双相纳米剪刀可破坏血管-乳腺癌干细胞串扰,用于乳腺癌治疗。

IF 10.5 1区 医学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Yao Qi, Shuai Lv, Changheng Xie, Shi Du, Jing Yao
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引用次数: 0

摘要

肿瘤血管和乳腺癌干细胞(BCSCs)之间的恶性串扰严重影响了乳腺癌的临床治疗效果。本研究针对肿瘤血管和乳腺癌干细胞之间的相互作用,提出了一种两阶段治疗策略,以克服这一难题。在这里,我们设计了一种FLG/ZnPc纳米剪刀,它结合了温和的光动力疗法(PDT)以产生活性氧(ROS),以及血管正常化疗法(VNT)以打破肿瘤血管和BCSCs之间的串扰。在第一阶段,我们的方法通过恢复肿瘤血管功能和促进ROS诱导的碱性细胞分化为恶性程度较低的细胞,从而打破支持碱性细胞的血管龛,提高治疗敏感性。第二阶段采用高强度光热疗法(PTT)消融肿瘤块。这种综合的 "温和光热疗法-PTT "方法旨在减少肿瘤生长和转移,为有效治疗乳腺癌提供了一种综合策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dual-phase nanoscissors disrupt vasculature-breast cancer stem cell crosstalk for breast cancer treatment.

Clinical treatment effects of breast cancer are heavily frustrated by the malignant crosstalk between tumor vasculature and breast cancer stem cells (BCSCs). This study introduces a two-phase therapeutic strategy targeting the interplay between tumor vasculature and BCSCs to overcome this challenge. Here, we designed an FLG/ZnPc nanoscissor, which combines mild photodynamic therapy (PDT) to generate reactive oxygen species (ROS) with vascular normalization therapy (VNT) to break the crosstalk between tumor vessels and BCSCs. In the first phase, our approach breaks the vascular niche that supports BCSCs by restoring tumor vascular function and promoting ROS-induced BCSCs differentiation into less malignant forms, enhancing treatment sensitivity. The second phase employs high-impact photothermal therapy (PTT) to ablate tumor masses. This integrated "mild PDT-PTT" approach aims to reduce tumor growth and metastasis, offering a comprehensive strategy for effective breast cancer management.

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来源期刊
Journal of Controlled Release
Journal of Controlled Release 医学-化学综合
CiteScore
18.50
自引率
5.60%
发文量
700
审稿时长
39 days
期刊介绍: The Journal of Controlled Release (JCR) proudly serves as the Official Journal of the Controlled Release Society and the Japan Society of Drug Delivery System. Dedicated to the broad field of delivery science and technology, JCR publishes high-quality research articles covering drug delivery systems and all facets of formulations. This includes the physicochemical and biological properties of drugs, design and characterization of dosage forms, release mechanisms, in vivo testing, and formulation research and development across pharmaceutical, diagnostic, agricultural, environmental, cosmetic, and food industries. Priority is given to manuscripts that contribute to the fundamental understanding of principles or demonstrate the advantages of novel technologies in terms of safety and efficacy over current clinical standards. JCR strives to be a leading platform for advancements in delivery science and technology.
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