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Tweaking Dendrimers and Dendritic Nanoparticles for Controlled Nano-bio Interactions: Potential Nanocarriers for Improved Cancer Targeting

机译:调整树枝状大分子和树枝状纳米粒子的可控纳米生物相互作用:改善癌症靶向的潜在纳米载体。

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摘要

Nanoparticles have shown great promise in the treatment of cancer, with a demonstrated potential in targeted drug delivery. Among a myriad of nanocarriers that have been recently developed, dendrimers have attracted a great deal of scientific interests due to their unique chemical and structural properties that allow for precise engineering of their characteristics. Despite this, the clinical translation of dendrimers has been hindered due to their drawbacks, such as scale-up issues, rapid systemic elimination, inefficient tumor accumulation, and limited drug loading. In order to overcome these limitations, a series of reengineered dendrimers have been recently introduced using various approaches, including: i) modifications of structure and surfaces; ii) integration with linear polymers; and iii) hybridization with other types of nanocarriers. Chemical modifications and surface engineering have tailored dendrimers to improve their pharmacokinetics and tissue permeation. Copolymerization of dendritic polymers with linear polymers has resulted in various amphiphilic copolymers with self-assembly capabilities and improved drug loading efficiencies. Hybridization with other nanocarriers integrates advantageous characteristics of both systems, which includes prolonged plasma circulation times and enhanced tumor targeting. This review provides a comprehensive summary of the newly emerging drug delivery systems that involve reengineering of dendrimers in an effort to precisely control their nano-bio interactions, mitigating their inherent weaknesses.
机译:纳米颗粒在癌症治疗中显示出巨大的希望,在靶向药物输送方面已显示出潜力。在最近开发的无数纳米载体中,树枝状大分子由于其独特的化学和结构特性可以对其特性进行精确的工程设计而引起了广泛的科学兴趣。尽管如此,由于树枝状大分子的缺点,如扩大规模,快速全身清除,无效的肿瘤蓄积和有限的载药量,其临床翻译受到阻碍。为了克服这些限制,最近已使用各种方法引入了一系列再造的树枝状聚合物,包括:i)改变结构和表面; ii)与线性聚合物结合; iii)与其他类型的纳米载体杂交。化学修饰和表面工程改造了树枝状聚合物,以改善其药代动力学和组织渗透性。树状聚合物与线性聚合物的共聚反应产生了具有自组装能力和改善的药物装载效率的​​各种两亲共聚物。与其他纳米载体的杂交融合了这两个系统的优势,包括延长血浆循环时间和增强肿瘤靶向性。这篇综述提供了新出现的药物递送系统的全面摘要,该系统涉及树状聚合物的重新设计,以精确控制其纳米生物相互作用,从而减轻其固有的弱点。

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  • 期刊名称 other
  • 作者单位
  • 年(卷),期 -1(23),7-8
  • 年度 -1
  • 页码 642–650
  • 总页数 18
  • 原文格式 PDF
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