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一种比较多参数的体外模型确定了测试条件预测生物材料纤维化倾向的能力。

A comparative multi-parametric in vitro model identifies the power of test conditions to predict the fibrotic tendency of a biomaterial.

机构信息

University Hospital Wuerzburg, Department Tissue Engineering and Regenerative Medicine (TERM), Roentgenring 11, 97070, Wuerzburg, Germany.

Fraunhofer Institute for Interfacial Engineering and Biotechnology, Translational Center Wuerzburg Regenerative Therapies in Oncology and Musculoskeletal Disease, 97070, Wuerzburg, Germany.

出版信息

Sci Rep. 2017 May 10;7(1):1689. doi: 10.1038/s41598-017-01584-9.

Abstract

Despite growing effort to advance materials towards a low fibrotic progression, all implants elicit adverse tissue responses. Pre-clinical biomaterial assessment relies on animals testing, which can be complemented by in vitro tests to address the Russell and Burch's 3R aspect of reducing animal burden. However, a poor correlation between in vitro and in vivo biomaterial assessments confirms a need for suitable in vitro biomaterial tests. The aim of the study was to identify a test setting, which is predictive and might be time- and cost-efficient. We demonstrated how sensitive in vitro biomaterial assessment based on human primary macrophages depends on test conditions. Moreover, possible clinical scenarios such as lipopolysaccharide contamination, contact to autologous blood plasma, and presence of IL-4 in an immune niche influence the outcome of a biomaterial ranking. Nevertheless, by using glass, titanium, polytetrafluorethylene, silicone, and polyethylene representing a specific material-induced fibrotic response and by comparison to literature data, we were able to identify a test condition that provides a high correlation to state-of-the-art in vivo studies. Most important, biomaterial ranking obtained under native plasma test conditions showed a high predictive accuracy compared to in vivo assessments, strengthening a biomimetic three-dimensional in vitro test platform.

摘要

尽管人们一直在努力推进材料向低纤维化进展,但所有植入物都会引起不良的组织反应。临床前生物材料评估依赖于动物试验,可以通过体外试验来补充,以解决减少动物负担的 Russell 和 Burch 的 3R 方面。然而,体外和体内生物材料评估之间的相关性较差证实了需要合适的体外生物材料测试。本研究的目的是确定一种具有预测性且可能具有时间和成本效益的测试环境。我们展示了基于人原代巨噬细胞的敏感体外生物材料评估如何取决于测试条件。此外,一些可能的临床情况,如脂多糖污染、与自体血浆接触以及免疫微环境中 IL-4 的存在,会影响生物材料分级的结果。然而,通过使用玻璃、钛、聚四氟乙烯、硅酮和聚乙烯来代表特定的材料诱导的纤维化反应,并与文献数据进行比较,我们能够确定一种提供与最先进的体内研究高度相关的测试条件。最重要的是,与体内评估相比,在天然血浆测试条件下获得的生物材料分级具有较高的预测准确性,从而增强了仿生三维体外测试平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0629/5431855/6bb7031d2e81/41598_2017_1584_Fig1_HTML.jpg

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