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基于纳米结构的乳腺癌治疗新策略:创新、挑战与未来方向

Emerging nanostructure-based strategies for breast cancer therapy: innovations, challenges, and future directions.

作者信息

Hadri Saqib Hussain, Riaz Atiya, Abid Jaisha, Shaheen Rameeza, Nadeem Samreen, Ghumman Zainab, Naeem Hammad

机构信息

Department of Biochemistry and Biotechnology, University of Gujrat, Hafiz Hayat Campus, Gujrat, Pakistan.

出版信息

Med Oncol. 2025 Apr 30;42(6):188. doi: 10.1007/s12032-025-02743-z.

Abstract

Breast cancer, one of the leading causes of cancer-associated deaths, is responsible for the majority of cases of cancer in women globally. Traditional therapies used for the treatment of cancer have some challenges such as low cellular absorption, multidrug resistance, and limited bioavailability. Current innovations in nanotechnology, such as nanoliposomes, silver nanoparticles, gold nanoparticles, and carbon nanotubes, provide a promising approach to deal with these limitations. Nanostructures encapsulating anticancer agents such as doxorubicin, curcumin, paclitaxel, erlotinib, and docetaxel enhance the therapeutic efficacy of these agents and promote targeted drug delivery. Curcumin-loaded amorphous calcium carbonate nanoparticles encapsulating lipids and L-arginine exhibit higher cytotoxicity than free curcumin. Gold nanoparticles can also enhance treatment efficacy by specifically destroying tumor cells when used in photothermal therapy. This review focus on the abilities of nanoparticles to induce oxidative stress, prevent proliferation, and trigger apoptosis in cancer cells. Further research should focus on optimizing these nanoparticles to enhance the targeted drug delivery and address multi-drug resistance. Our review underscores recent developments in nanostructures, their therapeutic potential, and the challenges that need to be addressed for more effective breast cancer treatment.

摘要

乳腺癌是癌症相关死亡的主要原因之一,在全球女性癌症病例中占大多数。用于治疗癌症的传统疗法存在一些挑战,如细胞吸收低、多药耐药性和生物利用度有限。纳米技术的当前创新,如纳米脂质体、银纳米颗粒、金纳米颗粒和碳纳米管,为应对这些局限性提供了一种有前景的方法。包裹阿霉素、姜黄素、紫杉醇、厄洛替尼和多西他赛等抗癌药物的纳米结构增强了这些药物的治疗效果,并促进了靶向药物递送。包裹脂质和L-精氨酸的载姜黄素无定形碳酸钙纳米颗粒比游离姜黄素表现出更高的细胞毒性。金纳米颗粒在用于光热疗法时,也可以通过特异性破坏肿瘤细胞来提高治疗效果。本综述聚焦于纳米颗粒在癌细胞中诱导氧化应激、阻止增殖和触发凋亡的能力。进一步的研究应集中在优化这些纳米颗粒以增强靶向药物递送并解决多药耐药性问题。我们的综述强调了纳米结构的最新进展、它们的治疗潜力以及为更有效地治疗乳腺癌需要解决的挑战。

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