Laboratoire de Recherche en Nanosciences, LRN-EA4682, Université de Reims Champagne-Ardenne, 51100 Reims, France.
National Research Nuclear University MEPhI (Moscow Engineering Physics Institute), 115409 Moscow, Russia.
Biomater Sci. 2022 Sep 13;10(18):5092-5115. doi: 10.1039/d2bm00829g.
The targeted delivery of cancer drugs to tumor-specific molecular targets represents a major challenge in modern personalized cancer medicine. Engineering of micron and submicron polymeric multilayer capsules allows the obtaining of multifunctional theranostic systems serving as controllable stimulus-responsive tools with a high clinical potential to be used in cancer therapy and detection. The functionalities of such theranostic systems are determined by the design and structural properties of the capsules. This review (1) describes the current issues in designing cancer cell-targeting polymeric multilayer capsules, (2) analyzes the effects of the interactions of the capsules with the cellular and molecular constituents of biological fluids, and (3) presents the key structural parameters determining the effectiveness of capsule targeting. The influence of the morphological and physicochemical parameters and the origin of the structural components and surface ligands on the functional activity of polymeric multilayer capsules at the molecular, cellular, and whole-body levels are summarized. The basic structural and functional principles determining the future trends of theranostic capsule development are established and discussed.
靶向递送至肿瘤特异性分子靶标是现代个性化癌症医学的主要挑战。微米和亚微米级聚合物多层胶囊的工程设计允许获得多功能治疗诊断系统,这些系统作为具有高临床潜力的可控刺激响应工具可用于癌症治疗和检测。此类治疗诊断系统的功能由胶囊的设计和结构特性决定。本文综述(1)描述了设计癌细胞靶向聚合物多层胶囊的当前问题,(2)分析了胶囊与生物流体的细胞和分子成分相互作用的影响,(3)介绍了决定胶囊靶向有效性的关键结构参数。总结了形态和物理化学参数以及结构成分和表面配体的来源对聚合物多层胶囊在分子、细胞和整体水平上的功能活性的影响。确定了治疗诊断胶囊发展未来趋势的基本结构和功能原则,并进行了讨论。