TRPM2-mediated Ca2+ signaling as a potential therapeutic target in cancer treatment: an updated review of its role in survival and proliferation of cancer cells

被引:0
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作者
Eunus S. Ali
Brototi Chakrabarty
Sarker Ramproshad
Banani Mondal
Neloy Kundu
Chandan Sarkar
Javad Sharifi-Rad
Daniela Calina
William C. Cho
机构
[1] Flinders University,College of Medicine and Public Health
[2] Gaco Pharmaceuticals,Present Address: Department of Biochemistry and Molecular Genetics, and Simpson Querrey Institute for Epigenetics
[3] Northwestern University Feinberg School of Medicine,Pharmacy Discipline
[4] Khulna University,Department of Pharmacy
[5] Ranada Prasad Shaha University,Department of Pharmacy
[6] Bangabandhu Sheikh Mujibur Rahman Science and Technology University,Facultad de Medicina
[7] Universidad del Azuay,Department of Clinical Pharmacy
[8] University of Medicine and Pharmacy of Craiova,Department of Clinical Oncology
[9] Queen Elizabeth Hospital,undefined
来源
Cell Communication and Signaling | / 21卷
关键词
TRPM2 ion channel; Ca; signaling; Oxidative stress; Cancer; Therapeutic target;
D O I
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学科分类号
摘要
The transient receptor potential melastatin subfamily member 2 (TRPM2), a thermo and reactive oxygen species (ROS) sensitive Ca2+-permeable cation channel has a vital role in surviving the cell as well as defending the adaptability of various cell groups during and after oxidative stress. It shows higher expression in several cancers involving breast, pancreatic, prostate, melanoma, leukemia, and neuroblastoma, indicating it raises the survivability of cancerous cells. In various cancers including gastric cancers, and neuroblastoma, TRPM2 is known to conserve viability, and several underlying mechanisms of action have been proposed. Transcription factors are thought to activate TRPM2 channels, which is essential for cell proliferation and survival. In normal physiological conditions with an optimal expression of TRPM2, mitochondrial ROS is produced in optimal amounts while regulation of antioxidant expression is carried on. Depletion of TRPM2 overexpression or activity has been shown to improve ischemia–reperfusion injury in organ levels, reduce tumor growth and/or viability of various malignant cancers like breast, gastric, pancreatic, prostate, head and neck cancers, melanoma, neuroblastoma, T-cell and acute myelogenous leukemia. This updated and comprehensive review also analyzes the mechanisms by which TRPM2-mediated Ca2+ signaling can regulate the growth and survival of different types of cancer cells. Based on the discussion of the available data, it can be concluded that TRPM2 may be a unique therapeutic target in the treatment of several types of cancer.
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