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Endogenous and Exogenous Stimuli-Responsive Drug Delivery Systems for Programmed Site-Specific Release

机译:用于计划特定部位释放的内源性和外源性刺激响应药物递送系统

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摘要

In this study, we reviewed state-of-the-art endogenous-based and exogenous-based stimuli-responsive drug delivery systems (DDS) for programmed site-specific release to overcome the drawbacks of conventional therapeutic modalities. This particular work focuses on the smart chemistry and mechanism of action aspects of several types of stimuli-responsive polymeric carriers that play a crucial role in extracellular and intracellular sections of diseased tissues or cells. With ever increasing scientific knowledge and awareness, research is underway around the globe to design new types of stimuli (external/internal) responsive polymeric carriers for biotechnological applications at large and biomedical and/or pharmaceutical applications, in particular. Both external/internal and even dual/multi-responsive behavior of polymeric carriers is considered an essential element of engineering so-called ‘smart’ DDS, which controls the effective and efficient dose loading, sustained release, individual variability, and targeted permeability in a sophisticated manner. So far, an array of DDS has been proposed, developed, and implemented. For instance, redox, pH, temperature, photo/light, magnetic, ultrasound, and electrical responsive DDS and/or all in all dual/dual/multi-responsive DDS (combination or two or more from any of the above). Despite the massive advancement in DDS arena, there are still many challenging concerns that remain to be addressed to cover the research gap. In this context, herein, an effort has been made to highlight those concerning issues to cover up the literature gap. Thus, the emphasis was given to the drug release mechanism and applications of endogenous and exogenous based stimuli-responsive DDS in the clinical settings.
机译:在这项研究中,我们综述了基于内源性和外源性的刺激响应药物递送系统(DDS)的程序化位点特异性释放,以克服传统治疗方式的弊端。这项特殊的工作集中在几种类型的刺激应答性聚合物载体的智能化学和作用机理方面,这些载体在患病组织或细胞的细胞外和细胞内部分中起着至关重要的作用。随着科学知识和意识的不断提高,全球正在开展研究以设计新型的刺激(外部/内部)响应型聚合物载体,以用于大规模的生物技术应用,尤其是生物医学和/或药物应用。高分子载体的外部/内部乃至双重/多重响应行为都被认为是所谓的“智能” DDS工程的基本要素,该DDS可控制有效和有效的剂量加载,持续释放,个体变异性和靶向渗透性。精致的方式。到目前为止,已经提出,开发和实施了一系列DDS。例如,氧化还原,pH,温度,光/光,磁,超声和电响应DDS和/或所有双/双/多响应DDS中的所有DDS(上述任何一种或两种以上的组合)。尽管DDS领域取得了巨大进步,但仍有许多挑战性问题需要解决,以弥补研究空白​​。在这种情况下,本文已努力强调那些与问题有关的内容,以弥补文献空白。因此,重点是在临床环境中基于内源性和外源性刺激反应性DDS的药物释放机制和应用。

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