作为抗癌给药系统的自侵蚀多米诺树枝状聚合物:综述

Karolina Kędra, E. Olędzka, M. Sobczak
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引用次数: 0

摘要

全球癌症统计数据显示,2022 年全球新增癌症病例约 2 000 万例,死亡人数超过 1 000 万(根据国际癌症研究机构的数据)。化疗是癌症治疗的主要策略之一,使用的是创新的给药系统(DDS)。用于触发抗癌药物的自惰性多米诺树枝状聚合物(SIDendr)似乎是一种很有前景的 DDSs。本综述通过详尽分析基于 SIDendr 的抗癌药物递送系统(SIDendr-ac-DDSs)在提高新药和旧药的药理作用方面的发现和应用,对该领域的最新进展进行了调查。此外,本文还讨论了几种基于 SIDendr 的 DDSs 的设计、化学结构和靶向技术以及特性。文章还探讨了这类靶向 DDS 在一系列刺激下释放抗癌药物的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Self-Immolative Domino Dendrimers as Anticancer-Drug Delivery Systems: A Review
Worldwide cancer statistics have indicated about 20 million new cancer cases and over 10 million deaths in 2022 (according to data from the International Agency for Research on Cancer). One of the leading cancer treatment strategies is chemotherapy, using innovative drug delivery systems (DDSs). Self-immolative domino dendrimers (SIDendr) for triggered anti-cancer drugs appear to be a promising type of DDSs. The present review provides an up-to-date survey on the contemporary advancements in the field of SIDendr-based anti-cancer drug delivery systems (SIDendr-ac-DDSs) through an exhaustive analysis of the discovery and application of these materials in improving the pharmacological effectiveness of both novel and old drugs. In addition, this article discusses the designing, chemical structure, and targeting techniques, as well as the properties, of several SIDendr-based DDSs. Approaches for this type of targeted DDSs for anti-cancer drug release under a range of stimuli are also explored.
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