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From Magnesium
(Created page with "{{tp|p=34045316|t=2021. Molecular Mechanisms of Renal Magnesium Reabsorption.|pdf=|usr=}}{{34045316}} {{tp|p=36633869|t=2023. Magnesium reabsorption in the kidney.|pdf=|usr=}}{{36633869}} {{tp|p=30596515|t=2019. Tubular flow activates magnesium transport in the distal convoluted tubule.|pdf=|usr=}}{{30596515}} {{tp|p=29412701|t=2018. The rise and fall of novel renal magnesium transporters.|pdf=|usr=}}{{29412701}} {{tp|p=29352074|t=2018. Aldosterone, SGK1, and ion channel...")
 
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{{tp|p=34045316|t=2021. Molecular Mechanisms of Renal Magnesium Reabsorption.|pdf=|usr=}}{{34045316}}
{{tp|p=33291725|t=2020. TRPM Channels in Human Diseases.|pdf=|usr=}}{{33291725}}
{{tp|p=36633869|t=2023. Magnesium reabsorption in the kidney.|pdf=|usr=}}{{36633869}}
{{tp|p=37853091|t=2023. TRPM channels in health and disease.|pdf=|usr=}}{{37853091}}
{{tp|p=30596515|t=2019. Tubular flow activates magnesium transport in the distal convoluted tubule.|pdf=|usr=}}{{30596515}}
{{tp|p=34511254|t=2022. A comprehensive review of hypomagnesemia.|pdf=|usr=}}{{34511254}}
{{tp|p=29412701|t=2018. The rise and fall of novel renal magnesium transporters.|pdf=|usr=}}{{29412701}}
{{tp|p=32643506|t=2020. A bibliometric analysis and review of recent researches on TRPM7.|pdf=|usr=}}{{32643506}}
{{tp|p=29352074|t=2018. Aldosterone, SGK1, and ion channels in the kidney.|pdf=|usr=}}{{29352074}}
{{tp|p=29129644|t=2018. Role of kinase-coupled TRP channels in mineral homeostasis.|pdf=|usr=}}{{29129644}}
{{tp|p=21602712|t=2011. Dysregulation of renal transient receptor potential melastatin 6/7 but not paracellin-1 in aldosterone-induced hypertension and kidney damage in a model of hereditary hypomagnesemia.|pdf=|usr=}}{{21602712}}
{{tp|p=25073440|t=2014. Function and regulation of the channel-kinase TRPM7 in health and disease.|pdf=|usr=}}{{25073440}}
{{tp|p=22230350|t=2012. A calcium-permeable non-selective cation channel in the thick ascending limb apical membrane of the mouse kidney.|pdf=|usr=}}{{22230350}}
{{tp|p=14561419|t=2003. Mg2+ homeostasis: the Mg2+nificent TRPM chanzymes.|pdf=|usr=}}{{14561419}}
{{tp|p=20881241|t=2010. trpm7 regulation of in vivo cation homeostasis and kidney function involves stanniocalcin 1 and fgf23.|pdf=|usr=}}{{20881241}}
{{tp|p=22634382|t=2012. TRPM7: a unique channel involved in magnesium homeostasis.|pdf=|usr=}}{{22634382}}
{{tp|p=18385471|t=2008. Relationship between low magnesium status and TRPM6 expression in the kidney and large intestine.|pdf=|usr=}}{{18385471}}
{{tp|p=24756720|t=2014. TRPM7.|pdf=|usr=}}{{24756720}}
{{tp|p=17510191|t=2007. TRPM7 channel is sensitive to osmotic gradients in human kidney cells.|pdf=|usr=}}{{17510191}}
{{tp|p=15895246|t=2005. The mammalian melastatin-related transient receptor potential cation channels: an overview.|pdf=|usr=}}{{15895246}}
{{tp|p=35173827|t=2022. Renal calcium and magnesium handling in Gitelman syndrome.|pdf=|usr=}}{{35173827}}
