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Responsive Theranostic Systems: Integration of Diagnostic Imaging Agents and Responsive Controlled Release Drug Delivery Carriers

机译:响应性治疗学系统:诊断成像剂和响应性控释药物输送载体的集成

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For decades, researchers and medical professionals have aspired to develop mechanisms for noninvasive treatment and monitoring of pathological conditions within the human body. The emergence of nanotechnology has spawned new opportunities for novel drug delivery vehicles capable of concomitant detection, monitoring, and localized treatment of specific disease sites. In turn, researchers have endeavored to develop an imaging moiety that could be functionalized to seek out specific diseased conditions and could be monitored with conventional clinical imaging modalities. Such nanoscale detection systems have the potential to increase early detection of pathophysiological conditions because they can detect abnormal cells before they even develop into diseased tissue or tumors. Ideally, once the diseased cells are detected, clinicians would like to treat those cells simultaneously. This idea led to the concept of multifunctional carriers that could target, detect, and treat diseased cells. The term “theranostics” has been created to describe this promising area of research that focuses on the combination of diagnostic detection agents with therapeutic drug delivery carriers.Targeted theranostic nanocarriers offer an attractive improvement to disease treatment because of their ability to execute simultaneous functions at targeted diseased sites. Research efforts in the field of theranostics encompass a broad variety of drug delivery vehicles, imaging contrast agents, and targeting modalities for the development of an all-in-one, localized detection and treatment system. Nanotheranostic systems that utilize metallic or magnetic imaging nanoparticles can also be used as thermal therapeutic systems. This Account explores recent advances in the field of nanotheranostics and the various fundamental components of an effective theranostic carrier.
机译:几十年来,研究人员和医学专业人员一直渴望开发出无创治疗和监测人体病理状况的机制。纳米技术的出现为能够同时检测,监测和局部治疗特定疾病部位的新型药物输送工具带来了新的机遇。反过来,研究人员已努力开发一种成像部分,该部分可以进行功能化以查找特定的疾病状况,并可以通过常规的临床成像方式进行监测。这种纳米级检测系统具有增加病理生理状况早期检测的潜力,因为它们可以在异常细胞甚至发展为患病组织或肿瘤之前就对其进行检测。理想情况下,一旦检测到患病细胞,临床医生便希望同时治疗那些细胞。这个想法导致了可以靶向,检测和治疗患病细胞的多功能载体的概念。已经创建了“ theranostics”一词来描述这一有前途的研究领域,该领域侧重于诊断检测剂与治疗性药物传递载体的结合。靶向治疗性纳米载体由于能够在靶点上同时执行功能而对疾病治疗提供了有吸引力的改进患病部位。治疗学领域的研究工作包括各种各样的药物递送工具,成像造影剂和靶向模式,以开发一体化的局部检测和治疗系统。利用金属或磁性成像纳米颗粒的纳米治疗系统也可以用作热治疗系统。本讲解探讨了纳米热力学领域的最新进展以及有效治疗学载体的各种基本成分。

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