Molecular Effectors of Photodynamic Therapy-Mediated Resistance to Cancer Cells

被引:33
作者
Aniogo, Eric Chekwube [1 ]
George, Blassan P. [1 ]
Abrahamse, Heidi [1 ]
机构
[1] Univ Johannesburg, Laser Res Ctr, Fac Hlth Sci, POB 17011, ZA-2028 Doornfontein, South Africa
基金
新加坡国家研究基金会;
关键词
cancer cells; drug resistance; photodynamic therapy; autophagy; INDUCED AUTOPHAGY; GENE-EXPRESSION; DOWN-REGULATION; PDT RESISTANCE; IN-VITRO; APOPTOSIS; MECHANISMS; DEATH; MITOCHONDRIAL; INHIBITION;
D O I
10.3390/ijms222413182
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
Photodynamic therapy (PDT) is currently enjoying considerable attention as the subject of experimental research to treat resistant cancers. The preferential accumulation of a non-toxic photosensitizer (PS) in different cellular organelles that causes oxidative damage by combining light and molecular oxygen leads to selective cell killing. However, one major setback, common among other treatment approaches, is tumor relapse and the development of resistance causing treatment failure. PDT-mediated resistance could result from increased drug efflux and decreased localization of PS, reduced light exposure, increased DNA damage repair, and altered expression of survival genes. This review highlights the essential insights of PDT reports in which PDT resistance was observed and which identified some of the molecular effectors that facilitate the development of PDT resistance. We also discuss different perceptions of PDT and how its current limitations can be overturned to design improved cancer resistant treatments.
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页数:13
相关论文
共 89 条
[11]   Effect and mechanism of 5-aminolevulinic acid-mediated photodynamic therapy in esophageal cancer [J].
Chen, Xiaohua ;
Zhao, Peng ;
Chen, Fengsheng ;
Li, Libo ;
Luo, Rongcheng .
LASERS IN MEDICAL SCIENCE, 2011, 26 (01) :69-78
[12]   Nanotechnology in Modern Photodynamic Therapy of Cancer: A Review of Cellular Resistance Patterns Affecting the Therapeutic Response [J].
Chizenga, Elvin Peter ;
Abrahamse, Heidi .
PHARMACEUTICS, 2020, 12 (07) :1-21
[13]   NF-kappaB inhibition improves the sensitivity of human glioblastoma cells to 5-aminolevulinic acid-based photodynamic therapy [J].
Coupienne, Isabelle ;
Bontems, Sebastien ;
Dewaele, Michael ;
Rubio, Noemi ;
Habraken, Yvette ;
Fulda, Simone ;
Agostinis, Patrizia ;
Piette, Jacques .
BIOCHEMICAL PHARMACOLOGY, 2011, 81 (05) :606-616
[14]   Autophagy pathways activated in response to PDT contribute to cell resistance against ROS damage [J].
Dewaele, Michael ;
Martinet, Wim ;
Rubio, Noemi ;
Verfaillie, Tom ;
de Witte, Peter A. ;
Piette, Jacques ;
Agostinis, Patrizia .
JOURNAL OF CELLULAR AND MOLECULAR MEDICINE, 2011, 15 (06) :1402-1414
[15]   The role of cytoskeleton and adhesion proteins in the resistance to photodynamic therapy. Possible therapeutic interventions [J].
Di Venosa, Gabriela ;
Perotti, Christian ;
Batlle, Alcira ;
Casas, Adriana .
PHOTOCHEMICAL & PHOTOBIOLOGICAL SCIENCES, 2015, 14 (08) :1451-1464
[16]   Mitophagy: mechanisms, pathophysiological roles, and analysis [J].
Ding, Wen-Xing ;
Yin, Xiao-Ming .
BIOLOGICAL CHEMISTRY, 2012, 393 (07) :547-564
[17]   Inhibition of autophagy sensitizes cancer cells to Photofrin-based photodynamic therapy [J].
Domagala, Antoni ;
Stachura, Joanna ;
Gabrysiak, Magdalena ;
Muchowicz, Angelika ;
Zagozdzon, Radoslaw ;
Golab, Jakub ;
Firczuk, Malgorzata .
BMC CANCER, 2018, 18
[18]   A Mitochondrial Oxidative Stress Amplifier to Overcome Hypoxia Resistance for Enhanced Photodynamic Therapy [J].
Dong, Ping ;
Hu, Jialing ;
Yu, Shuyi ;
Zhou, Yizhuo ;
Shi, Tianhui ;
Zhao, Yun ;
Wang, Xiuyuan ;
Liu, Xiaoqing .
SMALL METHODS, 2021, 5 (09)
[19]  
dos Santos A.F., 2019, J CANC METASTASIS TR, V5, P25, DOI DOI 10.20517/2394-4722.2018.83
[20]   Ready player one? Autophagy shapes resistance to photodynamic therapy in cancers [J].
Duan, Xian ;
Chen, Bo ;
Cui, Yanan ;
Zhou, Lin ;
Wu, Chenkai ;
Yang, Zhulin ;
Wen, Yu ;
Miao, Xiongying ;
Li, Qinglong ;
Xiong, Li ;
He, Jun .
APOPTOSIS, 2018, 23 (11-12) :587-606