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用于心血管支架应用的钴铬L605合金表面等离子体纳米涂层的生物相容性研究

A Biocompatibility Study of Plasma Nanocoatings onto Cobalt Chromium L605 Alloy for Cardiovascular Stent Applications.

作者信息

Phan Thithuha, Jones John E, Chen Meng, Bowles Doug K, Fay William P, Yu Qingsong

机构信息

Department of Mechanical Engineering, University of Missouri, Columbia, MO 65211, USA.

Nanova, Inc., 1601 S Providence Rd., Columbia, MO 65211, USA.

出版信息

Materials (Basel). 2022 Aug 29;15(17):5968. doi: 10.3390/ma15175968.

Abstract

The objective of this study was to evaluate the biocompatibility of trimethylsilane (TMS) plasma nanocoatings modified with NH/O (2:1 molar ratio) plasma post-treatment onto cobalt chromium (CoCr) L605 alloy coupons and stents for cardiovascular stent applications. Biocompatibility of plasma nanocoatings was evaluated by coating adhesion, corrosion behavior, ion releasing, cytotoxicity, and cell proliferation. Surface chemistry and wettability were studied to understand effects of surface properties on biocompatibility. Results show that NH/O post-treated TMS plasma nanocoatings are hydrophilic with water contact angle of 48.5° and have a typical surface composition of O (39.39 at.%), Si (31.92 at.%), C (24.12 at.%), and N (2.77 at.%). The plasma nanocoatings were conformal to substrate surface topography and had excellent adhesion to the alloy substrates, as assessed by tape test (ASTM D3359), and showed no cracking or peeling off L605 stent surfaces after dilation. The plasma nanocoatings also improve the corrosion resistance of CoCr L605 alloy by increasing corrosion potential and decreasing corrosion rates with no pitting corrosion and no mineral adsorption layer. Ion releasing test revealed that Co, Cr, and Ni ion concentrations were reduced by 64-79%, 67-69%, and 57-72%, respectively, in the plasma-nanocoated L605 samples as compared to uncoated L605 control samples. The plasma nanocoatings showed no sign of cytotoxicity from the test results according to ISO 10993-05 and 10993-12. Seven-day cell culture demonstrated that, in comparison with the uncoated L605 control surfaces, the plasma nanocoating surfaces showed 62 ± 7.3% decrease in porcine coronary artery smooth muscle cells (PCASMCs) density and had comparable density of porcine coronary artery endothelial cells (PCAECs). These results suggest that TMS plasma nanocoatings with NH/O plasma post-treatment possess the desired biocompatibility for stent applications and support the hypothesis that nanocoated stents could be very effective for in-stent restenosis prevention.

摘要

本研究的目的是评估经NH/O(摩尔比2:1)等离子体后处理改性的三甲基硅烷(TMS)等离子体纳米涂层在钴铬(CoCr)L605合金试样和心血管支架上的生物相容性,用于心血管支架应用。通过涂层附着力、腐蚀行为、离子释放、细胞毒性和细胞增殖来评估等离子体纳米涂层的生物相容性。研究了表面化学和润湿性,以了解表面性质对生物相容性的影响。结果表明,经NH/O后处理的TMS等离子体纳米涂层具有亲水性,水接触角为48.5°,具有典型的表面组成:O(39.39原子%)、Si(31.92原子%)、C(24.12原子%)和N(2.77原子%)。通过胶带试验(ASTM D3359)评估,等离子体纳米涂层与基底表面形貌一致,对合金基底具有优异的附着力,并且在扩张后L605支架表面未出现开裂或剥落。等离子体纳米涂层还通过提高腐蚀电位和降低腐蚀速率来提高CoCr L605合金的耐腐蚀性,无点蚀且无矿物吸附层。离子释放试验表明,与未涂层的L605对照样品相比,等离子体纳米涂层的L605样品中Co、Cr和Ni离子浓度分别降低了64-79%、67-69%和57-72%。根据ISO 10993-05和10993-12的测试结果,等离子体纳米涂层没有细胞毒性迹象。为期七天的细胞培养表明,与未涂层的L605对照表面相比,等离子体纳米涂层表面的猪冠状动脉平滑肌细胞(PCASMCs)密度降低了62±7.3%,而猪冠状动脉内皮细胞(PCAECs)的密度相当。这些结果表明,经NH/O等离子体后处理的TMS等离子体纳米涂层具有用于支架应用所需的生物相容性,并支持纳米涂层支架对预防支架内再狭窄可能非常有效的假设。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2bb8/9457435/44cf6f560670/materials-15-05968-g001.jpg

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