Pan C J, Shao Z Y, Tang J J, Wang J, Huang N
School of Materials Science and Engineering, SouthWest Jiaotong University, Chengdu 610031, China.
J Biomed Mater Res A. 2007 Sep 1;82(3):740-6. doi: 10.1002/jbm.a.31108.
A major complication of coronary stenting is in-stent restenosis (ISR) due to thrombus formation. We hypothesized that locally released curcumin from coronary stent surface would inhibit ISR due to thrombus formation because of antithrombosis of curcumin. In the present work, curcumin-eluting polylactic acid-co-glycolic acid (PLGA) films were fabricated and their properties in vitro were investigated. The in vitro platelet adhesion and activation, as well as protein adsorption on curcumin-loading PLGA films were investigated to evaluate the blood compatibility of curcumin-eluting films. The structure of curcumin-eluting PLGA film and control was examined by Fourier transform infrared spectroscopy and X-ray photoelectron spectroscopy indicating that the peaks of curcumin did not shift in curcumin-eluting films. The results of contact angle and surface free energy indicated that loading curcumin in PLGA would make PLGA become more hydrophilic, which contributed to the increase of polar fraction of surface free energy. With the increase of curcumin in films, platelets adhering to the curcumin-eluting films decreased significantly. The number of activation platelets decreased after incorporating curcumin in PLGA films. Loading curcumin in PLGA film can markedly reduce the fibrinogen adsorption. All results indicated that incorporating curcumin in PLGA film can improve the blood compatibility of PLGA films. It can be used to fabricate drug-eluting stent to prevent thrombosis formation.
冠状动脉支架置入的一个主要并发症是由于血栓形成导致的支架内再狭窄(ISR)。我们推测,由于姜黄素具有抗血栓作用,从冠状动脉支架表面局部释放的姜黄素会抑制因血栓形成导致的ISR。在本研究中,制备了载姜黄素的聚乳酸-乙醇酸共聚物(PLGA)薄膜,并研究了其体外性能。研究了载姜黄素PLGA薄膜上的体外血小板黏附与活化以及蛋白质吸附情况,以评估载姜黄素薄膜的血液相容性。通过傅里叶变换红外光谱和X射线光电子能谱对载姜黄素PLGA薄膜和对照薄膜的结构进行了检测,结果表明姜黄素的峰在载姜黄素薄膜中未发生位移。接触角和表面自由能的结果表明,在PLGA中负载姜黄素会使PLGA变得更具亲水性,这有助于表面自由能极性部分的增加。随着薄膜中姜黄素含量的增加,黏附在载姜黄素薄膜上的血小板显著减少。在PLGA薄膜中加入姜黄素后,活化血小板的数量减少。在PLGA薄膜中负载姜黄素可显著降低纤维蛋白原的吸附。所有结果表明,在PLGA薄膜中加入姜黄素可改善PLGA薄膜的血液相容性。它可用于制造药物洗脱支架以防止血栓形成。