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dimer with sur1; many papers on neurotherapeutic sulfonylureas in neurology section. {{tp|p=29211714|t=2017. Structures of the calcium-activated, non-selective cation channel TRPM4.|pdf=|usr=}}{{29211714}} {{tp|p=29463718|t=2018. Structure of full-length human TRPM4.|pdf=|usr=}}{{29463718}} {{tp|p=25909699|t=2015. Suppression of transient receptor potential melastatin 4 expression promotes conversion of endothelial cells into fibroblasts via transforming growth factor/activin receptor-like kinase 5 pathway.|pdf=|usr=}}{{25909699}} {{tp|p=29463718|t=2018. Structure of full-length human TRPM4.|pdf=|usr=}}{{29463718}} {{tp|p=33809210|t=2021. TRPM4 Participates in Aldosterone-Salt-Induced Electrical Atrial Remodeling in Mice.|pdf=|usr=}}{{33809210}} {{tp|p=29914130|t=2018. Role of the TRPM4 Channel in Cardiovascular Physiology and Pathophysiology.|pdf=|usr=}}{{29914130}} {{tp|p=27956381|t=2016. Hydrogen peroxide suppresses TRPM4 trafficking to the apical membrane in mouse cortical collecting duct principal cells.|pdf=|usr=}}{{27956381}} {{tp|p=26043922|t=2015. The Ca(2+)-activated cation channel TRPM4 is a negative regulator of angiotensin II-induced cardiac hypertrophy.|pdf=|usr=}}{{26043922}} {{tp|p=24605085|t=2014. Glycosylation of TRPM4 and TRPM5 channels: molecular determinants and functional aspects.|pdf=|usr=}}{{24605085}} {{tp|p=35163382|t=2022. A Central Role for TRPM4 in Ca(2+)-Signal Amplification and Vasoconstriction.|pdf=|usr=}}{{35163382}} {{tp|p=30160201|t=2019. Sulfonylurea Receptor 1, Transient Receptor Potential Cation Channel Subfamily M Member 4, and KIR6.2:Role in Hemorrhagic Progression of Contusion.|pdf=|usr=}}{{30160201}} {{tp|p=29390943|t=2018. Transient Receptor Potential Melastatin 4 Induces Astrocyte Swelling But Not Death after Diffuse Traumatic Brain Injury.|pdf=|usr=}}{{29390943}} {{tp|p=23255597|t=2013. The sulfonylurea receptor 1 (Sur1)-transient receptor potential melastatin 4 (Trpm4) channel.|pdf=|usr=}}{{23255597}} {{tp|p=31664513|t=2019. TRPM4-specific blocking antibody attenuates reperfusion injury in a rat model of stroke.|pdf=|usr=}}{{31664513}} {{tp|p=31441200|t=2019. TRPM4 is highly expressed in human colorectal tumor buds and contributes to proliferation, cell cycle, and invasion of colorectal cancer cells.|pdf=|usr=}}{{31441200}} {{tp|p=24834370|t=2013. The Sur1-Trpm4 Channel in Spinal Cord Injury.|pdf=|usr=}}{{24834370}} {{tp|p=37279286|t=2023. Cation flux through SUR1-TRPM4 and NCX1 in astrocyte endfeet induces water influx through AQP4 and brain swelling after ischemic stroke.|pdf=|usr=}}{{37279286}} {{tp|p=29569041|t=2019. Non-Invasive Multimodality Imaging Directly Shows TRPM4 Inhibition Ameliorates Stroke Reperfusion Injury.|pdf=|usr=}}{{29569041}} {{tp|p=20679729|t=2010. Increased catecholamine secretion contributes to hypertension in TRPM4-deficient mice.|pdf=|usr=}}{{20679729}} {{tp|p=23081848|t=2013. Transient receptor potential melastatin 4 channel controls calcium signals and dental follicle stem cell differentiation.|pdf=|usr=}}{{23081848}}
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