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The Future of Cardiovascular Stents: Bioresorbable and Integrated Biosensor Technology

机译:心血管支架的未来:可生物吸收和集成的生物传感器技术

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摘要

Cardiovascular disease is the greatest cause of death worldwide. Atherosclerosis is the underlying pathology responsible for two thirds of these deaths. It is the age‐dependent process of “furring of the arteries.” In many scenarios the disease is caused by poor diet, high blood pressure, and genetic risk factors, and is exacerbated by obesity, diabetes, and sedentary lifestyle. Current pharmacological anti‐atherosclerotic modalities still fail to control the disease and improvements in clinical interventions are urgently required. Blocked atherosclerotic arteries are routinely treated in hospitals with an expandable metal stent. However, stented vessels are often silently re‐blocked by developing “in‐stent restenosis,” a wound response, in which the vessel's lumen renarrows by excess proliferation of vascular smooth muscle cells, termed hyperplasia. Herein, the current stent technology and the future of biosensing devices to overcome in‐stent restenosis are reviewed. Second, with advances in nanofabrication, new sensing methods and how researchers are investigating ways to integrate biosensors within stents are highlighted. The future of implantable medical devices in the context of the emerging “Internet of Things” and how this will significantly influence future biosensor technology for future generations are also discussed.
机译:心血管疾病是全球范围内最大的死亡原因。动脉粥样硬化是导致这些死亡三分之二的根本病理。这是与年龄相关的“动脉分叉”过程。在许多情况下,该疾病是由不良饮食,高血压和遗传风险因素引起的,并且由于肥胖,糖尿病和久坐的生活方式而加剧。当前的药理抗动脉粥样硬化方式仍无法控制该疾病,因此迫切需要改善临床干预措施。在医院中,动脉粥样硬化动脉通常使用可扩张金属支架进行常规治疗。然而,带支架的血管通常会因发展为“支架内再狭窄”而无声地重新阻塞,这是一种伤口反应,其中血管的平滑肌细胞过度增殖(称为增生)使血管腔狭窄。本文回顾了目前的支架技术以及克服支架内再狭窄的生物传感设备的未来。第二,随着纳米制造技术的进步,重点介绍了新的传感方法以及研究人员如何研究将生物传感器集成到支架中的方法。还讨论了在新兴的“物联网”背景下的可植入医疗设备的未来,以及这将如何显着影响未来的下一代生物传感器技术。

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