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Bioactive albumin functionalized polylactic acid membranes for improved biocompatibility

机译:生物活性白蛋白功能化聚乳酸膜,用于改善生物相容性

摘要

Biocompatibility is a major challenge for successful application of many biomaterials. In this study the ability to coat chemically and enzymatically activated poly(L-lactic acid) (PLA) membranes with heat denatured human serum albumin to improve biocompatibility was investigated. PLA membranes hydrolyzed with NaOH or cutinase and then treated with 1-ethyl-3-(3-dimethylaminopropyl)carbodiimide, hydrochloride (EDAC) as a heterobifunctional cross-linker promoted the coupling single bondCOOH groups on PLA membranes and single bondNH2 groups of heat denatured human serum albumin. This resulted in increased hydrophilicity (lowest water contact angles of 43° and 35°) and highest antioxidant activity (quenching of 79 μM and 115 μM tetramethylazobisquinone (TMAMQ) for NaOH and cutinase pretreated membranes, respectively). FTIR analysis of modified PLA membranes showed new peaks attributed to human serum albumin (amide bond, NH2 and side chain stretching) appearing within 3600–3000 cm−1 and 1700–1500 cm−1 (Fig. 3). MTT studies also showed that osteoblasts-like and MC-3T3-E1 cells viability increased 2.4 times as compared to untreated PLA membranes. The study therefore shows that this strategy of modifying the surfaces of PLA polymers could significantly improve biocompatibility.
机译:生物相容性是成功应用许多生物材料的主要挑战。在这项研究中,研究了用热变性人血清白蛋白包被化学和酶促活化的聚L-乳酸(PLA)膜的能力,以改善生物相容性。用NaOH或角质酶水解的PLA膜,然后用1-乙基-3-(3-二甲基氨基丙基)碳二亚胺处理,盐酸盐(EDAC)作为异双功能交联剂,促进了PLA膜上的单键COOH基团和热变性的单键NH2基团的偶联人血清白蛋白。这导致增加的亲水性(最低的水接触角为43°和35°)和最高的抗氧化剂活性(对NaOH和角质酶预处理的膜分别淬灭79μM和115μM的四甲基偶氮双醌(TMAMQ))。修饰的PLA膜的FTIR分析显示,归因于人血清白蛋白(酰胺键,NH2和侧链拉伸)的新峰出现在3600–3000 cm-1和1700–1500 cm-1之间(图3)。 MTT研究还显示,与未经处理的PLA膜相比,成骨细胞样和MC-3T3-E1细胞的活力提高了2.4倍。因此,研究表明,这种修饰PLA聚合物表面的策略可以显着改善生物相容性。

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