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首页> 外文期刊>Journal of porphyrins and phthalocyanines >Strategies for optimizing the delivery to tumors of macrocyclic photosensitizers used in photodynamic therapy (PDT)
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Strategies for optimizing the delivery to tumors of macrocyclic photosensitizers used in photodynamic therapy (PDT)

机译:优化光动力学治疗中使用的宏环光敏剂的肿瘤递送的策略(PDT)

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摘要

This review briefly summaries the principles and mechanisms of action of photodynamic therapy (PDT) as concerns its application in the oncological field, highlighting its drawbacks and some of the strategies that have been or are being explored to overcome them. The major aim is to increase the efficiency and selectivity of the photosensitizer (PS) uptake in the cancer cells for optimizing the PDT effects on tumors while sparing normal cells. Some attempts to achieve this are based on the conjugation of the PS to biomolecules (small ligands, peptides) functioning as carriers with the ability to efficiently penetrate cells and/or specifically recognize and bind proteins/receptors overexpressed on the surface of cancer cells. Alternatively, the PS can be entrapped in nanocarriers derived from various types of materials that can target the tumor by exploiting the enhanced permeability and retention (EPR) effects. The use of nanocarriers is particularly attractive because it allows the simultaneous delivery of more than one drug with the possibility of combining PDT with other therapeutic modalities.
机译:本综述简要概述了光动力治疗(PDT)的原则和机制,如肿瘤局在肿瘤领域的应用,突出其缺点和一些已经探索或正在探索克服它们的策略。主要目的是提高癌细胞中光敏剂(PS)摄取的效率和选择性,以优化对肿瘤的PDT对肿瘤作用的影响,同时保留正常细胞。实现这一点的一些尝试基于PS对生物分子(小配体,肽)的缀合,其作为载体的能力有效地渗透细胞和/或特异性地识别和结合在癌细胞表面上过表达的蛋白质/受体。或者,可以通过利用增强的渗透率和保留(EPR)效应来捕获衍生自各种类型的材料的纳米载体以衍生的纳米载体捕获。纳米载体的使用是特别有吸引力的,因为它允许同时递送多种药物,其可能将PDT与其他治疗方式组合。

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