Jump to content
Main menu
Main menu
move to sidebar
hide
Navigation
Main page
Recent changes
Random page
Help about MediaWiki
Magnesium
Search
Search
Log in
Personal tools
Log in
Pages for logged out editors
learn more
Contributions
Talk
Editing
TRPM8
Page
Discussion
English
Read
Edit
View history
Tools
Tools
move to sidebar
hide
Actions
Read
Edit
View history
General
What links here
Related changes
Special pages
Page information
Warning:
You are not logged in. Your IP address will be publicly visible if you make any edits. If you
log in
or
create an account
, your edits will be attributed to your username, along with other benefits.
Anti-spam check. Do
not
fill this in!
as i had the scabies i felt innerly cold as ice. not based. {{tp|p=18684990|t=2008. Cooling skin cancer: menthol inhibits melanoma growth. Focus on "TRPM8 activation suppresses cellular viability in human melanoma".|pdf=|usr=}}{{18684990}} {{tp|p=37857704|t=2023. Structure of human TRPM8 channel.|pdf=|usr=}}{{37857704}} {{tp|p=35662242|t=2022. Structures of a mammalian TRPM8 in closed state.|pdf=|usr=}}{{35662242}} {{tp|p=31488702|t=2019. Structural insights into TRPM8 inhibition and desensitization.|pdf=|usr=}}{{31488702}} {{tp|p=29217583|t=2018. Structure of the cold- and menthol-sensing ion channel TRPM8.|pdf=|usr=}}{{29217583}} {{tp|p=37373205|t=2023. Human Osteoarthritic Chondrocytes Express Nineteen Different TRP-Genes-TRPA1 and TRPM8 as Potential Drug Targets.|pdf=|usr=}}{{37373205}} {{tp|p=33655414|t=2021. Linalool inhibits the angiogenic activity of endothelial cells by downregulating intracellular ATP levels and activating TRPM8.|pdf=|usr=}}{{33655414}} {{tp|p=28053885|t=2017. Shakuyakukanzoto attenuates oxaliplatin-induced cold dysesthesia by inhibiting the expression of transient receptor potential melastatin 8 in mice.|pdf=|usr=}}{{28053885}} {{tp|p=27131832|t=2016. Topical menthol increases cutaneous blood flow.|pdf=|usr=}}{{27131832}} {{tp|p=23441811|t=2013. Cold stress induces lower urinary tract symptoms.|pdf=|usr=}}{{23441811}} {{tp|p=26657057|t=2016. Phosphoinositide interacting regulator of TRP (Pirt) enhances TRPM8 channel activity in vitro via increasing channel conductance.|pdf=|usr=}}{{26657057}} {{tp|p=24372189|t=2014. TRP channels in the skin.|pdf=|usr=}}{{24372189}} {{tp|p=34734022|t=2021. Cold-inducible RNA-binding protein migrates from the nucleus to the cytoplasm under cold stress in normal human bronchial epithelial cells via TRPM8-mediated mechanism.|pdf=|usr=}}{{34734022}} {{tp|p=34589786|t=2021. Role of TRPM8 in switching between fever and hypothermia in adult mice during endotoxin-induced inflammation.|pdf=|usr=}}{{34589786}} {{tp|p=32400133|t=2020. Activation of Transient Receptor Potential Melastatin Family Member 8 (TRPM8) Receptors Induces Proinflammatory Cytokine Expressions in Bronchial Epithelial Cells.|pdf=|usr=}}{{32400133}} {{tp|p=31216483|t=2019. Direct Galpha(q) Gating Is the Sole Mechanism for TRPM8 Inhibition Caused by Bradykinin Receptor Activation.|pdf=|usr=}}{{31216483}} {{tp|p=29972224|t=2018. Modulation of Itch by Localized Skin Warming and Cooling.|pdf=|usr=}}{{29972224}} {{tp|p=26536261|t=2015. Functional and Modeling Studies of the Transmembrane Region of the TRPM8 Channel.|pdf=|usr=}}{{26536261}} {{tp|p=26341484|t=2015. Redox and trace metal regulation of ion channels in the pain pathway.|pdf=|usr=}}{{26341484}} {{tp|p=25894692|t=2015. Molecular and cellular mechanisms that initiate pain and itch.