{{tp|p=15843919|t=2005. Function and pharmacology of TRPM cation channels.|pdf=|usr=}}{{15843919}}
{{tp|p=34767995|t=2022. Clinical and genetic approach to renal hypomagnesemia.|pdf=|usr=}}{{34767995}}
{{tp|p=15574510|t=2005. Epithelial Ca2+ and Mg2+ channels in health and disease.|pdf=|usr=}}{{15574510}}
{{tp|p=33135481|t=2020. NaCl cotransporter activity and Mg(2+) handling by the distal convoluted tubule.|pdf=|usr=}}{{33135481}}
{{tp|p=15150423|t=2004. TRPM7: channeling the future of cellular magnesium homeostasis?|pdf=|usr=}}{{15150423}}
{{tp|p=32603001|t=2021. Mechanisms coupling sodium and magnesium reabsorption in the distal convoluted tubule of the kidney.|pdf=|usr=}}{{32603001}}
{{tp|p=12537986|t=2003. Cell physiology of magnesium.|pdf=|usr=}}{{12537986}}
{{tp|p=29554878|t=2018. Lowered dietary phosphorus affects intestinal and renal gene expression to maintain mineral homeostasis with immunomodulatory implications in weaned piglets.|pdf=|usr=}}{{29554878}}
{{tp|p=21045827|t=2010. TRPM7 is essential for Mg(2+) homeostasis in mammals.|pdf=|usr=}}{{21045827}}
{{tp|p=26290373|t=2015. A TRPM4-dependent current in murine renal primary cilia.|pdf=|usr=}}{{26290373}}
{{tp|p=17536484|t=2007. Molecular components of vertebrate Mg2+-homeostasis regulation.|pdf=|usr=}}{{17536484}}
{{tp|p=21035933|t=2010. Tubular transport: core curriculum 2010.|pdf=|usr=}}{{21035933}}
{{tp|p=17481860|t=2007. TRPM6 and TRPM7--Gatekeepers of human magnesium metabolism.|pdf=|usr=}}{{17481860}}
{{tp|p=29686978|t=2018. Novel Aspects of Renal Magnesium Homeostasis.|pdf=|usr=}}{{29686978}}
{{tp|p=15845589|t=2005. A critical role of TRPM channel-kinase for human magnesium transport.|pdf=|usr=}}{{15845589}}
{{tp|p=21030597|t=2010. Magnesium modulates ROMK channel-mediated potassium secretion.|pdf=|usr=}}{{21030597}}
{{tp|p=15728426|t=2005. The TRP superfamily of cation channels.|pdf=|usr=}}{{15728426}}
{{tp|p=17671646|t=2007. When EGF is offside, magnesium is wasted.|pdf=|usr=}}{{17671646}}
{{tp|p=36868730|t=2023. Physiology of a Forgotten Electrolyte-Magnesium Disorders.|pdf=|usr=}}{{36868730}}
{{tp|p=34836340|t=2021. Effect of Dapagliflozin and Magnesium Supplementation on Renal Magnesium Handling and Magnesium Homeostasis in Metabolic Syndrome.|pdf=|usr=}}{{34836340}}
{{tp|p=34213669|t=2021. 'Magnesium'-the master cation-as a drug-possibilities and evidences.|pdf=|usr=}}{{34213669}}
{{tp|p=21041532|t=2011. Molecular basis of epithelial Ca2+ and Mg2+ transport: insights from the TRP channel family.|pdf=|usr=}}{{21041532}}
{{tp|p=32977544|t=2020. Magnesium, Oxidative Stress, Inflammation, and Cardiovascular Disease.|pdf=|usr=}}{{32977544}}
{{tp|p=30241394|t=2018. Sodium Citrate Increases Expression and Flux of Mg(2+) Transport Carriers Mediated by Activation of MEK/ERK/c-Fos Pathway in Renal Tubular Epithelial Cells.|pdf=|usr=}}{{30241394}}
{{tp|p=31192005|t=2019. Prevention of Cardiovascular Disease: Screening for Magnesium Deficiency.|pdf=|usr=}}{{31192005}}
{{tp|p=26385481|t=2016. Role of renal TRP channels in physiology and pathology.|pdf=|usr=}}{{26385481}}
