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基于环糊精的智能系统治疗乳腺癌。

Intelligent Systems based on Cyclodextrins for the Treatment of Breast Cancer.

机构信息

Center for Biological and Health Sciences, State University of Paraíba, R. Baraúnas, 351 - Universitário, Campina Grande - PB, 58429-500, Paraíba, Brazil.

Department of Chemistry, National University of the South, INQUISUR (UNS-CONICET), Av. Alem 1253, Bahía Blanca, Argentina.

出版信息

Curr Pharm Des. 2024;30(30):2345-2363. doi: 10.2174/0113816128291108240613094515.

Abstract

The incidence of breast cancer has been increasing over the last four decades, although the mortality rate has decreased. Endocrine therapy and chemotherapy are the most used options for cancer treatment but several obstacles are still attributed to these therapies. Smart materials, such as nanocarriers for targeting, delivery and release of active ingredients, sensitive to intrinsic-stimuli (pH-responsive, redox-responsive, enzyme- responsive, and thermo-responsive) and extrinsic-stimuli (ultrasound-responsive, magnetic-responsive, light-responsive) have been studied as a novel strategy in breast cancer therapy. Cyclodextrins (CDs) are used in the design of these stimuli-responsive drug carrier and delivery systems, either through inclusion complexes with hydrophobic molecules or covalent bonds with large structures to generate new materials. The present work aims to gather and integrate recent data from and preclinical studies of CD-based stimuli- responsive systems to contribute to the research in treating breast cancer. All drug carriers showed high release rates in the presence of a stimulus. The stimuli-responsive nanoplatforms presented biocompatibility and satisfactory results of IC, inhibition of cell viability and antitumor activity against several breast cancer cell lines. Additionally, these systems led to a significant reduction in drug dosages, which encouraged possible clinical studies for better alternatives to traditional antitumor therapies.

摘要

在过去的四十年中,乳腺癌的发病率一直在上升,尽管死亡率有所下降。内分泌治疗和化疗是癌症治疗最常用的选择,但这些疗法仍存在一些障碍。智能材料,如用于靶向、递药和释放有效成分的纳米载体,对内在刺激(pH 响应、氧化还原响应、酶响应和温度响应)和外在刺激(超声响应、磁响应、光响应)敏感,已被研究作为乳腺癌治疗的一种新策略。环糊精(CDs)用于设计这些刺激响应药物载体和输送系统,通过与疏水分子形成包合物或与大结构形成共价键来生成新材料。本工作旨在收集和整合基于 CD 的刺激响应系统的 和 临床前研究的最新数据,为治疗乳腺癌的研究做出贡献。所有药物载体在刺激存在的情况下均表现出高 释放率。这些刺激响应纳米平台表现出良好的生物相容性和令人满意的 IC 结果,抑制了几种乳腺癌细胞系的细胞活力和抗肿瘤活性。此外,这些系统使药物剂量显著减少,这鼓励了可能的临床研究,以寻求传统抗肿瘤疗法的更好替代方案。

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