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交联密度对碳酸二酯处理的明胶基质作为角膜缘干细胞巢结构和性能的影响。

Effect of Cross-Linking Density on the Structures and Properties of Carbodiimide-Treated Gelatin Matrices as Limbal Stem Cell Niches.

机构信息

Graduate Institute of Biomedical Engineering, Chang Gung University, Taoyuan 33302, Taiwan.

Department of Ophthalmology, Chang Gung Memorial Hospital, Linkou, Taoyuan 33305, Taiwan.

出版信息

Int J Mol Sci. 2018 Oct 23;19(11):3294. doi: 10.3390/ijms19113294.

Abstract

Given that human amniotic membrane is a valuable biological material not readily available for corneal epithelial tissue engineering, gelatin is considered as a potential alternative to construct a cellular microenvironment. This study investigates, for the first time, the influence of cross-linking density of carbodiimide-treated gelatin matrices on the structures and properties of artificial limbal stem cell niches. Our results showed that an increase in the carbodiimide concentration from 1.5 to 15 mM leads to an upward trend in the structural and suture strength of biopolymers. Furthermore, increasing number of cross-linking bridges capable of linking protein molecules together may reduce their crystallinity. For the samples treated with 50 mM of cross-linker (i.e., the presence of excess -substituted carbodiimide), abundant -acylurea was detected, which was detrimental to the in vitro and in vivo ocular biocompatibility of gelatin matrices. Surface roughness and stiffness of biopolymer substrates were found to be positively correlated with carbodiimide-induced cross-link formation. Significant increases of integrin β1 expression, metabolic activity, and ABCG2 expression were noted as the cross-linker concentration increased, suggesting that the bulk crystalline structure and surface roughness/stiffness of niche attributed to the number of cross-linking bridges may have profound effects on a variety of limbal epithelial cell behaviors, including adhesion, proliferation, and stemness maintenance. In summary, taking the advantages of carbodiimide cross-linking-mediated development of gelatin matrices, new niches with tunable cross-linking densities can provide a significant boost to maintain the limbal stem cells during ex vivo expansion.

摘要

鉴于人类羊膜是一种有价值的生物材料,不易用于角膜上皮组织工程,明胶被认为是构建细胞微环境的潜在替代品。本研究首次探讨了碳化二亚胺处理的明胶基质的交联密度对人工角膜缘干细胞龛结构和特性的影响。我们的结果表明,碳化二亚胺浓度从 1.5mM 增加到 15mM 会导致生物聚合物的结构和缝合强度呈上升趋势。此外,能够将蛋白质分子连接在一起的交联桥的数量增加可能会降低其结晶度。对于用 50mM 交联剂(即存在过量的取代的碳化二亚胺)处理的样品,检测到丰富的酰基脲,这对明胶基质的体外和体内眼生物相容性有害。发现生物聚合物基底的表面粗糙度和刚性与碳化二亚胺诱导的交联形成呈正相关。随着交联剂浓度的增加,整合素β1表达、代谢活性和 ABCG2 表达显著增加,表明基质的整体结晶结构和表面粗糙度/刚性归因于交联桥的数量,可能对各种角膜缘上皮细胞行为产生深远影响,包括粘附、增殖和干性维持。总之,利用碳化二亚胺交联介导的明胶基质的发展优势,具有可调交联密度的新龛可以为体外扩增过程中维持角膜缘干细胞提供显著的支持。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3b27/6274912/debe6ec48ef9/ijms-19-03294-g001.jpg

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