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用于膀胱组织工程的经二醛羧甲基纤维素交联的膀胱脱细胞基质的研制与表征

Development and characterization of bladder acellular matrix cross-linked by dialdehyde carboxymethyl cellulose for bladder tissue engineering.

作者信息

Peng Xu, Yue Pengfei, Zhou Xiong, Li Li, Li Shuangshuang, Yu Xixun

机构信息

College of Polymer Science and Engineering, Sichuan University Chengdu 610065 PR China

Laboratory Animal Center, Sichuan University Chengdu 610065 PR China.

出版信息

RSC Adv. 2019 Dec 18;9(72):42000-42009. doi: 10.1039/c9ra07965c.

Abstract

In order to address the disadvantage of rapid degradation and serious immune response of bladder acellular matrix (BAM) tissues in clinical application, in this study, oxidized carboxymethyl cellulose (DCMC) was developed to replace glutaraldehyde (GA), a most common synthetic crosslinking reagent in clinical practice, to fix BAM tissues for lower cytotoxicity. The aim of this work was to evaluate feasibility of DCMC as a crosslinking reagent for BAM fixation and developing DCMC fixed-BAM (D-BAM) tissues for tissue engineering. For the preparation of DCMC, the results showed that when DCMC was prepared using a specific concentration of sodium periodate solution (the mass ratio of NaIO/CMC is 1 : 1) and a specific reaction time (4 hours), its cytotoxicity was the lowest and its fixation effect was better. The critical crosslinking characteristics and cytocompatibility of optimum D-BAM tissues were also investigated. The results demonstrated that DCMC-fixation (especially 30 mg ml DCMC-fixation) not only formed stable cross-linking bonds but also preserved well the original ultrastructure of the BAM tissues, which simultaneously increased the mechanical strength and capacity of the enzymatic hydrolytic resistance. The DCMC-fixation could also reduce the expression of α-Gal in BAM tissues and preserve the useful growth factors such as GAGs, KGF and TGF-β in bladder tissues. In addition, 30 mg ml D-BAM tissues had excellent cytocompatibility. Moreover, it could stimulate the secretion of PDGF and EGF from seeded bladder transitional epithelial cells (BTECs), which is a critical feature for further re-epithelialization. Its anti-calcification ability was also prominent, which is necessary in bladder repair. The present studies demonstrated that DCMC could be a potential biological crosslinking agent for BAM fixation due to its excellent crosslinking effects, and the D-BAM tissues were suitable to be used as a substitute for the bladder due to their resistance to enzymatic degradation, anticalcification and cytocompatibility.

摘要

为了解决膀胱脱细胞基质(BAM)组织在临床应用中快速降解和严重免疫反应的缺点,本研究开发了氧化羧甲基纤维素(DCMC)来替代临床实践中最常用的合成交联剂戊二醛(GA),以固定BAM组织,降低细胞毒性。这项工作的目的是评估DCMC作为BAM固定交联剂的可行性,并开发用于组织工程的DCMC固定BAM(D-BAM)组织。对于DCMC的制备,结果表明,当使用特定浓度的高碘酸钠溶液(NaIO/CMC的质量比为1∶1)和特定反应时间(4小时)制备DCMC时,其细胞毒性最低,固定效果更好。还研究了最佳D-BAM组织的关键交联特性和细胞相容性。结果表明,DCMC固定(尤其是30 mg/ml DCMC固定)不仅形成了稳定的交联键,还很好地保留了BAM组织的原始超微结构,同时提高了机械强度和抗酶水解能力。DCMC固定还可以降低BAM组织中α-Gal的表达,并保留膀胱组织中有用的生长因子,如糖胺聚糖(GAGs)、角质形成细胞生长因子(KGF)和转化生长因子-β(TGF-β)。此外,30 mg/ml D-BAM组织具有优异的细胞相容性。而且,它可以刺激接种的膀胱移行上皮细胞(BTECs)分泌血小板衍生生长因子(PDGF)和表皮生长因子(EGF),这是进一步再上皮化的关键特征。其抗钙化能力也很突出,这在膀胱修复中是必需的。目前的研究表明,由于其优异的交联效果,DCMC可能是一种用于BAM固定的潜在生物交联剂,并且D-BAM组织因其抗酶降解、抗钙化和细胞相容性而适合用作膀胱替代物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1378/9076556/3fb850ede9d1/c9ra07965c-f1.jpg

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