首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Long-term stability of self-assembled monolayers on electropolished L605 cobalt chromium alloy for stent applications
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Long-term stability of self-assembled monolayers on electropolished L605 cobalt chromium alloy for stent applications

机译:L605钴铬合金电抛光支架上自组装单分子膜的长期稳定性

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Commercially available drug-eluting stents have the potential to induce inflammatory and hypersensitive adverse reactions due to their polymer coating. The use of self assembled monolayers (SAMs) as an alternate drug delivery platform for stents has recently been demonstrated. In this study, the formation and stability of phosphonic acid SAMs were investigated using the material and surface preparation commonly used to make ultra-thin stent struts-electropolished L605 Cobalt Chromium (CoCr) alloy. Methyl (-CH_3) and carboxylic acid (-COOH) terminated phosphonic acid SAMs were coated on electropolished CoCr alloy using a combination of solution immersion and dip-evaporation cycle deposition methods. SAMs-coated CoCr alloy specimens were thoroughly characterized using contact angle goniome-try, Fourier transform infrared spectroscopy (FTIR), X-ray photoelectron spectroscopy (XPS), and atomic force microscopy (AFM). These characterizations suggested that uniform and well-ordered monolayers were coated on the electropolished CoCr alloy. The long-term physiological stability of monolayers was investigated in tris-buffered saline (TBS) at 37degC for up to 28 days. Contact angles, FTIR, XPS, and AFM suggested that both -CH_3 and -COOH terminated phosphonic acid SAMs desorb from electropolished CoCr alloy surfaces in a biphasic manner. A significant desorption of -CH_3 and -COOH terminated SAMs occurs within 1-3 days followed by a slower desorption for up to 28 days. Thus, there is a need to develop techniques that can improve the long-term stability of SAMs on electropolished CoCr alloy for stent and other biomedical applications.
机译:由于其聚合物涂层,可商购的药物洗脱支架具有诱发炎症和超敏不良反应的潜力。最近已经证明了使用自组装单分子膜(SAMs)作为支架的替代药物输送平台。在这项研究中,使用通常用于制造超薄支架撑杆电抛光的L605钴铬(CoCr)合金的材料和表面处理,研究了膦酸SAMs的形成和稳定性。使用溶液浸入和浸没-蒸发循环沉积方法的组合,将甲基(-CH_3)和羧酸(-COOH)端接的膦酸SAMs涂覆在电抛光的CoCr合金上。使用接触角测角仪,傅里叶变换红外光谱(FTIR),X射线光电子能谱(XPS)和原子力显微镜(AFM)对SAMs涂层的CoCr合金样品进行了全面表征。这些特征表明,在电抛光的CoCr合金上涂覆了均匀且有序的单层。在tris缓冲盐水(TBS)中在37℃下研究长达28天的单层细胞的长期生理稳定性。接触角,FTIR,XPS和AFM表明,-CH_3和-COOH封端的膦酸SAM均以双相方式从电抛光的CoCr合金表面脱附。 -CH_3和-COOH终止的SAM会在1-3天内发生明显的解吸,然后缓慢解吸长达28天。因此,需要开发能够改善用于支架和其他生物医学应用的电抛光CoCr合金上的SAMs的长期稳定性的技术。

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