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氨等离子体处理对聚(L-乳酸)薄膜表面性能和细胞相容性的影响。

Effect of ammonia plasma treatment on the properties and cytocompatibility of a poly(L-lactic acid) film surface.

作者信息

Jiao Yanpeng, Xu Jiqing, Zhou Changren

机构信息

a Department of Materials Science and Engineering, Jinan University, Guangzhou 510632, P. R. China; Engineering Research Center of Artificial Organs and Materials, Ministry of Education, Jinan University, Guangzhou 510632, P. R. China.

出版信息

J Biomater Sci Polym Ed. 2012;23(6):763-77. doi: 10.1163/092050611X560690.

Abstract

Ammonia plasma treatment is an efficient method to modify the surface of polymeric biomaterials to improve their hydrophilicity and biocompatibility. In this study, poly(L-lactic acid) (PLLA) films were treated with ammonia plasma to investigate the effects on the surface properties and cytocompatibility. Surface morphologies of the films were observed with atomic force microscopy (AFM) and the surface roughness was analyzed with the software attached to the AFM. Mass loss density and contact angles associated to plasma treatment power and time were also studied. The stability of the treated films was evaluated by testing the contact angle change. The cytocompatibiliy was evaluated by cell adhesion, proliferation and cell cycle. The results showed that the surface morphology and roughness of the treated PLLA surfaces increased with treatment power. The mass loss density increased with plasma treatment power and time. With increasing treatment power and time, the resulting amino group density on treated PLLA film surface increased first and decreased later, while the contact angle showed an opposite trend. The contact angle of the treated films increased with storage time and returned to its original value after about 2 weeks. The cell experiments indicated that promotion of cell adhesion and proliferation were significantly improved on the treated PLLA surfaces.

摘要

氨等离子体处理是一种用于修饰聚合物生物材料表面以提高其亲水性和生物相容性的有效方法。在本研究中,聚(L-乳酸)(PLLA)薄膜经氨等离子体处理,以研究其对表面性质和细胞相容性的影响。用原子力显微镜(AFM)观察薄膜的表面形貌,并用AFM附带的软件分析表面粗糙度。还研究了与等离子体处理功率和时间相关的质量损失密度和接触角。通过测试接触角变化来评估处理后薄膜的稳定性。通过细胞黏附、增殖和细胞周期评估细胞相容性。结果表明,处理后的PLLA表面的形貌和粗糙度随处理功率增加而增大。质量损失密度随等离子体处理功率和时间增加。随着处理功率和时间增加,处理后的PLLA薄膜表面产生的氨基密度先增加后降低,而接触角呈现相反趋势。处理后薄膜的接触角随储存时间增加,约2周后恢复到初始值。细胞实验表明,处理后的PLLA表面显著促进了细胞黏附和增殖。

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