{{tp|p=29546166|t=2016. Magnesium: Nutrition and Homoeostasis.|pdf=|usr=}}{{29546166}}
{{tp|p=36613622|t=2022. TRPC Channels in the Physiology and Pathophysiology of the Renal Tubular System: What Do We Know?|pdf=|usr=}}{{36613622}}
{{tp|p=26773013|t=2016. Essential Nutrient Interactions: Does Low or Suboptimal Magnesium Status Interact with Vitamin D and/or Calcium Status?|pdf=|usr=}}{{26773013}}
{{tp|p=34179830|t=2021. Renal vascular TRP channels.|pdf=|usr=}}{{34179830}}
{{tp|p=25839058|t=2014. Role of Cellular Magnesium in Human Diseases.|pdf=|usr=}}{{25839058}}
{{ttp|p=30139743|t=2018. Uromodulin regulates renal magnesium homeostasis through the ion channel transient receptor potential melastatin 6 (TRPM6).|pdf=|usr=}}{{30139743}}
{{tp|p=25416190|t=2015. Role of TRP channels in the cardiovascular system.|pdf=|usr=}}{{25416190}}
{{tp|p=27117800|t=2016. Primary renal magnesium wasting: an unusual clinical picture of exercise-induced symptoms.|pdf=|usr=}}{{27117800}}
{{tp|p=24102319|t=2014. Transient receptor potential (TRP) channels: a clinical perspective.|pdf=|usr=}}{{24102319}}
{{tp|p=23774784|t=2012. Variations of dietary salt and fluid modulate calcium and magnesium transport in the renal distal tubule.|pdf=|usr=}}{{23774784}}
{{tp|p=23506202|t=2014. Phosphate: an old bone molecule but new cardiovascular risk factor.|pdf=|usr=}}{{23506202}}
{{tp|p=26069797|t=2012. Increased expression of renal TRPM6 compensates for Mg(2+) wasting during furosemide treatment.|pdf=|usr=}}{{26069797}}
{{tp|p=23430595|t=2013. Modifying effect of calcium/magnesium intake ratio and mortality: a population-based cohort study.|pdf=|usr=}}{{23430595}}
{{tp|p=25287933|t=2015. Renal control of calcium, phosphate, and magnesium homeostasis.|pdf=|usr=}}{{25287933}}
{{tp|p=17579562|t=2007. TRP channels.|pdf=|usr=}}{{17579562}}
{{tp|p=35573736|t=2022. TRP Channels as Molecular Targets to Relieve Endocrine-Related Diseases.|pdf=|usr=}}{{35573736}}
{{tp|p=33015068|t=2020. Disorders of Calcium and Phosphorus Metabolism and the Proteomics/Metabolomics-Based Research.|pdf=|usr=}}{{33015068}}
{{tp|p=31060230|t=2019. Transient Receptor Potential (TRP) Channels in Health and Disease.|pdf=|usr=}}{{31060230}}
{{tp|p=27906866|t=2017. Inherited and acquired disorders of magnesium homeostasis.|pdf=|usr=}}{{27906866}}
{{tp|p=26069819|t=2012. Magnesium basics.|pdf=|usr=}}{{26069819}}
{{tp|p=26069817|t=2012. Regulation of magnesium balance: lessons learned from human genetic disease.|pdf=|usr=}}{{26069817}}
{{tp|p=34703991|t=2021. MR-PheWAS for the causal effects of serum magnesium on multiple disease outcomes in Caucasian descent.|pdf=|usr=}}{{34703991}}
{{tp|p=34254641|t=2021. TRP channels in health and disease at a glance.|pdf=|usr=}}{{34254641}}
{{tp|p=29849626|t=2018. Magnesium and Human Health: Perspectives and Research Directions.|pdf=|usr=}}{{29849626}}
{{tp|p=29093028|t=2018. Genome-Wide Meta-Analysis Unravels Interactions between Magnesium Homeostasis and Metabolic Phenotypes.|pdf=|usr=}}{{29093028}}
