The nonexcitable smooth muscle: remodeling the smooth muscle ion transport toolkit in disease. [PDF]
Johnson MT, Trebak M.
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Transient receptor potential channels as key regulators of cell death in atherosclerosis. [PDF]
Zhang Y, Wang W, Li X, Li X, Zheng L.
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Mechanical signal-chromatin interactions: molecular networks from nuclear membrane force transmission to epigenetic regulation. [PDF]
Yang S +7 more
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Open-channel block of human TRPV6 by polyamine spermine. [PDF]
Neuberger A +7 more
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Mechanistic insights into cisplatin-induced ototoxicity: the central role of transient receptor potential channels. [PDF]
Yu M, Li J, Zeng X.
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Virtual Screening-Guided Discovery of a Selective TRPV1 Pentapeptide Inhibitor with Topical Anti-Allergic Efficacy. [PDF]
Liu L +8 more
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T Cell Receptor Co-Stimulation Through Magnetogenetic Tools: A Platform for Wireless Rewiring of Cellular Signaling. [PDF]
Helalat SH +6 more
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Nanoparticles-Mediated Modulation of TRP Channels: Advances and Therapeutic Potential. [PDF]
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Transient receptor potential cation channel subfamily V (TRPV) and its importance in asthma.
European Journal of Pharmacology, 2022Transient receptor potential (TRP) ion channels play critical roles in physiological and pathological conditions. Increasing evidence has unveiled the contribution of TRP vanilloid (TRPV) family in the development of asthma. The TRPV family is a group (TRPV1-TRPV6) of polymodal channels capable of sensing thermal, acidic, mechanical stress, and osmotic
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