Suppr超能文献

探索线粒体靶向药物递送在增强乳腺癌治疗中的潜力。

Exploring the Potential of Mitochondria-Targeted Drug Delivery for Enhanced Breast Cancer Therapy.

作者信息

Ghazizadeh Yalda, Sharifi-Ardani Seyedeh Elnaz, Tajik Negin, Mirzaei Roya, Pourahmad Jalal

机构信息

Student Research Committee, School of Pharmacy, Shahid Beheshti University of Medical Sciences, Tehran, Iran.

Pharmaceutical Sciences Research Center, Shahid Beheshti University of Medical Sciences, Tehran, Iran.

出版信息

Int J Breast Cancer. 2025 Mar 3;2025:3013009. doi: 10.1155/ijbc/3013009. eCollection 2025.

Abstract

Breast cancer stands as the utmost prevalent malignancy in women, impacting the epithelial tissue of the breast and often displaying resistance to effective treatment due to its diverse molecular and histological features. Current treatment modalities may exhibit decreasing efficacy over time and can lead to disease progression. The mitochondria, a crucial organelle responsible for cellular metabolism and energy supply, stand highly sensitive to both heat and reactive oxygen species, presenting an assuring target for photodynamic and photothermal therapies (PTTs) in cancer cure. The employment of nanodrug carriers for combination deliveries holds promise in addressing challenges related to drug degradation and off-target toxicity. By circumventing the reticuloendothelial system, nanocarriers bolster the drug's bioavailability at the intended site and ensure controlled codelivery of multiple drugs, thereby maintaining the normal pharmacokinetic features and the regular pharmacodynamic characteristics of different therapeutic mechanisms. The precision and efficacy of this innovative technology have revolutionized drug delivery, substantially enhancing treatment effectiveness. In the pursuit of targeting mitochondrial modifications in cancer cells, various combination therapies such as photodynamic therapy (PDT), PTT, and chemodynamic therapy (CDT) have been explored. These therapies have improved the efficiency of mitochondria-targeted cancer treatment due to their advantageous properties of minimal toxicity, noninvasiveness, reduced drug resistance, and a safer profile. Our review article provides an exhaustive overview of alterations in the mitochondrial environment in BC, their impact on BC development, potential mitochondrial targets for BC treatment, nanotherapeutic approaches for targeting mitochondria, and the limitations of these approaches.

摘要

乳腺癌是女性中最常见的恶性肿瘤,影响乳腺上皮组织,并且由于其多样的分子和组织学特征,常常对有效治疗表现出抗性。当前的治疗方式可能会随着时间推移而疗效降低,并可能导致疾病进展。线粒体是负责细胞代谢和能量供应的关键细胞器,对热和活性氧高度敏感,这使其成为癌症治疗中光动力疗法和光热疗法(PTT)的可靠靶点。使用纳米药物载体进行联合递送有望解决与药物降解和脱靶毒性相关的挑战。通过避开网状内皮系统,纳米载体可提高药物在预期部位的生物利用度,并确保多种药物的可控共递送,从而维持不同治疗机制的正常药代动力学特征和常规药效学特征。这项创新技术的精准性和有效性彻底改变了药物递送方式,大幅提高了治疗效果。在寻求针对癌细胞线粒体修饰的过程中,人们探索了多种联合疗法,如光动力疗法(PDT)、PTT和化学动力疗法(CDT)。这些疗法因其具有毒性极小、非侵入性、耐药性降低和安全性更高等优势,提高了线粒体靶向癌症治疗的效率。我们的综述文章详尽概述了乳腺癌中线粒体环境的改变、它们对乳腺癌发展的影响、乳腺癌治疗的潜在线粒体靶点、靶向线粒体的纳米治疗方法以及这些方法的局限性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fe6f/11991819/6816df561f74/IJBC2025-3013009.001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验