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微管稳定作用对抗(TNF-α)诱导的角膜内皮屏障完整性丧失。

Microtubule stabilization opposes the (TNF-alpha)-induced loss in the barrier integrity of corneal endothelium.

机构信息

School of Optometry, 800 E. Atwater Avenue, Indiana University, Bloomington, IN 47405, USA.

出版信息

Exp Eye Res. 2009 Dec;89(6):950-9. doi: 10.1016/j.exer.2009.08.004. Epub 2009 Aug 18.

Abstract

Microtubule disassembly breaks down the barrier integrity in a number of epithelial and endothelial monolayers. This study has investigated effects of TNF-alpha, which is implicated in corneal allograft rejection, on microtubules and barrier integrity in cultured bovine corneal endothelial cells. Exposure to TNF-alpha led to disassembly of the microtubules, and also caused disruption of the perijunctional actomyosin ring (PAMR). As a measure of barrier integrity, trans-endothelial electrical resistance (TER) was determined based on electrical cell-substrate impedance sensing in realtime. Exposure to TNF-alpha caused a slow decline in TER for > 20 h, and a similar exposure to cells grown on porous culture inserts led to a significant increase in permeability to FITC dextran. These changes, indicating a loss of barrier integrity, were also reflected by dislocation of ZO-1 at the cell border and disassembly of cadherins. These effects of TNF-alpha were inhibited upon stabilization of microtubules by pre-treatment with paclitaxel or epothilone B. Microtubule stabilization may be a useful strategy to overcome (TNF-alpha)-induced loss of the barrier integrity of corneal endothelium during inflammation associated with transplant rejection and uveitis.

摘要

微管解聚破坏了许多上皮和内皮单层细胞的屏障完整性。本研究调查了 TNF-α(与角膜同种异体移植物排斥反应有关)对培养的牛角膜内皮细胞中的微管和屏障完整性的影响。TNF-α 的暴露导致微管解聚,并破坏了周细胞肌动球蛋白环(PAMR)。作为屏障完整性的衡量标准,根据实时细胞-基质阻抗传感测定跨内皮电阻(TER)。TNF-α 的暴露导致 TER 在 >20 小时内缓慢下降,而类似地暴露于多孔培养插入物上生长的细胞会导致 FITC 葡聚糖的通透性显著增加。这些变化表明屏障完整性丧失,也反映在细胞边界处 ZO-1 的错位和钙粘蛋白的解聚。紫杉醇或埃坡霉素 B 预处理稳定微管可抑制 TNF-α 的这些作用。微管稳定可能是一种有用的策略,可以克服与移植排斥和葡萄膜炎相关的炎症期间 TNF-α 诱导的角膜内皮屏障完整性丧失。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dc06/2784278/c547d2b8f5d5/nihms139926f1.jpg

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