|pdf=|usr=}}{{25894692}} {{tp|p=23850286|t=2013. Polyester modification of the mammalian TRPM8 channel protein: implications for structure and function.|pdf=|usr=}}{{23850286}} {{tp|p=23651844|t=2013. Enhanced insulin clearance in mice lacking TRPM8 channels.|pdf=|usr=}}{{23651844}} {{tp|p=22860192|t=2012. Modulation of thermoreceptor TRPM8 by cooling compounds.|pdf=|usr=}}{{22860192}} {{tp|p=19203589|t=2009. Roles of transient receptor potential channels in pain.|pdf=|usr=}}{{19203589}} {{tp|p=37781093|t=2023. Peripheral mechanisms of peripheral neuropathic pain.|pdf=|usr=}}{{37781093}} {{tp|p=36439160|t=2022. Cold stimuli, hot topic: An updated review on the biological activity of menthol in relation to inflammation.|pdf=|usr=}}{{36439160}} {{tp|p=35847920|t=2022. Comprehensive Pan-Cancer Analysis of TRPM8 in Tumor Metabolism and Immune Escape.|pdf=|usr=}}{{35847920}} {{tp|p=31293565|t=2019. Pruritus in Autoimmune and Inflammatory Dermatoses.|pdf=|usr=}}{{31293565}} {{tp|p=26242276|t=2015. Pilot study to determine whether transient receptor potential melastatin type 8 (TRPM8) antibodies are detected in scleroderma.|pdf=|usr=}}{{26242276}} {{tp|p=21903934|t=2011. Menthol attenuates respiratory irritation responses to multiple cigarette smoke irritants.|pdf=|usr=}}{{21903934}} {{tp|p=36675074|t=2023. Pathogenesis and Treatment of Pruritus Associated with Chronic Kidney Disease and Cholestasis.|pdf=|usr=}}{{36675074}} {{tp|p=36536695|t=2022. Global Trends and Hotspots of Transient Receptor Potential Melastatin 8 Research from 2002 to 2021: A Bibliometric Analysis.|pdf=|usr=}}{{36536695}} {{tp|p=35897101|t=2022. Activation of peripheral TRPM8 mitigates ischemic stroke by topically applied menthol.|pdf=|usr=}}{{35897101}} {{tp|p=34446569|t=2021. Constitutive Phosphorylation as a Key Regulator of TRPM8 Channel Function.|pdf=|usr=}}{{34446569}} {{tp|p=31114308|t=2019. Intrathecal TRPM8 blocking attenuates cold hyperalgesia via PKC and NF-kappaB signaling in the dorsal root ganglion of rats with neuropathic pain.|pdf=|usr=}}{{31114308}} {{tp|p=30545944|t=2019. The Immunosuppressant Macrolide Tacrolimus Activates Cold-Sensing TRPM8 Channels.|pdf=|usr=}}{{30545944}} {{tp|p=29880642|t=2018. Critical role of the pore domain in the cold response of TRPM8 channels identified by ortholog functional comparison.|pdf=|usr=}}{{29880642}} {{tp|p=29530988|t=2018. Deletion of the Cold Thermoreceptor TRPM8 Increases Heat Loss and Food Intake Leading to Reduced Body Temperature and Obesity in Mice.|pdf=|usr=}}{{29530988}} {{tp|p=27845197|t=2017. Sustained Morphine Administration Induces TRPM8-Dependent Cold Hyperalgesia.|pdf=|usr=}}{{27845197}} {{tp|p=27634619|t=2016. TRPM8 and Migraine.|pdf=|usr=}}{{27634619}} {{tp|p=25157108|t=2014. The region adjacent to the C-end of the inner gate in transient receptor potential melastatin 8 (TRPM8) channels plays a central role in allosteric channel activation.|pdf=|usr=}}{{25157108}} {{tp|p=24917670|t=2014. Bidirectional modulation of thermal and chemical sensitivity of TRPM8 channels by the initial region of the N-terminal domain.|pdf=|usr=}}{{24917670}} {{tp|p=23884957|t=2013. Artemin, a glial cell line-derived neurotrophic factor family member, induces TRPM8-dependent cold pain.|pdf=|usr=}}{{23884957}} {{tp|p=22323721|t=2012. Pharmacological blockade of the cold receptor TRPM8 attenuates autonomic and behavioral cold defenses and decreases deep body temperature.|pdf=|usr=}}{{22323721}} {{tp|p=21900509|t=2011. TRPM8 acute desensitization is mediated by calmodulin and requires PIP(2): distinction from tachyphylaxis.