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用于调节细胞行为的膜模拟聚合物和肽的微图案固定化

Micropatterned immobilization of membrane-mimicking polymer and peptides for regulation of cell behaviors .

作者信息

Ma Wenyong, Liu Luying, Chen Huiqing, Zhao Yuancong, Yang Ping, Huang Nan

机构信息

Key Laboratory of Advanced Technology of Materials, Ministry of Education, School of Material Science and Technology of Southwest Jiaotong University Chengdu 610031 PR China

出版信息

RSC Adv. 2018 Jun 6;8(37):20836-20850. doi: 10.1039/c8ra02607f. eCollection 2018 Jun 5.

Abstract

To regulate the behaviors and functions of endothelial cells (ECs) on the biomaterials on titanium (Ti), a biomimetic micropattern (ridge/groove: 25/25 μm) of polymer of 2-methacryloyloxyethyl phosphorylcholine (polyMPC) and Gly-Arg-Glu-Asp-Val-Tyr (GREDVY) was fabricated. PMMPC (monomer contain MPC and methacrylic acid (MA)) containing carboxyl groups was chosen, and PMMPC was cross-linked with hexamethylene diamine through condensation reaction of amino and carboxyl. Simultaneously, the carboxyl groups of cross-linked PMMPC (PMMPC-HD) can react with amino groups of polydopamine which can adhered on many materials firmly. GREDVY was immobilized on polydopamine but not on PMMPC-HD because amino and carboxyl groups can react with catechol and amino groups of polydopamine. IR and H NMR demonstrated that PMMPC-HD was successfully synthesized. And the QCM-D (quartz crystal microbalance with dissipation) and IR approved that PMMPC-HD and GREDVY can be immobilized on polydopamine (PDA). Platelet adhesion and whole blood adhesion on micropattern modificated with PMMPC and GREDVY (Ti-PDA-M/R(P)) showed better hemocompatibility than other samples. Endothelial cells were regulated in the direction of micropattern showing elongated ECs were closer to a healthy, athero-protective phenotype than ECs cultured without micropattern. NO and PGI release were upregulated. Simultaneously the number of SMCs on Ti-PDA-M/R(P) was the smaller that of other samples, which demonstrated that the Ti-PDA-M/R(P) had property of inhibiting SMCs proliferation to a certain extent.

摘要

为了调控内皮细胞(ECs)在钛(Ti)基生物材料上的行为和功能,制备了一种由2-甲基丙烯酰氧乙基磷酰胆碱(polyMPC)和甘氨酰-精氨酰-谷氨酰-天冬氨酰-缬氨酰-酪氨酸(GREDVY)组成的仿生微图案(脊/槽:25/25μm)。选择含有羧基的聚甲基丙烯酸羟乙酯(PMMPC,单体包含MPC和甲基丙烯酸(MA)),通过氨基与羧基的缩合反应使PMMPC与六亚甲基二胺交联。同时,交联后的聚甲基丙烯酸羟乙酯(PMMPC-HD)的羧基可与能牢固粘附在多种材料上的聚多巴胺的氨基反应。GREDVY固定在聚多巴胺上而不是PMMPC-HD上,因为氨基和羧基可与聚多巴胺的邻苯二酚和氨基反应。红外光谱(IR)和氢核磁共振(H NMR)表明成功合成了PMMPC-HD。石英晶体微天平耗散技术(QCM-D)和红外光谱证实PMMPC-HD和GREDVY可固定在聚多巴胺(PDA)上。用PMMPC和GREDVY修饰的微图案(Ti-PDA-M/R(P))上的血小板粘附和全血粘附显示出比其他样品更好的血液相容性。内皮细胞在微图案方向上受到调控,显示出伸长的内皮细胞比无微图案培养的内皮细胞更接近健康的、抗动脉粥样硬化的表型。一氧化氮(NO)和前列环素(PGI)释放上调。同时,Ti-PDA-M/R(P)上平滑肌细胞(SMCs)的数量比其他样品少,这表明Ti-PDA-M/R(P)在一定程度上具有抑制平滑肌细胞增殖的特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f03b/9080867/7d9a031dda8d/c8ra02607f-f1.jpg

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