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腹膜间皮的分子与功能特性:溶质转运的屏障

Molecular and Functional Characterization of the Peritoneal Mesothelium, a Barrier for Solute Transport.

作者信息

Marinovic Iva, Bartosova Maria, Levai Eszter, Herzog Rebecca, Saleem Arslan, Du Zhiwei, Zhang Conghui, Sacnun Juan Manuel, Pitaraki Eleanna, Sinis Sotirios, Damgov Ivan, Krunic Damir, Lajqi Trim, Al-Saeedi Mohammed, Szabo J Attila, Hausmann Michael, Pap Domonkos, Kratochwill Klaus, Krug Susanne M, Zarogiannis Sotirios G, Schmitt Claus Peter

机构信息

Center for Pediatric and Adolescent Medicine, Department 1, Pediatric Nephrology, Medical Faculty Heidelberg, Heidelberg University, 69120 Heidelberg, Germany.

Pediatric Center, MTA Center of Excellence, Semmelweis University, 1083 Budapest, Hungary.

出版信息

Function (Oxf). 2025 Feb 12;6(1). doi: 10.1093/function/zqae051.

Abstract

Peritoneal dialysis (PD) is an increasingly needed, life-maintaining kidney replacement therapy; efficient solute transport is critical for patient outcome. While the role of peritoneal perfusion on solute transport in PD has been described, the role of cellular barriers is uncertain, the mesothelium has been considered irrelevant. We calculated peritoneal blood microvascular endothelial surface area (BESA) to mesothelial surface area (MSA) ratio in human peritonea in health, chronic kidney disease, and on PD, and performed molecular transport related gene profiling and single molecule localization microscopy in two mesothelial (MC) and two endothelial cell lines (EC). Molecular-weight dependent transport was studied in-vitro, ex-vivo and in mice. Peritoneal BESA is 1-3-fold higher than MSA across age groups, and increases with PD, while the mesothelium is preserved during the first 2 years of PD. Tight junction, transmembrane and transcytotic transporter expression are cell-type specifically expressed. At nanoscale, tight junction anchoring protein Zonula occludens-1 is more abundant and more continuously expressed along the MC than the EC. Ionic conductance is 3-fold lower across the MC than human microvascular EC, as is the permeability for creatinine, 4- and 10-kDa, but not for 70-kDa dextran. MC removal from sheep peritoneum abolishes ionic barrier function. Short term intraperitoneal LPS exposure in mice selectively affects peritoneal mesothelial integrity and increases transperitoneal solute transport. We provide molecular correlates and consistent functional evidence for the mesothelium as a barrier for peritoneal solute transport, ie, essential information on peritoneal transport modeling, and for interventions to improve PD efficiency and biocompatibility, and beyond.

摘要

腹膜透析(PD)是一种日益必要的维持生命的肾脏替代疗法;有效的溶质转运对患者预后至关重要。虽然腹膜灌注在PD溶质转运中的作用已被描述,但细胞屏障的作用尚不确定,间皮一直被认为无关紧要。我们计算了健康、慢性肾病及接受PD治疗的人体腹膜中腹膜血微血管内皮表面积(BESA)与间皮表面积(MSA)的比值,并在两种间皮细胞系(MC)和两种内皮细胞系(EC)中进行了分子转运相关基因谱分析和单分子定位显微镜检查。在体外、离体及小鼠体内研究了分子量依赖性转运。各年龄组腹膜BESA均比MSA高1至3倍,且随PD治疗增加,而在PD治疗的前两年间皮得以保留。紧密连接、跨膜及转胞吞转运体表达具有细胞类型特异性。在纳米尺度上,紧密连接锚定蛋白闭合蛋白-1在MC上比在EC上更丰富且表达更持续。MC的离子电导率比人微血管EC低3倍,肌酐、4 kDa和10 kDa的通透性也低,但70 kDa葡聚糖的通透性则不然。去除绵羊腹膜中的MC可消除离子屏障功能。小鼠短期腹腔内脂多糖暴露会选择性影响腹膜间皮完整性并增加跨腹膜溶质转运。我们提供了分子相关性及一致的功能证据,证明间皮是腹膜溶质转运的屏障,即关于腹膜转运建模的重要信息,以及对提高PD效率和生物相容性等干预措施的重要信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a222/11815573/e5eb04a5fbe5/zqae051gra.jpg

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