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Published on: September 19, 2018
New insights into pharmacological tools to TR(i)P cancer up
M Gautier1, I Dhennin-Duthille, A S Ay
1Laboratory of Cell and Molecular Physiology, SFR CAP-Santé (FED 4231), University of Picardie Jules Verne, UFR Sciences, EA 4667, Amiens, France.
Abstract:
The aim of this review is to address the recent advances regarding the use of pharmacological agents to target transient receptor potential (TRP) channels in cancer and their potential application in therapeutics. Physiologically, TRP channels are responsible for cation entry (Ca(2+) , Na(+) , Mg(2+) ) in many mammalian cells and regulate a large number of cellular functions. However, dysfunction in channel expression and/or activity can be linked to human diseases like cancer. Indeed, there is growing evidence that TRP channel expression is altered in cancer tissues in comparison with normal ones. Moreover, these proteins are involved in many cancerous processes, including cell proliferation, apoptosis, migration and invasion, as well as resistance to chemotherapy. Among the TRP superfamily, TRPC, TRPV, TRPM and TRPA1 have been shown to play a role in many cancer types, including breast, digestive, gliomal, head and neck, lung and prostate cancers. Pharmacological modulators are used to characterize the functional implications of TRP channels in whole-cell membrane currents, resting membrane potential regulation and intracellular Ca(2+) signalling. Moreover, pharmacological modulation of TRP activity in cancer cells is systematically linked to the effect on cancerous processes (proliferation, survival, migration, invasion, sensitivity to chemotherapeutic drugs). Here we describe the effects of such TRP modulators on TRP activity and cancer cell phenotype. Furthermore, the potency and specificity of these agents will be discussed, as well as the development of new strategies for targeting TRP channels in cancer.
Insights
Pharmacological agents targeting transient receptor potential (TRP) channels show promise for cancer therapy. Modulating TRP channel activity impacts cancer cell processes like proliferation and drug resistance, offering new therapeutic strategies.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Transient Receptor Potential (TRP) channels are crucial for cation transport and cellular functions in mammals.
- Altered expression and activity of TRP channels are implicated in various human cancers, including breast, lung, and prostate.
- TRP channels influence key cancer hallmarks such as proliferation, apoptosis, migration, invasion, and chemotherapy resistance.
Purpose of the Study:
- To review recent advances in targeting TRP channels with pharmacological agents for cancer treatment.
- To explore the therapeutic potential of TRP channel modulators in oncology.
Main Methods:
- Analysis of scientific literature on TRP channel expression and function in cancer.
- Review of pharmacological modulators used to study TRP channel activity in cancer cells.
- Evaluation of the impact of TRP modulators on cancer cell phenotype and processes.
Main Results:
- TRP channels (TRPC, TRPV, TRPM, TRPA1) are dysregulated in multiple cancer types.
- Pharmacological modulation of TRP channels affects cancer cell proliferation, survival, migration, invasion, and chemosensitivity.
- Specific TRP modulators demonstrate effects on TRP activity and cancer cell behavior.
Conclusions:
- TRP channels represent promising therapeutic targets in cancer.
- Pharmacological agents targeting TRP channels offer potential for novel cancer therapies.
- Further development of potent and specific TRP modulators is warranted for clinical application.
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