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月桂酸盐通过使闭合蛋白-5可逆性重新定位来打开紧密连接,从而使小分子在肠道上皮细胞模型HT-29/B6中通过细胞旁途径渗透。[已校正]

Laurate permeabilizes the paracellular pathway for small molecules in the intestinal epithelial cell model HT-29/B6 via opening the tight junctions by reversible relocation of claudin-5. [Corrected].

作者信息

Dittmann Isabel, Amasheh Maren, Krug Susanne M, Markov Alexander G, Fromm Michael, Amasheh Salah

机构信息

Institute of Clinical Physiology, Charité, Campus Benjamin Franklin, 12200, Berlin, Germany.

出版信息

Pharm Res. 2014 Sep;31(9):2539-48. doi: 10.1007/s11095-014-1350-2. Epub 2014 Mar 15.

Abstract

PURPOSE

To mechanistically analyze effects of the medium-chain fatty acid laurate on transepithelial permeability in confluent monolayers of the intestinal epithelial cell line HT-29/B6, in context with an application as an absorption enhancer improving transepithelial drug permeation.

METHODS

Transepithelial resistance and apparent permeability for paracellular flux markers was measured using Ussing-type chambers. Two-path impedance spectroscopy was employed to differentiate between transcellular and paracellular resistance, and confocal imaging and Western blotting was performed.

RESULTS

Laurate resulted in a substantial and reversible decrease in transepithelial resistance by 50% which was attributed to a decrease in paracellular resistance. Simultaneously, an increase in permeability for fluorescein (330 Da) was detected, while permeabilities for 4 kDa FITC-dextran and sulpho-NHS-SS-biotin (607 Da) remained unaltered. Confocal laser-scanning microscopy revealed a marked reduction of claudin-5, while other tight junction proteins including tricellulin, a protein preventing the paracellular passage of macromolecules, were not affected.

CONCLUSIONS

Laurate induces an increase in paracellular permeability for molecules up to a molecular mass of 330 Da by retrieval of claudin-5 from tight junctions without affecting tricellular contacts and the paracellular passage of macromolecules. We hereby provide, for the first time, a mechanistical explanation of laurate-induced permeability enhancement on molecular level.

摘要

目的

从作为改善跨上皮药物渗透的吸收促进剂这一应用角度,对中链脂肪酸月桂酸酯对肠上皮细胞系HT - 29/B6汇合单层细胞跨上皮通透性的影响进行机制分析。

方法

使用Ussing型小室测量跨上皮电阻和细胞旁通量标记物的表观渗透率。采用双路径阻抗谱区分跨细胞电阻和细胞旁电阻,并进行共聚焦成像和蛋白质免疫印迹分析。

结果

月桂酸酯使跨上皮电阻显著且可逆地降低了50%,这归因于细胞旁电阻的降低。同时,检测到荧光素(330 Da)的渗透率增加,而4 kDa异硫氰酸荧光素 - 葡聚糖和磺基 - NHS - SS - 生物素(607 Da)的渗透率保持不变。共聚焦激光扫描显微镜显示claudin - 5明显减少,而其他紧密连接蛋白,包括阻止大分子通过细胞旁的tricellulin蛋白,未受影响。

结论

月桂酸酯通过从紧密连接中回收claudin - 5,使分子量高达330 Da的分子的细胞旁通透性增加,而不影响三细胞接触和大分子的细胞旁通道。我们在此首次在分子水平上对月桂酸酯诱导的通透性增强提供了机制解释。

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