Photodynamic priming modulates cellular ATP levels to overcome P-glycoprotein-mediated drug efflux in chemoresistant triple-negative breast cancer

被引:2
作者
Rahman, Idrisa [1 ,2 ]
Liang, Barry [1 ,2 ]
Sajid, Andaleeb [2 ]
Ambudkar, Suresh V. [2 ]
Huang, Huang-Chiao [1 ]
机构
[1] Univ Maryland, Fischell Dept Bioengn, A. James Clark Hall,8278 Paint Branch Dr, College Pk, MD 20742 USA
[2] NCI, NIH, Ctr Canc Res, Cell Biol Lab, 37 Convent Dr,Room 2120, Bethesda, MD 20892 USA
基金
美国国家科学基金会; 美国国家卫生研究院;
关键词
ABC transporter; cellular ATP levels; drug delivery; multidrug resistance; P-glycoprotein; photodynamic priming; REVERSES MULTIDRUG-RESISTANCE; ABC TRANSPORTERS; THERAPY; MECHANISMS; CELLS; NANOMEDICINE; METABOLISM; INHIBITION; GLYCOLYSIS; SECRETION;
D O I
10.1111/php.13970
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
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.
引用
收藏
页码:188 / 205
页数:18
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