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首页> 外文期刊>ACS nano >Stimuli-Responsive Nano-Architecture Drug-Delivery Systems to Solid Tumor Micromilieu: Past, Present, and Future Perspectives
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Stimuli-Responsive Nano-Architecture Drug-Delivery Systems to Solid Tumor Micromilieu: Past, Present, and Future Perspectives

机译:刺激响应的纳米建筑药物 - 递送系统到实体瘤微米:过去,现在和未来的观点

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摘要

The microenvironment characteristics of solid tumors, renowned as barriers that harshly impeded many drug-delivery approaches, were precisely studied, investigated, categorized, divided, and subdivided into a complex diverse of barriers. These categories were further studied with a particular perspective, which makes all barriers found in solid-tumor micromilieu turn into different types of stimuli, and were considered triggers that can increase and hasten drug-release targeting efficacy. This review gathers data concerning the nature of solid-tumor micromilieu. Past research focused on the treatment of such tumors, the recent efforts employed for engineering smart nanoarchitectures with the utilization of the specified stimuli categories, the possibility of combining more than one stimuli for much-greater targeting enhancement, examples of the approved nanoarchitectures that already translated clinically as well as the obstacles faced by the use of these nanostructures, and, finally, an overview of the possible future implementations of smart-chemical engineering for the design of more-efficient drug delivery and theranostic systems and for making nanosystems with a much-higher level of specificity and penetrability features.
机译:固体肿瘤的微环境特征,作为严厉阻碍许多药物递送方法的障碍,被精确地研究,调查,分类,分裂,分为复杂的障碍。通过特定的观点进一步研究了这些类别,这使得固体肿瘤微米的所有障碍变成不同类型的刺激,并且被认为是可以增加和加速药物释放靶向功效的触发器。这篇审查会收集关于固体肿瘤微尺的性质的数据。过去的研究专注于这种肿瘤的治疗,最近用于工程智能纳米建筑的努力利用指定的刺激类别,可以组合多种刺激的可能性,用于更大的靶向增强,批准的纳米建筑的实例已经翻译了临床和使用这些纳米结构面临的障碍物,最后概述了智能化学工程的可能导演,用于设计更有效的药物递送和治疗系统,以及制作纳米系统更高水平的特异性和渗透性功能。

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