{{tp|p=24966690|t=2014. Hypomagnesemia: a clinical perspective.|pdf=|usr=}}{{24966690}}
{{tp|p=18562569|t=2008. Molecular determinants of magnesium homeostasis: insights from human disease.|pdf=|usr=}}{{18562569}}
{{tp|p=37512002|t=2023. Hypermagnesemia in Clinical Practice.|pdf=|usr=}}{{37512002}}
{{tp|p=35889897|t=2022. Magnesium Status and Ca/Mg Ratios in a Series of Children and Adolescents with Chronic Diseases.|pdf=|usr=}}{{35889897}}
{{tp|p=35565682|t=2022. The Role of Magnesium in the Pathogenesis of Metabolic Disorders.|pdf=|usr=}}{{35565682}}
{{tp|p=34444647|t=2021. Editorial of Special Issue "Magnesium in Human Health and Disease".|pdf=|usr=}}{{34444647}}
{{tp|p=31446746|t=2019. Transient Receptor Potential Channels and Metabolism.|pdf=|usr=}}{{31446746}}
{{tp|p=30987399|t=2019. Magnesium: The Forgotten Electrolyte-A Review on Hypomagnesemia.|pdf=|usr=}}{{30987399}}
{{tp|p=27074515|t=2016. Daily magnesium fluxes regulate cellular timekeeping and energy balance.|pdf=|usr=}}{{27074515}}
{{tp|p=21173080|t=2011. Emerging concepts for the role of TRP channels in the cardiovascular system.|pdf=|usr=}}{{21173080}}
{{tp|p=37402746|t=2023. TRP (transient receptor potential) ion channel family: structures, biological functions and therapeutic interventions for diseases.|pdf=|usr=}}{{37402746}}
{{tp|p=33808247|t=2021. Magnesium: Biochemistry, Nutrition, Detection, and Social Impact of Diseases Linked to Its Deficiency.|pdf=|usr=}}{{33808247}}
{{tp|p=33573164|t=2021. Magnesium in Aging, Health and Diseases.|pdf=|usr=}}{{33573164}}
{{tp|p=30200431|t=2018. Challenges in the Diagnosis of Magnesium Status.|pdf=|usr=}}{{30200431}}
{{tp|p=29389872|t=2018. Dietary Magnesium and Cardiovascular Disease: A Review with Emphasis in Epidemiological Studies.|pdf=|usr=}}{{29389872}}
{{tp|p=29093983|t=2017. The Importance of Magnesium in Clinical Healthcare.|pdf=|usr=}}{{29093983}}
{{tp|p=28581893|t=2017. Roles of transient receptor potential channels in regulation of vascular and epithelial barriers.|pdf=|usr=}}{{28581893}}
{{tp|p=26404370|t=2015. Magnesium in Prevention and Therapy.|pdf=|usr=}}{{26404370}}
{{tp|p=25834234|t=2015. Transient receptor potential channels in the vasculature.|pdf=|usr=}}{{25834234}}
{{tp|p=25106481|t=2015. Permeation, regulation and control of expression of TRP channels by trace metal ions.|pdf=|usr=}
{{tp|p=36687126|t=2023. Current opinion on the regulation of small intestinal magnesium absorption.|pdf=|usr=}}{{36687126}}
{{tp|p=34584906|t=2021. Diurnal variation of magnesium and the mineral metabolism in patients with chronic kidney disease.|pdf=|usr=}}{{34584906}}
{{tp|p=34356643|t=2021. TRPV Protein Family-From Mechanosensing to Cancer Invasion.|pdf=|usr=}}{{34356643}}
{{tp|p=26773023|t=2016. Magnesium.|pdf=|usr=}}{{26773023}}
{{ttp|p=23071747|t=2012. TRIP database 2.0: a manually curated information hub for accessing TRP channel interaction network.|pdf=|usr=}}{{23071747}}
{{tp|p=22461249|t=2009. Magnesium disorders: clinical experience and review of the literature.|pdf=|usr=}}{{22461249}}
