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通过正交硫醇-降冰片烯光化学形成的用于细胞封装的明胶水凝胶。

Gelatin hydrogels formed by orthogonal thiol-norbornene photochemistry for cell encapsulation.

作者信息

Mũnoz Zachary, Shih Han, Lin Chien-Chi

机构信息

Department of Biomedical Engineering, Purdue School of Engineering & Technology, Indiana University-Purdue University Indianapolis, Indianapolis, IN 46202, USA.

出版信息

Biomater Sci. 2014 Aug 30;2(8):1063-1072. doi: 10.1039/c4bm00070f. Epub 2014 Apr 23.

Abstract

Covalently cross-linked gelatin hydrogels have received considerable attention in biomedical fields due to the inherent bioactivity of gelatin and the stability of covalent bonds linking the gelatin chains. Derivatives of gelatin, such as gelatin-methacrylamide (GelMA), can be cross-linked into covalent hydrogels through radical-mediated chain-growth photopolymerization. However, accumulating evidence suggests that chain-growth polymerized hydrogels may not be ideal for the encapsulation of cells and proteins prone to radical-mediated damage. The formation of heterogeneous kinetic chains following chain-growth polymerization of (meth)acrylates or (meth)acrylamides may also hinder molecular transport or alter cell-cell/cell-material interactions. This study presents a new synthesis route for preparing norbornene-functionalized gelatin (GelNB) that could be used to form orthogonally cross-linked gelatin-based hydrogels via a thiol-ene photo-click reaction. GelNB was synthesized through reacting gelatin with carbic anhydride in aqueous buffered solution, and the degree of norbornene substitution was controlled by adjusting the reaction time and the solution pH value. GelNB hydrogels were prepared by step-growth thiol-ene photopolymerization using multifunctional thiols as gel cross-linkers and the degree of GelNB hydrogel cross-linking was tuned by adjusting the thiol concentration, GelNB content, or cross-linker functionality. The cytocompatibility of orthogonally cross-linked GelNB hydrogels were demonstrated by in situ photo-encapsulation of human mesenchymal stem cells (hMSCs). When compared with the chain-growth GelMA hydrogels, the orthogonally cross-linked GelNB hydrogel promoted a faster and higher degree of cell spreading.

摘要

由于明胶固有的生物活性以及连接明胶链的共价键的稳定性,共价交联的明胶水凝胶在生物医学领域受到了广泛关注。明胶的衍生物,如明胶 - 甲基丙烯酰胺(GelMA),可以通过自由基介导的链式增长光聚合反应交联成共价水凝胶。然而,越来越多的证据表明,链式增长聚合的水凝胶可能并不适合封装易受自由基介导损伤的细胞和蛋白质。(甲基)丙烯酸酯或(甲基)丙烯酰胺链式增长聚合后形成的异质动力学链也可能阻碍分子运输或改变细胞 - 细胞/细胞 - 材料相互作用。本研究提出了一种制备降冰片烯功能化明胶(GelNB)的新合成路线,该路线可用于通过硫醇 - 烯光点击反应形成正交交联的明胶基水凝胶。GelNB是通过在水性缓冲溶液中使明胶与碳酸酐反应合成的,降冰片烯取代度通过调节反应时间和溶液pH值来控制。使用多功能硫醇作为凝胶交联剂,通过逐步增长硫醇 - 烯光聚合制备GelNB水凝胶,并通过调节硫醇浓度、GelNB含量或交联剂官能度来调整GelNB水凝胶的交联程度。通过原位光封装人间充质干细胞(hMSCs)证明了正交交联的GelNB水凝胶的细胞相容性。与链式增长的GelMA水凝胶相比,正交交联的GelNB水凝胶促进了更快且更高程度的细胞铺展。

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