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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Development of a polymeric matrix metalloproteinase inhibitor as a bioactive stent coating material for prevention of restenosis.
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Development of a polymeric matrix metalloproteinase inhibitor as a bioactive stent coating material for prevention of restenosis.

机译:高分子基质金属蛋白酶抑制剂作为生物活性支架涂层材料的研发,用于预防再狭窄。

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Drug-eluting stents have been developed to prevent restenosis derived from excessive growth of smooth muscle cells (SMCs) after stenting. In almost every case, however, less- or non-biocompatible polymers were selected for the platform material for impregnating drugs on the stent strut. Consideration was given principally to the physical properties of the polymers, such as their adhesion to the strut and the drug dispersibility in the polymeric matrix. In this study, we designed a matrix metalloproteinase inhibitor (MMPI)-derivatized hydrophobic polymer (PMMPI) for use as a bioactive material for stent coating. This was a copolymer of n-butylmethacrylate and a vinyl monomer of synthetic MMPI (N-Hydroxy-5-carboxyethylcarbonyloxy-2(S)-methy-4(S)-(4-phenoxybenzoyl)amino-pent anamide: ONO-M11-335) with a molecular weight of about 32,000 and MMPI content of 45 per molecule. The precursor of the MMPI monomer produced significant activity in temporally inhibiting SMC proliferation without any cellular damage.After coating with the PMMPI, adhesion and proliferation of SMCs were manifestly prevented even when a small amount of MMPI was released from the polymer. The MMPI-immobilized surface may thus be effective for inhibiting both adhesion and proliferation of SMCs, which is the first step toward in vivo experimentation. It is very much expected that coating stent struts with PMMPI containing an appropriate combination of impregnated drugs will provide a powerful tool for prevention of restenosis with little cytotoxicity.
机译:已经开发出药物洗脱支架,以防止支架植入后由于平滑肌细胞(SMC)过度生长而引起的再狭窄。然而,在几乎每种情况下,都选择了生物相容性较低或不相容的聚合物作为平台材料,以将药物浸渍在支架撑杆上。主要考虑聚合物的物理性质,例如它们对支柱的粘附性和药物在聚合物基质中的分散性。在这项研究中,我们设计了一种基质金属蛋白酶抑制剂(MMPI)衍生的疏水性聚合物(PMMPI),用作支架涂层的生物活性材料。这是甲基丙烯酸正丁酯和合成MMPI(N-羟基-5-羧乙基羰基氧基-2(S)-甲基-4(S)-(4-苯氧基苯甲酰基)氨基-戊酰胺:ONO-M11- 335),分子量约为32,000,MMPI含量为每分子45。 MMPI单体的前体在暂时抑制SMC增殖而不产生任何细胞损伤方面产生了显着活性。用PMMPI包被后,即使从聚合物中释放出少量MMPI,也明显阻止了SMC的粘附和增殖。因此,固定有MMPI的表面可有效抑制SMC的粘附和增殖,这是体内实验的第一步。非常期望的是,用含有适当组合浸渍药物的PMMPI覆盖支架支杆,将为预防再狭窄提供强大的工具,且几乎没有细胞毒性。

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