{{tp|p=24459527|t=2008. Magnesium metabolism.|pdf=|usr=}}{{24459527}}
{{tp|p=29362479|t=2018. Molecular mechanisms of cell death: recommendations of the Nomenclature Committee on Cell Death 2018.|pdf=|usr=}}{{29362479}}
{{tp|p=29123461|t=2017. Intestinal Absorption and Factors Influencing Bioavailability of Magnesium-An Update.|pdf=|usr=}}{{29123461}}
{{tp|p=37242238|t=2023. Magnesium Deficiency and Cardiometabolic Disease.|pdf=|usr=}}{{37242238}}
{{tp|p=20667175|t=2010. Structures of membrane proteins.|pdf=|usr=}}{{20667175}}
{{tp|p=34471043|t=2021. Elucidation of the Physiological Functions of Membrane Proteins as Novel Drug Target Candidate Molecules.|pdf=|usr=}}{{34471043}}
{{tp|p=37051470|t=2023. Editorial: From mechanosensing to signalling and cell response: The ion channel force.|pdf=|usr=}}{{37051470}}
{{tp|p=37034322|t=2023. Editorial: Receptors in cardiovascular diseases: Mechanisms, diagnosis, and treatment.|pdf=|usr=}}{{37034322}}
{{tp|p=34869223|t=2021. Click Chemistry in Natural Product Modification.|pdf=|usr=}}{{34869223}}
{{tp|p=38235387|t=2023. Mysterious sphingolipids: metabolic interrelationships at the center of pathophysiology.|pdf=|usr=}}{{38235387}}
{{tp|p=33924772|t=2021. From Channels to Canonical Wnt Signaling: A Pathological Perspective.|pdf=|usr=}}{{33924772}}
{{tp|p=33171939|t=2020. Various Aspects of Calcium Signaling in the Regulation of Apoptosis, Autophagy, Cell Proliferation, and Cancer.|pdf=|usr=}}{{33171939}}
{{tp|p=30380695|t=2018. Calcium Signaling in Vertebrate Development and Its Role in Disease.|pdf=|usr=}}{{30380695}}
{{tp|p=28874452|t=2017. Model Organisms Facilitate Rare Disease Diagnosis and Therapeutic Research.|pdf=|usr=}}{{28874452}}
{{tp|p=22315611|t=2012. The plasma membrane potential and the organization of the actin cytoskeleton of epithelial cells.|pdf=|usr=}}{{22315611}}
{{tp|p=18328773|t=2008. Extracellular calcium as an integrator of tissue function.|pdf=|usr=}}{{18328773}}
{{tp|p=37103045|t=2023. Noncoding RNAs as Key Regulators for Cardiac Development and Cardiovascular Diseases.|pdf=|usr=}}{{37103045}}
{{tp|p=28503825|t=2017. New insights into Ca(2+) channel function in health and disease.|pdf=|usr=}}{{28503825}}
{{tp|p=27134458|t=2016. Exploring the ocean for new drug developments: Marine pharmacology.|pdf=|usr=}}{{27134458}}
{{tp|p=12869611|t=2003. Epithelial Ca2+ entry channels: transcellular Ca2+ transport and beyond.|pdf=|usr=}}{{12869611}}
{{tp|p=11018049|t=2000. Protein ligands to HuR modulate its interaction with target mRNAs in vivo.|pdf=|usr=}}{{11018049}}
{{tp|p=32060325|t=2020. Continuous transcription initiation guarantees robust repair of all transcribed genes and regulatory regions.|pdf=|usr=}}{{32060325}}
{{tp|p=24578711|t=2014. Channelopathies.|pdf=|usr=}}{{24578711}}
{{tp|p=37518181|t=2023. Cellular mechanotransduction in health and diseases: from molecular mechanism to therapeutic targets.|pdf=|usr=}}{{37518181}}
{{tp|p=32804003|t=2021. Highly dynamic transcriptional reprogramming and shorter isoform shifts under acute stresses during biological invasions.|pdf=|usr=}}{{32804003}}
