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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Cytotoxicity of PVPAC-treated bovine pericardium: A potential replacement for glutaraldehyde in biological heart valves
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Cytotoxicity of PVPAC-treated bovine pericardium: A potential replacement for glutaraldehyde in biological heart valves

机译:PVPAC治疗的牛心包的细胞毒性:生物心脏瓣膜中戊二醛的潜在替代品

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Acellular biological tissues, including bovine pericardium (BP), have been proposed as biomaterial for tissue engineering. BP is usually modified chemically to improve mechanical and biological properties using glutaraldehyde, the standard reagent for preservation of fresh bioprosthetic materials. Glutaraldehyde-fixed BP (Glut-BP), the most widely used material in heart valve manufacture, has been associated with calcification in vivo. In an attempt to reduce this issue and maintain its biocompatibility, this study assesses the physical properties and cytotoxicity of lyophilized BP treated with poly (vinylpyrrolidone-co-acrolein) (PVPAC-BP), a novel copolymer, as a substitute for glutaraldehyde. For that, PVPAC-BP surface ultrastructure, elastic function, water uptake and tissue calcification were evaluated. For the analysis of biocompatibility, fibroblasts (3T3-L1) and endothelial cells (HUVEC) were cultured on PVPAC-BP, Untreated-BP and Glut-BP. Nitric oxide (NO) release assay, fluorescence and SEM images of endothelial cells adhered on scaffolds were also performed. As results, the data show some advantages of PVPAC-BP over the Glut-BP. The PVPAC-BP maintains partially the original ultrastructure and elastic properties, improves scaffold hydration, and presents less calcium phosphate deposits. The cells demonstrated strong attachment, high proliferation rate, and formation of a monolayer on PVPAC-BP. Attached cells were also able to release NO demonstrating regular metabolism. In conclusion, PVPAC may be considered as a promising alternative to BP treatment improving the efficiency of cell attachment and proliferation and also avoid immunogenicity.
机译:已经提出了包括牛心包(BP)的无细胞生物组织作为组织工程的生物材料。 BP通常在化学上改性,以改善使用戊二醛的机械和生物学性能,所述标准试剂用于保存新鲜生物假体材料。戊二醛固定的BP(Glut-BP)是心脏瓣膜制造中最广泛使用的材料,已经与体内钙化有关。为了减少该问题并保持其生物相容性,该研究评估了用聚(乙烯基吡咯烷酮 - 共聚体)(PVPAC-BP),新型共聚物处理的冻干BP的物理性质和细胞毒性,作为戊二醛的替代品。为此,评估PVPAC-BP表面超微结构,弹性功能,水吸收和组织钙化。为了分析生物相容性,将成纤维细胞(3T3-L1)和内皮细胞(HUVEC)培养在PVPAC-BP,未处理 - BP和GLUT-BP上培养。还进行了一氧化氮(NO)释放测定,粘附在支架上的内皮细胞的荧光和SEM图像。结果,数据显示出PVPAC-BP在凝乳上的一些优点。 PVPAC-BP保持部分原始超微结构和弹性性能,提高支架水合,并呈现较少的磷酸钙沉积物。细胞显示出强烈的附着,高增殖率和在PVPAC-BP上形成单层。附着的细胞也能够释放常规代谢。总之,PVPAC可被认为是BP治疗的有希望改善细胞附着和增殖的效率的有前途的替代方案,并且还避免了免疫原性。

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