|pdf=|usr=}}{{21900509}} {{tp|p=21282398|t=2011. Voltage- and cold-dependent gating of single TRPM8 ion channels.|pdf=|usr=}}{{21282398}} {{tp|p=18077679|t=2007. TRPM8 mechanism of cold allodynia after chronic nerve injury.|pdf=|usr=}}{{18077679}} {{tp|p=36966947|t=2023. Neuronal loss of TRPM8 leads to obesity and glucose intolerance in male mice.|pdf=|usr=}}{{36966947}} {{tp|p=36295712|t=2022. Nebivolol as a Potent TRPM8 Channel Blocker: A Drug-Screening Approach through Automated Patch Clamping and Ligand-Based Virtual Screening.|pdf=|usr=}}{{36295712}} {{tp|p=35997391|t=2022. Pathophysiology of Nociception and Rare Genetic Disorders with Increased Pain Threshold or Pain Insensitivity.|pdf=|usr=}}{{35997391}} {{tp|p=34834317|t=2021. The Use of Menthol in Skin Wound Healing-Anti-Inflammatory Potential, Antioxidant Defense System Stimulation and Increased Epithelialization.|pdf=|usr=}}{{34834317}} {{tp|p=34717968|t=2022. Menthol-induced activation of TRPM8 receptors increases cutaneous blood flow across the dermatome.|pdf=|usr=}}{{34717968}} {{tp|p=32955611|t=2021. TRPV4 and TRPM8 as putative targets for chronic low back pain alleviation.|pdf=|usr=}}{{32955611}} {{tp|p=32728032|t=2020. Molecular mechanisms underlying menthol binding and activation of TRPM8 ion channel.|pdf=|usr=}}{{32728032}} {{tp|p=32290846|t=2020. Chronic morphine regulates TRPM8 channels via MOR-PKCbeta signaling.|pdf=|usr=}}{{32290846}} {{tp|p=31869278|t=2020. Physiology and Pathophysiology of Itch.|pdf=|usr=}}{{31869278}} {{tp|p=29541177|t=2018. RNA interference-mediated depletion of TRPM8 enhances the efficacy of epirubicin chemotherapy in prostate cancer LNCaP and PC3 cells.|pdf=|usr=}}{{29541177}} {{tp|p=29164310|t=2018. Relevance of TRPA1 and TRPM8 channels as vascular sensors of cold in the cutaneous microvasculature.|pdf=|usr=}}{{29164310}} {{ttp|p=29088850|t=2017. Dietary menthol-induced TRPM8 activation enhances WAT "browning" and ameliorates diet-induced obesity.|pdf=|usr=}}{{29088850}} {{tp|p=28358322|t=2017. Development of TRPM8 Antagonists to Treat Chronic Pain and Migraine.|pdf=|usr=}}{{28358322}} {{tp|p=28039451|t=2017. High-throughput proteome analysis reveals targeted TRPM8 degradation in prostate cancer.|pdf=|usr=}}{{28039451}} {{tp|p=28038937|t=2017. Cellular permeation of large molecules mediated by TRPM8 channels.|pdf=|usr=}}{{28038937}} {{tp|p=27131832|t=2016. Topical menthol increases cutaneous blood flow.|pdf=|usr=}}{{27131832}} {{tp|p=26870186|t=2016. Anti-tumor activity of the TRPM8 inhibitor BCTC in prostate cancer DU145 cells.|pdf=|usr=}}{{26870186}} {{tp|p=25433072|t=2015. Molecular mechanisms of temperature adaptation.|pdf=|usr=}}{{25433072}} {{tp|p=22571355|t=2012. Transient receptor potential melastatin 8 (TRPM8) channels are involved in body temperature regulation.|pdf=|usr=}}{{22571355}} {{tp|p=22292988|t=2012. L type Ca(2)+ channel blockers prevent oxaliplatin-induced cold hyperalgesia and TRPM8 overexpression in rats.|pdf=|usr=}}{{22292988}} {{tp|p=22061619|t=2012. Regulation of TRPM8 channel activity.|pdf=|usr=}}{{22061619}} {{tp|p=18534015|t=2008. TRPM8 mechanism of autonomic nerve response to cold in respiratory airway.|pdf=|usr=}}{{18534015}} {{tp|p=17317754|t=2007. Bidirectional shifts of TRPM8 channel gating by temperature and chemical agents modulate the cold sensitivity of mammalian thermoreceptors.