{{ttp|p=21886681|t=2010. A computational study of liposome logic: towards cellular computing from the bottom up.|pdf=|usr=}}{{21886681}}
{{tp|p=C7119958|t=ä. Membrane Transport.|pdf=|usr=}}{{C7119958}}
{{tp|p=33036384|t=2020. General Aspects of Metal Ions as Signaling Agents in Health and Disease.|pdf=|usr=}}{{33036384}}
{{tp|p=30009861|t=2018. Differential regulation of ion channels function by proteolysis.|pdf=|usr=}}{{30009861}}
{{tp|p=24930772|t=2014. Redox regulation of ion channels.|pdf=|usr=}}{{24930772}}
{{tp|p=35942524|t=2022. Non-conducting functions of ion channels: The case of integrin-ion channel complexes.|pdf=|usr=}}{{35942524}}
{{tp|p=33747247|t=2021. Critical role of lipid membranes in polarization and migration of cells: a biophysical view.|pdf=|usr=}}{{33747247}}
{{tp|p=31710715|t=2019. THE CONCISE GUIDE TO PHARMACOLOGY 2019/20: Ion channels.|pdf=|usr=}}{{31710715}}
{{tp|p=31290152|t=2019. Interactions of nanomaterials with ion channels and related mechanisms.|pdf=|usr=}}{{31290152}}
{{tp|p=29055035|t=2017. THE CONCISE GUIDE TO PHARMACOLOGY 2017/18: Transporters.|pdf=|usr=}}{{29055035}}
{{tp|p=29055033|t=2017. THE CONCISE GUIDE TO PHARMACOLOGY 2017/18: Voltage-gated ion channels.|pdf=|usr=}}{{29055033}}
{{tp|p=27481708|t=2016. Second Messengers.|pdf=|usr=}}{{27481708}}
{{tp|p=24299922|t=2014. New insights into TRP channels: Interaction with pattern recognition receptors.|pdf=|usr=}}{{24299922}}
{{tp|p=22809040|t=2012. Ion channels in renal disease.|pdf=|usr=}}{{22809040}}
{{tp|p=34476372|t=2020. Society of General Physiologists Symposium on "Ion Channels and Transporters in Immunity, Inflammation and Antitumor Immunity" (held online on September 11, 2020).|pdf=|usr=}}{{34476372}}
{{tp|p=31518158|t=2019. Ambient and supplemental magnetic fields promote myogenesis via a TRPC1-mitochondrial axis: evidence of a magnetic mitohormetic mechanism.|pdf=|usr=}}{{31518158}}
{{tp|p=31317836|t=2019. Inflammation in Tissue and Organ Injury, Repair and Regeneration.|pdf=|usr=}}{{31317836}}
{{tp|p=23441041|t=2013. Mitochondria as a pharmacological target: magnum overview.|pdf=|usr=}}{{23441041}}
{{tp|p=30276248|t=2018. Rationalizing Steroid Interactions with Lipid Membranes: Conformations, Partitioning, and Kinetics.|pdf=|usr=}}{{30276248}}
{{tp|p=23991888|t=2014. Reactive oxygen species in inflammation and tissue injury.|pdf=|usr=}}{{23991888}}
{{tp|p=20078221|t=2010. Mammalian sirtuins: biological insights and disease relevance.|pdf=|usr=}}{{20078221}}
{{tp|p=17447894|t=2007. Sirtuins in mammals: insights into their biological function.|pdf=|usr=}}{{17447894}}
{{tp|p=36074322|t=2022. Acute Pancreatitis: Diagnosis and Treatment.|pdf=|usr=}}{{36074322}}
{{tp|p=29210126|t=2018. Crosslink between calcium and sodium signalling.|pdf=|usr=}}{{29210126}}
{{tp|p=33293849|t=2020. Reactive Oxygen Species: Drivers of Physiological and Pathological Processes.|pdf=|usr=}}{{33293849}}
{{tp|p=29326133|t=2018. Lipid signaling to membrane proteins: From second messengers to membrane domains and adapter-free endocytosis.|pdf=|usr=}}{{29326133}}
