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慢性哇巴因靶向形成孔的 Claudin-2 并改善辐射诱导的大鼠肠组织屏障损伤。

Chronic Ouabain Targets Pore-Forming Claudin-2 and Ameliorates Radiation-Induced Damage to the Rat Intestinal Tissue Barrier.

机构信息

Department of General Physiology, St. Petersburg State University, 199034 St. Petersburg, Russia.

出版信息

Int J Mol Sci. 2023 Dec 24;25(1):278. doi: 10.3390/ijms25010278.

Abstract

Ionizing radiation (IR) causes disturbances in the functions of the gastrointestinal tract. Given the therapeutic potential of ouabain, a specific ligand of the Na,K-ATPase, we tested its ability to protect against IR-induced disturbances in the barrier and transport properties of the jejunum and colon of rats. Male Wistar rats were subjected to 6-day intraperitoneal injections of vehicle or ouabain (1 µg/kg/day). On the fourth day of injections, rats were exposed to total-body X-ray irradiation (10 Gy) or a sham irradiation. Isolated tissues were examined 72 h post-irradiation. Electrophysiological characteristics and paracellular permeability for sodium fluorescein were measured in an Ussing chamber. Histological analysis and Western blotting were also performed. In the jejunum tissue, ouabain exposure did not prevent disturbances in transepithelial resistance, paracellular permeability, histological characteristics, as well as changes in the expression of claudin-1, -3, -4, tricellulin, and caspase-3 induced by IR. However, ouabain prevented overexpression of occludin and the pore-forming claudin-2. In the colon tissue, ouabain prevented electrophysiological disturbances and claudin-2 overexpression. These observations may reveal a mechanism by which circulating ouabain maintains tight junction integrity under IR-induced intestinal dysfunction.

摘要

电离辐射(IR)会导致胃肠道功能紊乱。鉴于哇巴因作为 Na,K-ATP 酶的特定配体具有治疗潜力,我们测试了它保护大鼠空肠和结肠的屏障和转运功能免受 IR 诱导的干扰的能力。雄性 Wistar 大鼠接受 6 天的腹腔注射载体或哇巴因(1µg/kg/天)。在注射的第四天,大鼠接受全身 X 射线照射(10Gy)或假照射。照射后 72 小时检查分离的组织。在 Ussing 室中测量钠离子萤光素的电生理学特性和细胞旁通透性。还进行了组织学分析和 Western blot。在空肠组织中,哇巴因暴露并不能预防 IR 引起的跨上皮电阻、细胞旁通透性、组织学特征以及 Claudin-1、-3、-4、三细胞连接蛋白和半胱天冬酶-3 表达变化的干扰。然而,哇巴因可防止闭合蛋白和形成孔的 Claudin-2 的过表达。在结肠组织中,哇巴因可预防电生理学紊乱和 Claudin-2 的过表达。这些观察结果可能揭示了循环哇巴因在 IR 诱导的肠道功能障碍下维持紧密连接完整性的机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d3bc/10778734/b80800a4692e/ijms-25-00278-g001.jpg

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