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两种基于弹性蛋白样重组体的水凝胶的生物相容性,这两种水凝胶通过物理或化学交联形成,可用于组织工程和再生医学中的各种应用。

Biocompatibility of two model elastin-like recombinamer-based hydrogels formed through physical or chemical cross-linking for various applications in tissue engineering and regenerative medicine.

机构信息

BIOFORGE Lab, University of Valladolid-CIBER-BBN, Valladolid, Spain.

Instituto de Investigación Biomédica de Salamanca (IBSAL), Hospital Universitario de Salamanca, Salamanca, Spain.

出版信息

J Tissue Eng Regen Med. 2018 Mar;12(3):e1450-e1460. doi: 10.1002/term.2562. Epub 2017 Nov 26.

Abstract

Biocompatibility studies, especially innate immunity induction, in vitro and in vivo cytotoxicity, and fibrosis, are often lacking for many novel biomaterials including recombinant protein-based ones, such as elastin-like recombinamers (ELRs), and has not been extensively explored in the scientific literature, in contrast to traditional biomaterials. Herein, we present the results from a set of experiments designed to elucidate the preliminary biocompatibility of 2 types of ELRs that are able to form extracellular matrix-like hydrogels through either physical or chemical cross-linking both of which are intended for different applications in tissue engineering and regenerative medicine. Initially, we present in vitro cytocompatibility results obtained upon culturing human umbilical vein endothelial cells on ELR substrates, showing optimal proliferation up to 9 days. Regarding in vivo cytocompatibility, luciferase-expressing hMSCs were viable for at least 4 weeks in terms of bioluminescence emission when embedded in ELR hydrogels and injected subcutaneously into immunosuppressed mice. Furthermore, both types of ELR-based hydrogels were injected subcutaneously in immunocompetent mice and serum TNFα, IL-1β, IL-4, IL-6, and IL-10 concentrations were measured by enzyme-linked immunosorbent assay, confirming the lack of inflammatory response, as also observed upon macroscopic and histological evaluation. All these findings suggest that both types of ELRs possess broad biocompatibility, thus making them very promising for tissue engineering and regenerative medicine-related applications.

摘要

生物相容性研究,特别是先天免疫诱导、体外和体内细胞毒性以及纤维化,对于许多新型生物材料(包括基于重组蛋白的生物材料,如弹性蛋白样重组体(ELRs))往往缺乏,而在科学文献中也没有得到广泛探讨,这与传统生物材料形成鲜明对比。在此,我们介绍了一组旨在阐明两种 ELR 类型初步生物相容性的实验结果,这两种 ELR 类型能够通过物理或化学交联形成类似于细胞外基质的水凝胶,它们分别应用于组织工程和再生医学中的不同应用。最初,我们展示了在 ELR 基质上培养人脐静脉内皮细胞获得的体外细胞相容性结果,显示出最佳的增殖能力,可达 9 天。关于体内细胞相容性,当将表达荧光素酶的 hMSC 嵌入 ELR 水凝胶并皮下注射到免疫抑制小鼠中时,从生物发光发射的角度来看,它们至少在 4 周内是存活的。此外,将两种类型的基于 ELR 的水凝胶皮下注射到免疫活性小鼠中,并通过酶联免疫吸附试验测量血清 TNFα、IL-1β、IL-4、IL-6 和 IL-10 浓度,证实缺乏炎症反应,这也在宏观和组织学评估中观察到。所有这些发现表明,两种类型的 ELR 都具有广泛的生物相容性,因此非常适合组织工程和再生医学相关应用。

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