上皮动力学在时间和空间上不同,当暴露于渗透增强剂透max和EGTA。一种针锋相对的机械比较

D. Panou, S. Pedersen, M. Kristensen, H. M. Nielsen
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引用次数: 0

摘要

用于糖尿病治疗的治疗性肽如胰高血糖素样肽或胰岛素在口服给药时的吸收受到互连包括肠上皮的细胞的紧密连接(TJ)蛋白的高度限制。通过细胞旁途径改善这种生物药物的跨上皮渗透的一种方法是使用功能性赋形剂,其瞬时调节TJ。在这里,我们研究了不同浓度的膜相互作用肽透皮肽和二价阳离子螯合剂乙二醇四乙酸(EGTA),以揭示和比较它们在增加药物大分子的跨上皮渗透时的细胞作用模式。实时研究了上皮完整性以及右旋糖酐在分化的上皮Caco-2细胞单层中的渗透。TJ蛋白表达和细胞骨架组织在暴露于透皮菌素或EGTA期间和之后进行了研究。基于正交方法,我们发现透皮最大值的作用机制是立即和短暂地加宽细胞旁间隙,导致大小选择性的透皮通道和随后的上皮重建。同时,不同TJ蛋白的表达和组织受到可逆调节。相反,EGTA对细胞旁间隙的调节作用较慢,TJ蛋白非特异性,并且没有明确的渗透剂大小选择性。总的来说,这些数据为理解肠道屏障动力学提供了深入的见解,在评估新的或现有的生物药物口服赋形剂(如肽治疗剂)时,肠道屏障动力学具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Epithelium dynamics differ in time and space when exposed to the permeation enhancers penetramax and EGTA. A head-to-head mechanistic comparison
Absorption of therapeutic peptides like glucagon-like peptide or insulin for diabetes therapy upon oral administration is highly restricted by the tight junction (TJ) proteins interconnecting the cells comprising the intestinal epithelium. An approach to improve transepithelial permeation of such biopharmaceuticals via the paracellular pathway is to use functional excipients, which transiently modulate the TJs. Here, we investigated the membrane-interacting peptide, penetramax, and the divalent cation chelator, ethylene glycol tetraacetic acid (EGTA) at different concentrations, to reveal and compare their cellular modes of action when increasing the transepithelial permeation of drug macromolecules. The epithelial integrity was studied in real time along with dextran permeation across differentiated epithelial Caco-2 cell monolayers. TJ protein expression and cytoskeleton organization were investigated during and after exposure to penetramax or EGTA. Based on orthogonal methods, we show that penetramax acts by a mechanism that immediately and transiently widens the paracellular space, resulting in size selective permeant passage and with subsequent reconstitution of the epithelium. At the same time, the expression and organization of different TJ proteins are modulated reversibly. In contrast, the effect of EGTA on modulating the paracellular space is slower and TJ protein unspecific, and without clear permeant size selectivity. Overall, these data provide in-depth insights for understanding intestinal barrier dynamics of importance when evaluating new or existing excipients for oral delivery of biopharmaceuticals, such as peptide therapeutics.
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