首页> 美国卫生研究院文献>International Journal of Nanomedicine >Aptamer–polymer functionalized silicon nanosubstrates for enhanced recovered circulating tumor cell viability and in vitro chemosensitivity testing
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Aptamer–polymer functionalized silicon nanosubstrates for enhanced recovered circulating tumor cell viability and in vitro chemosensitivity testing

机译:适体聚合物功能化的硅纳米底物可增强循环肿瘤细胞的存活率并进行体外化学敏感性测试

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摘要

Selection of the optimal chemotherapy regimen for an individual cancer patient is challenging. The existing chemosensitivity tests are costly, time-consuming, and not amenable to wide utilization within a clinic. This limitation might be addressed by the recently proposed use of circulating tumor cells (CTCs), which provide an opportunity to noninvasively monitor response to therapy. Over the past few decades, various techniques were developed to capture and recover CTCs, but these techniques were often limited by a capture and recovery performance tradeoff between high viability and high efficiency. In this work, we used anti-epithelial cell adhesion molecule coated aptamer–poly (N-isopropylacrylamide) functionalized silicon nanowire substrates to capture and release epithelial cell adhesion molecule-positive CTCs at 32°C and 4°C, respectively. Then, we applied the nuclease to digest the aptamer to release the captured CTCs (near or at the end of the polymer brush), which cannot be released by heating/cooling process. High viability and purity CTCs could be achieved by decreasing the heating/cooling cycles and enzymatic treatment rounds. Furthermore, the time-saving process is helpful to maintain the morphology and enhance vitality of the recovered CTCs and is beneficial to the subsequent cell culture in vitro. We validated the feasibility of chemosensitivity testing based on the recovered HCC827 cells using an adenosine triphosphate–tumor chemosensitivity assay, and the results suggested that our method can determine which agent and what concentration have the best chemosensitivity for the culturing recovered CTCs. So, the novel method capable of a highly effective capture and recovery of high viability CTCs will pave the way for chemosensitivity testing.
机译:为个体癌症患者选择最佳化疗方案具有挑战性。现有的化学敏感性测试昂贵,费时且不适合在诊所内广泛使用。这种局限性可以通过最近提出的循环肿瘤细胞(CTC)的使用来解决,循环肿瘤细胞(CTC)提供了无创监测治疗反应的机会。在过去的几十年中,开发了各种技术来捕获和恢复CTC,但是这些技术通常受到捕获率和恢复性能之间的折衷的限制,即在高可行性和高效率之间进行权衡。在这项工作中,我们使用抗上皮细胞粘附分子包被的适体-聚(N-异丙基丙烯酰胺)功能化的硅纳米线基质,分别在32°C和4°C下捕获和释放上皮细胞粘附分子阳性CTC。然后,我们应用核酸酶消化适体,以释放捕获的四氯化碳(在聚合物刷附近或末端),而该四氯化碳不能通过加热/冷却过程释放。通过减少加热/冷却周期和酶处理周期,可以实现高活力和纯度的四氯化碳。此外,节省时间的过程有助于维持回收的四氯化碳的形态并增强其活力,并且有利于随后的体外细胞培养。我们使用三磷酸腺苷-肿瘤化学敏感性试验验证了基于回收的HCC827细胞进行化学敏感性测试的可行性,结果表明我们的方法可以确定哪种试剂和浓度对培养回收的CTC具有最佳的化学敏感性。因此,能够高效捕获和回收高活性四氯化碳的新方法将为化学敏感性测试铺平道路。

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