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铁离子交联苹果果胶制备水凝胶的体外腹膜粘连。

Serosal Adhesion Ex Vivo of Hydrogels Prepared from Apple Pectin Cross-Linked with Fe Ions.

机构信息

Institute of Physiology of Federal Research Centre "Komi Science Centre of the Urals Branch of the Russian Academy of Sciences", 50, Pervomaiskaya Str., 167982 Syktyvkar, Russia.

出版信息

Int J Mol Sci. 2023 Jan 8;24(2):1248. doi: 10.3390/ijms24021248.

Abstract

The study aims to investigate the adhesion of a hydrogel made of cross-linked low-methyl esterified pectin to rat intestinal serosa ex vivo. The adhesivity of the FeP hydrogel, which was cross-linked by Fe cations, exceeded that of hydrogels cross-linked by Ca, Zn, and Al cations. The concentration of the cross-linking cation failed to influence the adhesion of the pectin hydrogel to the serosa. The mechanical properties and surface microrelief of the pectin hydrogel were influenced by the type and concentration of the cross-linking cations. Fe cations form a harder and more elastic gel than Ca cations. Scanning electron microscopy analysis revealed the characteristic surface pattern of FeP hydrogel and its denser internal structure compared to Ca cross-linked hydrogel. The effect of the salt composition of the adhesion medium was shown since the FeP hydrogel's adhesion to the serosa was lower in physiological solutions than in water, and adhesion in Hanks' solution was higher than in phosphate buffered saline. Serum proteins and peritoneal leukocytes did not interfere with the serosal adhesion of the FeP hydrogel. Pre-incubation in Hanks' solution for 24 h significantly reduced the adhesion of the FeP hydrogel to the serosa, regardless of the pH of the incubation. Thus, serosal adhesion combined with excellent stability and mechanical properties in physiological environments appeared to be advantages of the FeP hydrogel, demonstrating it to be a promising bioadhesive for tissue engineering.

摘要

本研究旨在探讨交联低甲酯化果胶水凝胶对大鼠肠浆膜的体外黏附性。Fe 离子交联的 FeP 水凝胶的黏附性超过了 Ca、Zn 和 Al 离子交联的水凝胶。交联阳离子的浓度并不影响果胶水凝胶对浆膜的黏附性。果胶水凝胶的机械性能和表面微观形貌受交联阳离子的类型和浓度的影响。Fe 离子形成的凝胶比 Ca 离子更硬、更有弹性。扫描电子显微镜分析显示,FeP 水凝胶具有独特的表面图案和比 Ca 交联水凝胶更致密的内部结构。黏附介质的盐组成的影响也得到了证明,因为 FeP 水凝胶对浆膜的黏附性在生理溶液中低于在水中,而在 Hank's 溶液中的黏附性高于在磷酸盐缓冲盐水中。血清蛋白和腹腔白细胞不会干扰 FeP 水凝胶对浆膜的黏附。在 Hank's 溶液中孵育 24 h 会显著降低 FeP 水凝胶对浆膜的黏附性,而孵育 pH 值的影响可以忽略不计。因此,FeP 水凝胶在生理环境中具有良好的稳定性和机械性能,同时还具有浆膜黏附性,这似乎是其优势,表明它是一种有前途的组织工程生物黏附剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7368/9861213/8ba1e187279d/ijms-24-01248-g001.jpg

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