{{tp|p=34927454|t=2022. Mechanisms and physiological implications of cooperative gating of clustered ion channels.|pdf=|usr=}}{{34927454}}
{{tp|p=25701227|t=2015. Proteoglycan form and function: A comprehensive nomenclature of proteoglycans.|pdf=|usr=}}{{25701227}}
{{tp|p=37399394|t=2023. Forces and energetics of the canonical tetrameric cation channel gating.|pdf=|usr=}}{{37399394}}
{{tp|p=32269391|t=2019. THE EXPOSOME IN HUMAN EVOLUTION: FROM DUST TO DIESEL.|pdf=|usr=}}{{32269391}}

Latest revision as of 22:26, 28 January 2024


33291725 PDF 2020. TRPM Channels in Human Diseases.Template:33291725
37853091 PDF 2023. TRPM channels in health and disease.Template:37853091
34511254 PDF 2022. A comprehensive review of hypomagnesemia.Template:34511254
32643506 PDF 2020. A bibliometric analysis and review of recent researches on TRPM7.Template:32643506
29129644 PDF 2018. Role of kinase-coupled TRP channels in mineral homeostasis.Template:29129644
25073440 PDF 2014. Function and regulation of the channel-kinase TRPM7 in health and disease.Template:25073440
14561419 PDF 2003. Mg2+ homeostasis: the Mg2+nificent TRPM chanzymes.Template:14561419
22634382 PDF 2012. TRPM7: a unique channel involved in magnesium homeostasis.Template:22634382
24756720 PDF 2014. TRPM7.Template:24756720
15895246 PDF 2005. The mammalian melastatin-related transient receptor potential cation channels: an overview.Template:15895246
15843919 PDF 2005. Function and pharmacology of TRPM cation channels.Template:15843919
15574510 PDF 2005. Epithelial Ca2+ and Mg2+ channels in health and disease.Template:15574510
15150423 PDF 2004. TRPM7: channeling the future of cellular magnesium homeostasis?Template:15150423
12537986 PDF 2003. Cell physiology of magnesium.Template:12537986
21045827 PDF 2010. TRPM7 is essential for Mg(2+) homeostasis in mammals.Template:21045827
17536484 PDF 2007. Molecular components of vertebrate Mg2+-homeostasis regulation.Template:17536484
17481860 PDF 2007. TRPM6 and TRPM7--Gatekeepers of human magnesium metabolism.Template:17481860
15845589 PDF 2005. A critical role of TRPM channel-kinase for human magnesium transport.Template:15845589
15728426 PDF 2005. The TRP superfamily of cation channels.Template:15728426
36868730 PDF 2023. Physiology of a Forgotten Electrolyte-Magnesium Disorders.Template:36868730
34213669 PDF 2021. 'Magnesium'-the master cation-as a drug-possibilities and evidences.Template:34213669
32977544 PDF 2020. Magnesium, Oxidative Stress, Inflammation, and Cardiovascular Disease.Template:32977544
31192005 PDF 2019. Prevention of Cardiovascular Disease: Screening for Magnesium Deficiency.Template:31192005
29546166 PDF 2016. Magnesium: Nutrition and Homoeostasis.Template:29546166
26773013 PDF 2016. Essential Nutrient Interactions: Does Low or Suboptimal Magnesium Status Interact with Vitamin D and/or Calcium Status?Template:26773013
25839058 PDF 2014. Role of Cellular Magnesium in Human Diseases.Template:25839058
