透明质酸接枝PLDLA,作为PLLA生物可吸收冠状动脉支架模型的涂层

Adriana DM Del Monaco, E. A. Duek, Aron Andrade, Sonia MM Malmonge
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引用次数: 1

摘要

冠状动脉疾病已成为世界上主要的死亡原因,血管成形术支架植入术是治疗冠状动脉疾病的重要策略。研究表明,支架的生物降解性、抗增殖剂和生物活性分子的固定化是未来这些装置的特点。其中,透明质酸有助于减少动脉层和植入装置之间细胞的聚集和增殖。为此,我们开发了聚l -乳酸(PLLA)生物可吸收冠状动脉支架,并在聚l -乳酸(PLDLA)中植入透明质酸(HA)。采用热重分析(TGA)、差示扫描量热分析(DSC)、傅里叶变换红外光谱(FTIR)、润湿性以及水膨胀接触角研究对模型进行了表征。PLDLA adh修饰的HA接枝具有更亲水性的表面特性,是该器件的理想涂层材料。总之,通过本项目所采用的工艺,证实了透明质酸在PLDLA基质中的接枝。采用浸涂技术对plpla - haadh模型进行涂层。
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Grafting of Hyaluronic Acid to PLDLA, used as coating of the models of PLLA bioresorbable coronary stents
Coronary artery disease has been leading cause of death in the world, angioplasty stent implantation is an important strategy in these cases. Studies indicate that biodegradability, immobilization of antiproliferatives and bioactive molecules in stents, are the characteristics of future generations of these devices. Amongst them, hyaluronic acid contributes to decrease of the aggregation and proliferation of cells between artery layers and the implanted device. For this purpose, poly (L-lactic acid) (PLLA) bioresorbable coronary stents with hyaluronic acid (HA) grafting in poly (LD- lactic acid) (PLDLA) were developed. The models were characterized as their thermal properties with Thermogravimetric Analysis (TGA) and Differential Scanning Calorimetric Analysis (DSC), Fourier Transform Infrared Spectrometry (FTIR), Wettability, with study of Contact Angle using Water swelling. PLDLA ADH-modified HA grafting presented more hydrophilic surface characteristics, ideal for coating material of this devices. In conclusion, grafting of hyaluronic acid in the PLDLA matrices confirmed, by technics used at this project. The coating of models of PLLA with PLDLA-HAADH made by dip coating technic.
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