首页> 外文期刊>Nanomedicine: Nanotechnology, Biology and Medicine >The use of alkanethiol self-assembled monolayers on 316L stainless steel for coronary artery stent nanomedicine applications:an oxidative and in vitro stability study
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The use of alkanethiol self-assembled monolayers on 316L stainless steel for coronary artery stent nanomedicine applications:an oxidative and in vitro stability study

机译:烷硫醇自组装单分子层在316L不锈钢上用于冠状动脉支架纳米药物的应用:氧化和体外稳定性研究

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The use of self-assembled monolayers (SAMs)on medical devices offers a methodology for the incorporation of nanotechnology into medicine.SAMs are highly ordered nanosized molecular coatings,adding 1 to 10 nm thickness to a surface.This work is part of an overall goal to deliver therapeutic drugs from the surface of metal coronary stents using SAMs.In this study the oxidative and in vitro stability of functional alkylthiol SAMs on 316L stainless steel (SS)has been demonstrated.SAMs of 11-mercaptoundecanoic acid (-COOH SAM)and 11-mercapto-l-undecanol (-OH SAM)were formed on 316L SS.X-ray photoelectron spectroscopy (XPS),Fourier transform infrared spectroscopy (FTIR),and contact angle (CA)measurements collectively confirmed the formation of functional alkylthiol SAMs on 316L SS.Well-formed SAMs (CA:82 deg +- 9 deg)were achieved within 48 hours of immersion in ethanolic solutions,after which no significant improvement in CA was observed.The ratio of the thiolate peak (163.5 eV)to the oxidized sulfur (sulfonates)peak (166.5 eV)gives us an indication of the percentage SAMs that would bind to the metal and serve as a drug reservoir in vivo;which in turn represents the stability and viability of these SAMs,keeping in mind the cardiovascular application under consideration.Oxidative and in vitro stability studies showed that alkanethiol SAMs oxidized completely within 14 days.The SAMs tend to desorb and leave the metal surface after longer time periods (21 days)in phosphate-buffered saline (PBS)immersion,whereas for oxidative exposure the SAMs continue to remain on the metal surface in the form of sulfonates.Although the chemistry of bonding of alkylthiol with the 316L SS is not well understood,the nanosized alkylthiol SAMs demonstrate sufficient stability to justify further study on these systems for potential in vivo drug delivery in the chosen coronary artery stent applications.
机译:自组装单分子膜(SAMs)在医疗设备上的使用提供了一种将纳米技术整合到医学中的方法.SAMs是高度有序的纳米分子涂层,在表面上增加了1至10 nm的厚度,这是整体目标的一部分本研究证明了功能性烷基硫醇SAMs在316L不锈钢(SS)上的氧化稳定性和体外稳定性。11-巯基十一烷酸(-COOH SAM)和在316L SS上形成11-巯基-1-十一烷醇(-OH SAM).X射线光电子能谱(XPS),傅立叶变换红外光谱(FTIR)和接触角(CA)测量共同证实了功能性烷基硫醇SAM的形成在316L SS上。在乙醇溶液中浸泡48小时后,形成了结构良好的SAMs(CA:82度±9度),之后未观察到CA的明显改善。硫醇盐峰(163.5 eV)与氧化zed硫(磺酸盐)峰(166.5 eV)为我们提供了与金属结合并在体内用作药物储库的SAM的百分比的指示;这反过来又代表了这些SAM的稳定性和可行性,同时牢记心血管氧化和体外稳定性研究表明,烷硫醇SAMs在14天之内被完全氧化.SAMs在磷酸盐缓冲盐水(PBS)中浸泡更长的时间(21天)后趋于解吸并离开金属表面,尽管对烷基硫醇与316L SS的键合化学尚不十分了解,但纳米级烷基硫醇SAMs仍具有足够的稳定性,足以证明对这些系统进行进一步研究的潜力。在选定的冠状动脉支架应用中进行体内药物递送。

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