25416190 PDF 2015. Role of TRP channels in the cardiovascular system.Template:25416190
24102319 PDF 2014. Transient receptor potential (TRP) channels: a clinical perspective.Template:24102319
23506202 PDF 2014. Phosphate: an old bone molecule but new cardiovascular risk factor.Template:23506202
23430595 PDF 2013. Modifying effect of calcium/magnesium intake ratio and mortality: a population-based cohort study.Template:23430595
17579562 PDF 2007. TRP channels.Template:17579562
35573736 PDF 2022. TRP Channels as Molecular Targets to Relieve Endocrine-Related Diseases.Template:35573736
33015068 PDF 2020. Disorders of Calcium and Phosphorus Metabolism and the Proteomics/Metabolomics-Based Research.Template:33015068
31060230 PDF 2019. Transient Receptor Potential (TRP) Channels in Health and Disease.Template:31060230
27906866 PDF 2017. Inherited and acquired disorders of magnesium homeostasis.Template:27906866
26069819 PDF 2012. Magnesium basics.Template:26069819
26069817 PDF 2012. Regulation of magnesium balance: lessons learned from human genetic disease.Template:26069817
34703991 PDF 2021. MR-PheWAS for the causal effects of serum magnesium on multiple disease outcomes in Caucasian descent.Template:34703991
34254641 PDF 2021. TRP channels in health and disease at a glance.Template:34254641
29849626 PDF 2018. Magnesium and Human Health: Perspectives and Research Directions.Template:29849626
29093028 PDF 2018. Genome-Wide Meta-Analysis Unravels Interactions between Magnesium Homeostasis and Metabolic Phenotypes.Template:29093028
24966690 PDF 2014. Hypomagnesemia: a clinical perspective.Template:24966690
18562569 PDF 2008. Molecular determinants of magnesium homeostasis: insights from human disease.Template:18562569
37512002 PDF 2023. Hypermagnesemia in Clinical Practice.Template:37512002
35889897 PDF 2022. Magnesium Status and Ca/Mg Ratios in a Series of Children and Adolescents with Chronic Diseases.Template:35889897
35565682 PDF 2022. The Role of Magnesium in the Pathogenesis of Metabolic Disorders.Template:35565682
34444647 PDF 2021. Editorial of Special Issue "Magnesium in Human Health and Disease".Template:34444647
31446746 PDF 2019. Transient Receptor Potential Channels and Metabolism.Template:31446746
30987399 PDF 2019. Magnesium: The Forgotten Electrolyte-A Review on Hypomagnesemia.Template:30987399
27074515 PDF 2016. Daily magnesium fluxes regulate cellular timekeeping and energy balance.Template:27074515
21173080 PDF 2011. Emerging concepts for the role of TRP channels in the cardiovascular system.Template:21173080
37402746 PDF 2023. TRP (transient receptor potential) ion channel family: structures, biological functions and therapeutic interventions for diseases.Template:37402746
33808247 PDF 2021. Magnesium: Biochemistry, Nutrition, Detection, and Social Impact of Diseases Linked to Its Deficiency.Template:33808247
33573164 PDF 2021. Magnesium in Aging, Health and Diseases.Template:33573164
30200431 PDF 2018. Challenges in the Diagnosis of Magnesium Status.Template:30200431
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