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Targeted polymeric therapeutic nanoparticles: design development and clinical translation

机译:有针对性的治疗聚合物纳米粒子:设计开发和临床翻译

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摘要

Polymeric materials have been used in a range of pharmaceutical and biotechnology products for more than 40 years. These materials have evolved from their earlier use as biodegradable products such as resorbable sutures, orthopaedic implants, macroscale and microscale drug delivery systems such as microparticles and wafers used as controlled drug release depots, to multifunctional nanoparticles (NPs) capable of targeting, and controlled release of therapeutic and diagnostic agents. These newer generations of targeted and controlled release polymeric NPs are now engineered to navigate the complex in vivo environment, and incorporate functionalities for achieving target specificity, control of drug concentration and exposure kinetics at the tissue, cell, and subcellular levels. Indeed this optimization of drug pharmacology as aided by careful design of multifunctional NPs can lead to improved drug safety and efficacy, and may be complimentary to drug enhancements that are traditionally achieved by medicinal chemistry. In this regard, polymeric NPs have the potential to result in a highly differentiated new class of therapeutics, distinct from the original active drugs used in their composition, and distinct from first generation NPs that largely facilitated drug formulation. A greater flexibility in the design of drug molecules themselves may also be facilitated following their incorporation into NPs, as drug properties (solubility, metabolism, plasma binding, biodistribution, target tissue accumulation) will no longer be constrained to the same extent by drug chemical composition, but also become in-part the function of the physicochemical properties of the NP. The combination of optimally designed drugs with optimally engineered polymeric NPs opens up the possibility of improved clinical outcomes that may not be achievable with the administration of drugs in their conventional form. In this critical review, we aim to provide insights into the design and development of targeted polymeric NPs and to highlight the challenges associated with the engineering of this novel class of therapeutics, including considerations of NP design optimization, development and biophysicochemical properties. Additionally, we highlight some recent examples from the literature, which demonstrate current trends and novel concepts in both the design and utility of targeted polymeric NPs (444 references).
机译:聚合物材料已用于一系列药物和生物技术产物,超过40年。这些材料从早期的用途中,作为可变的缝合物,矫形植入物,宏观植入物,宏观药物和微观药物递送系统,如微粒和晶片用作受控药物释放贮库,其能够靶向,并控制释放的多功能纳米颗粒(NPS)。治疗和诊断剂。现在设计了这些较新的靶向和控释聚合物NPS以导航体内环境中的复合物,并掺入用于在组织,细胞和亚细胞水平的靶特异性,控制药物浓度和暴露动力学的功能。实际上,这种优化药物药理学辅助多功能NPS的仔细设计可导致药物安全性和功效提高,并且可以与药物化学传统上实现的药物增强额是互补的。在这方面,聚合物NPS有可能导致高度分化的新型治疗剂,不同于其组合物中使用的原始活性药物,并且不同于主要促进药物制剂的第一代NPS。在将药物分子本身的设计中,也可以在将其掺入NPS中,作为药物性质(溶解度,代谢,血浆结合,生物分布,靶组织积累)的较高,以通过药物化学组成将不再受约束,也是在部分NP的物理化学特性的功能。最佳设计的药物的组合具有最佳工程化的聚合物NPS的可能性改善了在其常规形式中可能无法实现的药物可能无法实现的临床结果。在这一批判性审查中,我们的目标是提供对目标聚合物NPS的设计和开发的见解,并突出与这种新型治疗剂的工程相关的挑战,包括对NP设计优化,开发和生物物质化学性质的考虑。此外,我们突出了文献中的一些最近的例子,这些例子在靶向聚合物NPS的设计和效用中展示了当前趋势和新颖的概念(444参考文献)。

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