. During this treatment, the peritoneal membrane acts as a permeable barrier for exchange of solutes and water. Continual exposure to dialysis solutions, as well as episodes of peritonitis and hemoperitoneum, can cause acute/chronic inflammation and injury to the peritoneal membrane, which undergoes progressive fibrosis, angiogenesis, and vasculopathy, eventually leading to discontinuation of the peritoneal dialysis. Among the different events controlling this pathological process, epithelial to mesenchymal transition of mesothelial cells plays a main role in the induction of fibrosis and in subsequent functional deterioration of the peritoneal membrane. Here, the main extracellular inducers and cellular players are described. Moreover, signaling pathways acting during this process are elucidated, with emphasis on signals delivered by TGF-beta family members and by Toll-like/IL-1 beta receptors. The understanding of molecular mechanisms underlying fibrosis of the peritoneal membrane has both a basic and a translational relevance, since it may be useful for setup of therapies aimed at counteracting the deterioration as well as restoring the homeostasis of the peritoneal membrane.
机译:腹膜透析是一种肾置换替代血液透析的形式。在此期间,腹膜膜作为交换溶质和水的可渗透屏障。持续暴露于透析溶液以及腹膜炎和血管内的发作,可导致腹膜膜的急性/慢性炎症和损伤,该腹膜膜经历渐进性纤维化,血管生成和血管病变,最终导致停止腹膜透析。在控制该病理过程的不同事件中,中皮对间皮细胞的间充质转变在纤维化诱导和随后的腹膜膜的功能劣化中起主要作用。这里,描述了主要的细胞外诱导剂和细胞玩家。此外,在该方法期间作用的信号传导途径被阐明,重点是TGF-β系列成员和通过Toll样/ IL-1β受体递送的信号。对腹膜膜的纤维化纤维化的分子机制的理解具有基本和平移的相关性,因为它对于旨在抵抗劣化以及恢复腹膜膜的稳态可能是有用的。

著录项

  • 来源
    《Stem cells international》 |2016年第5期|共11页
  • 作者单位

    Univ Roma La Sapienza Mol Genet Sect Dept Cellular Biotechnol &

    Hematol Viale Regina Elena 324;

    Ctr Nacl Invest Cardiovasc Carlos III CNIC Cell &

    Dev Biol Area Cell Biol &

    Physiol Program;

    Univ Roma La Sapienza Mol Genet Sect Dept Cellular Biotechnol &

    Hematol Viale Regina Elena 324;

    Univ Roma La Sapienza Mol Genet Sect Dept Cellular Biotechnol &

    Hematol Viale Regina Elena 324;

    Univ Roma La Sapienza Mol Genet Sect Dept Cellular Biotechnol &

    Hematol Viale Regina Elena 324;

    Univ Roma La Sapienza Mol Genet Sect Dept Cellular Biotechnol &

    Hematol Viale Regina Elena 324;

    Univ Roma La Sapienza Mol Genet Sect Dept Cellular Biotechnol &

    Hematol Viale Regina Elena 324;

    Ctr Nacl Invest Cardiovasc Carlos III CNIC Cell &

    Dev Biol Area Cell Biol &

    Physiol Program;

    Univ Roma La Sapienza Mol Genet Sect Dept Cellular Biotechnol &

    Hematol Viale Regina Elena 324;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物工程学(生物技术);
  • 关键词

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