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聚合物亲水性对生物相容性的影响:对药物洗脱支架聚合物设计的启示

Impact of polymer hydrophilicity on biocompatibility: implication for DES polymer design.

作者信息

Hezi-Yamit Ayala, Sullivan Carol, Wong Jennifer, David Laura, Chen Mingfei, Cheng Peiwen, Shumaker David, Wilcox Josiah N, Udipi Kishore

机构信息

Medtronic Cardiovascular, Santa Rosa, California 95403, USA.

出版信息

J Biomed Mater Res A. 2009 Jul;90(1):133-41. doi: 10.1002/jbm.a.32057.

Abstract

Polymer coatings are essential for local delivery of drug from the stent platform. In designing a DES, it is critical to balance the hydrophilic and hydrophobic components of the polymer system to obtain optimal biocompatibility, while maintaining controlled drug elution. This study investigates the impact of polymer composition of the BioLinx polymer blend on in vitro biocompatibility, as measured by monocytic adhesion. Comparable evaluation was performed with polymers similar to those utilized in various DES that are currently being marketed. Relative hydrophilicities of polymer surfaces were determined through contact angle measurements and surface analyses. Polymer biocompatibility was evaluated in a novel in vitro assay system in which activated monocyte cells were exposed to polymer coated on 96-well plates. Enhanced monocyte adhesion was observed with polymers of a more hydrophobic nature, whereas those which were more hydrophilic did not induce activated monocyte adhesion. Our data supports the hypothesis that polymer composition is a feature that dictates in vitro biocompatibility as measured by monocyte driven inflammation. Monocyte adhesion has been shown to induce local inflammation as well as promote vascular cell proliferation factors contributing to in stent restenosis (Rogers et al., Arterioscler Thromb Vasc Biol 1996;16:1312-1318). Observed results suggest hydrophobic but not hydrophilic polymer surfaces support adhesion of activated monocytes to the polymer scaffold. The proprietary DES polymer blend BioLinx has a hydrophilic surface architecture and does not induce an inflammatory response as measured by these in vitro assays.

摘要

聚合物涂层对于从支架平台进行局部药物递送至关重要。在设计药物洗脱支架(DES)时,平衡聚合物体系的亲水和疏水成分以获得最佳生物相容性,同时保持药物的可控释放,这一点至关重要。本研究调查了BioLinx聚合物共混物的聚合物组成对体外生物相容性的影响,通过单核细胞粘附来衡量。对与目前市场上各种DES中使用的聚合物类似的聚合物进行了可比评估。通过接触角测量和表面分析确定了聚合物表面的相对亲水性。在一种新型体外检测系统中评估了聚合物的生物相容性,在该系统中,将活化的单核细胞暴露于涂覆在96孔板上的聚合物。观察到疏水性更强的聚合物会增强单核细胞粘附,而亲水性更强的聚合物则不会诱导活化的单核细胞粘附。我们的数据支持这样的假设,即聚合物组成是决定体外生物相容性的一个特征,通过单核细胞驱动的炎症来衡量。单核细胞粘附已被证明会引发局部炎症,并促进血管细胞增殖因子,导致支架内再狭窄(罗杰斯等人,《动脉硬化血栓与血管生物学》1996年;16:1312 - 1318)。观察结果表明,疏水性而非亲水性聚合物表面支持活化的单核细胞粘附到聚合物支架上。专有的DES聚合物共混物BioLinx具有亲水性表面结构,并且通过这些体外检测未显示出炎症反应。

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