摘要
这项审查的重点是纳米结构系统(NSs)的细胞内化机制及其靶向药物递送的内体逃避。内吞作用是不同分子和外来微生物内化的细胞过程。目前正在研究通过纳米结构系统进行药物输送。最常研究的细胞摄取途径是吞噬作用,大分子胞饮作用,线粒体介导的胞吞作用,窖蛋白介导的胞吞作用,以及网格蛋白和窖蛋白依赖性内吞作用。 NSs用于细胞进入的机制取决于细胞类型及其物理化学性质等因素。目前,随着药物开发在NSs上的发展,有可能增加针对少数疾病的治疗指数。 NS可以在常规药物不能的位置递送活性药物,从而最小化不必要的副作用。在NSs的细胞进入中,存在内容物内质体逃逸到细胞质中的可能性,这种机制可以被利用,使得NS可以在细胞内迁移并将药物递送到感兴趣的靶标。设计内溶纤维素逃逸策略不是一件容易的事情,但对靶组织的最佳药理作用至关重要。药物的细胞摄取是治疗中非常重要的因素。虽然NSs已经成为用于治疗疾病的有效药物递送载体,但是了解NSs内吞作用的机制至关重要。
关键词: 内吞作用,药物递送,逃逸途径内溶酶体,纳米结构体系,吞噬作用
Current Medicinal Chemistry
Title:Highlights in Endocytosis of Nanostructured Systems
Volume: 24 Issue: 18
关键词: 内吞作用,药物递送,逃逸途径内溶酶体,纳米结构体系,吞噬作用
摘要: The focus of this review is the cellular internalisation mechanism of nanostructured systems (NSs) and their endosomal escape for targeted drug delivery. Endocytosis is a cellular process of internalisation of different molecules and foreign microorganisms. It is currently being studied for drug delivery through nanostructured systems. The most commonly studied routes of cellular uptake are phagocytosis, macro-pinocytosis, clathrinmediated endocytosis, caveolin-mediated endocytosis, and clathrin and caveolinindependent endocytosis. The mechanism utilised by NSs for cellular entry depends on factors such as cell type and its physicochemical properties. Currently, with the development of drugs-loaded onto NSs, it has been possible to increase the therapeutic index against few diseases. The NSs can deliver the active drug at locations that conventional drugs cannot, thereby minimising unwanted side effects. On cellular entry of NSs, there is a possibility of an endosomal escape of the contents into the cytoplasm, a mechanism that can be exploited so that NSs can migrate intra-cellularly and deliver the drug to the target of interest. Designing endolysosomal escape strategy is not an easy task, but it is critical for the optimal pharmacological action on the target tissue. The cellular uptake of drugs is a very important factor in therapy. Although NSs have emerged as effective drug delivery vehicle for treatment of diseases, it is crucial to understand the mechanism of NSs endocytosis.
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Highlights in Endocytosis of Nanostructured Systems, Current Medicinal Chemistry 2017; 24 (18) . https://dx.doi.org/10.2174/0929867324666170214111205
DOI https://dx.doi.org/10.2174/0929867324666170214111205 |
Print ISSN 0929-8673 |
Publisher Name Bentham Science Publisher |
Online ISSN 1875-533X |
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