在化疗耐药的三阴性乳腺癌中,光动力引物可调节细胞 ATP 水平,从而克服 P 糖蛋白介导的药物外流。

IF 2.6 4区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Photochemistry and Photobiology Pub Date : 2025-01-01 Epub Date: 2024-06-02 DOI:10.1111/php.13970
Idrisa Rahman, Barry Liang, Andaleeb Sajid, Suresh V Ambudkar, Huang-Chiao Huang
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引用次数: 0

摘要

P-糖蛋白(P-gp,ABCB1)是一种经过深入研究的ATP结合盒(ABC)药物外排转运体,与癌症多药耐药性(MDR)的形成有关。尽管进行了大量研究,但在临床环境中仍缺乏经批准的安全抑制 P-gp 的疗法,因此有必要在传统抑制剂或抗体之外采用创新策略来逆转 MDR。光动力疗法是一种全球认可的癌症治疗方法,它使用靶向、无害的红光激活无毒的光敏剂,将其细胞毒性光化学效应限制在疾病部位,同时保护健康组织。这项研究表明,光动力启动(PDP)是一种亚细胞毒性光动力疗法过程,可通过调节光可及区域的细胞呼吸和 ATP 水平来抑制 P-gp 功能。我们利用化疗耐药(VBL-MDA-MB-231)和化疗敏感(MDA-MB-231)三阴性乳腺癌细胞系研究发现,PDP 可使线粒体膜电位降低 54.4% ± 30.4,线粒体 ATP 生成率降低 94.9% ± 3.46。流式细胞术研究显示,PDP 可有效改善化疗耐药 VBL-MDA-MB-231 细胞中 P-gp 底物(钙黄绿素)的滞留率,最高可达 228.4% ± 156.3,但在化疗敏感的 MDA-MB-231 细胞中则无效。进一步分析表明,PDP 不会改变 VBL-MDA-MB-231 细胞中 P-gp 的细胞表面表达水平。这些发现表明,PDP 可将细胞 ATP 降低到 P-gp 功能所需的水平以下,并改善细胞内底物的滞留。我们建议将 PDP 与化疗药物结合使用,以提高化疗的疗效并克服癌症的 MDR。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Photodynamic priming modulates cellular ATP levels to overcome P-glycoprotein-mediated drug efflux in chemoresistant triple-negative breast cancer.

P-glycoprotein (P-gp, ABCB1) is a well-researched ATP-binding cassette (ABC) drug efflux transporter linked to the development of cancer multidrug resistance (MDR). Despite extensive studies, approved therapies to safely inhibit P-gp in clinical settings are lacking, necessitating innovative strategies beyond conventional inhibitors or antibodies to reverse MDR. Photodynamic therapy is a globally approved cancer treatment that uses targeted, harmless red light to activate non-toxic photosensitizers, confining its cytotoxic photochemical effects to disease sites while sparing healthy tissues. This study demonstrates that photodynamic priming (PDP), a sub-cytotoxic photodynamic therapy process, can inhibit P-gp function by modulating cellular respiration and ATP levels in light accessible regions. Using chemoresistant (VBL-MDA-MB-231) and chemosensitive (MDA-MB-231) triple-negative breast cancer cell lines, we showed that PDP decreases mitochondrial membrane potential by 54.4% ± 30.4 and reduces mitochondrial ATP production rates by 94.9% ± 3.46. Flow cytometry studies showed PDP can effectively improve the retention of P-gp substrates (calcein) by up to 228.4% ± 156.3 in chemoresistant VBL-MDA-MB-231 cells, but not in chemosensitive MDA-MB-231 cells. Further analysis revealed that PDP did not alter the cell surface expression level of P-gp in VBL-MDA-MB-231 cells. These findings indicate that PDP can reduce cellular ATP below the levels that is required for the function of P-gp and improve intracellular substrate retention. We propose that PDP in combination with chemotherapy drugs, might improve the efficacy of chemotherapy and overcome cancer MDR.

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来源期刊
Photochemistry and Photobiology
Photochemistry and Photobiology 生物-生化与分子生物学
CiteScore
6.70
自引率
12.10%
发文量
171
审稿时长
2.7 months
期刊介绍: Photochemistry and Photobiology publishes original research articles and reviews on current topics in photoscience. Topics span from the primary interaction of light with molecules, cells, and tissue to the subsequent biological responses, representing disciplinary and interdisciplinary research in the fields of chemistry, physics, biology, and medicine. Photochemistry and Photobiology is the official journal of the American Society for Photobiology.
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