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Endocytosis of nanomedicines

机译:纳米药物的内吞作用

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摘要

Novel nanomaterials are being developed to improve diagnosis and therapy of diseases through effective delivery of drugs, biopharmaceutical molecules and imaging agents to target cells in disease sites. Such diagnostic and therapeutic nanomaterials, also termed "nanomedicines", often require site-specific cellular entry to deliver their payload to sub-cellular locations hidden beneath cell membranes. Nanomedicines can employ multiple pathways for cellular entry, which are currently insufficiently understood. This review, . first, classifies various mechanisms of endocytosis available to nanomedicines including phagocytosis and pinocytosis through clathrin-dependent and clathrin-independent pathways. . Second, it describes the current experimental tools to study endocytosis of nanomedicines. . Third, it provides specific examples from recent literature and our own work on endocytosis of nanomedicines. . Finally, these examples are used to ascertain 1) the role of particle size, shape, material composition, surface chemistry and/or charge for utilization of a selected pathway(s); 2) the effect of cell type on the processing of nanomedicines; and 3) the effect of nanomaterial-cell interactions on the processes of endocytosis, the fate of the nanomedicines and the resulting cellular responses. This review will be useful to a diverse audience of students and scientists who are interested in understanding endocytosis of nanomedicines.
机译:通过有效地将药物,生物药物分子和显像剂有效递送至疾病部位的靶细胞,正在开发新型纳米材料,以改善疾病的诊断和治疗。这样的诊断和治疗纳米材料,也称为“纳米医学”,通常需要位点特异性的细胞进入,以将其有效载荷递送至隐藏在细胞膜下的亚细胞位置。纳米药物可采用多种途径进入细胞,目前尚不清楚。这篇评论,。首先,对纳米药物可利用的内吞作用的各种机制进行分类,包括通过网格蛋白依赖性和网格蛋白依赖性途径的吞噬作用和胞饮作用。 。其次,它描述了目前用于研究纳米药物内吞作用的实验工具。 。第三,它提供了来自最近文献以及我们自己在纳米药物内吞作用方面的具体实例。 。最后,这些实例用于确定1)粒径,形状,材料组成,表面化学和/或电荷对选定途径的利用的作用; 2)细胞类型对纳米药物加工的影响; 3)纳米材料-细胞相互作用对内吞作用,纳米药物的命运以及所产生的细胞反应的影响。这篇综述将对有兴趣了解纳米药物内吞作用的学生和科学家的不同受众有用。

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