|pdf=|usr=}}{{17317754}} {{tp|p=36227998|t=2022. Activation mechanism of the mouse cold-sensing TRPM8 channel by cooling agonist and PIP(2).|pdf=|usr=}}{{36227998}} {{tp|p=32843690|t=2020. Highly functionalized beta-lactams and 2-ketopiperazines as TRPM8 antagonists with antiallodynic activity.|pdf=|usr=}}{{32843690}} {{tp|p=32220960|t=2020. A paradigm of thermal adaptation in penguins and elephants by tuning cold activation in TRPM8.|pdf=|usr=}}{{32220960}} {{tp|p=31575973|t=2019. Competitive Interactions between PIRT, the Cold Sensing Ion Channel TRPM8, and PIP(2) Suggest a Mechanism for Regulation.|pdf=|usr=}}{{31575973}} {{tp|p=27227023|t=2015. Biophysical analysis of thermosensitive TRP channels with a special focus on the cold receptor TRPM8.|pdf=|usr=}}{{27227023}} {{tp|p=21767774|t=2011. Topical therapies for pruritus.|pdf=|usr=}}{{21767774}} {{tp|p=17183631|t=2006. Neural substrate of cold-seeking behavior in endotoxin shock.|pdf=|usr=}}{{17183631}} {{tp|p=37033630|t=2023. Therapeutic potential of TRPM8 channels in cancer treatment.|pdf=|usr=}}{{37033630}} {{tp|p=33344232|t=2020. Transient Receptor Potential Melastatin 8 (TRPM8) Channel Regulates Proliferation and Migration of Breast Cancer Cells by Activating the AMPK-ULK1 Pathway to Enhance Basal Autophagy.|pdf=|usr=}}{{33344232}} {{tp|p=37834183|t=2023. Pathomechanism of Pruritus in Psoriasis and Atopic Dermatitis: Novel Approaches, Similarities and Differences.|pdf=|usr=}}{{37834183}} {{tp|p=34445208|t=2021. TRPM8 Channels: Advances in Structural Studies and Pharmacological Modulation.|pdf=|usr=}}{{34445208}} {{tp|p=34861341|t=2022. Role of TRP ion channels in pruritus.|pdf=|usr=}}{{34861341}} {{tp|p=29282613|t=2018. Regulation of Pain and Itch by TRP Channels.|pdf=|usr=}}{{29282613}} {{tp|p=15847696|t=2005. How cold is it? TRPM8 and TRPA1 in the molecular logic of cold sensation.|pdf=|usr=}}{{15847696}} {{tp|p=30858386|t=2019. ADP-Ribose and oxidative stress activate TRPM8 channel in prostate cancer and kidney cells.|pdf=|usr=}}{{30858386}} {{tp|p=27983625|t=2016. TRP Channels in Skin Biology and Pathophysiology.|pdf=|usr=}}{{27983625}}
Summary:
Please note that all contributions to Magnesium may be edited, altered, or removed by other contributors. If you do not want your writing to be edited mercilessly, then do not submit it here.
You are also promising us that you wrote this yourself, or copied it from a public domain or similar free resource (see
Magnesium:Copyrights
for details).
Do not submit copyrighted work without permission!
Cancel
Editing help
(opens in new window)
Templates used on this page:
Template:15847696
(
edit
)
Template:17183631
(
edit
)
Template:17317754
(
edit
)
Template:18077679
(
edit
)
Template:18534015
(
edit
)
Template:18684990
(
edit
)
Template:19203589
(
edit
)
Template:21282398
(
edit
)
Template:21767774
(
edit
)
Template:21900509
(
edit
)
Template:21903934
(
edit
)
Template:22061619
(
edit
)
Template:22292988
(
edit
)
Template:22323721
(
edit
)
Template:22571355
(
edit
)
Template:22860192
(
edit
)
Template:23441811
(
edit
)
Template:23651844
(
edit
)
Template:23850286
(
edit
)
Template:23884957
(
edit
)
Template:24372189
(
edit
)
Template:24917670
(
edit
)
Template:25157108
(
edit
)
Template:25433072
(
edit
)
Template:25894692
(
edit
)
Template:26242276
(
edit
)
Template:26341484
(
edit
)
Template:26536261
(
edit
)
Template:26657057
(
edit
)
Template:26870186
(
edit
)
Template:27131832
(
edit
)
Template:27227023
(
edit
)
Template:27634619
(
edit
)
Template:27845197
(
edit
)
Template:27983625
(
edit
)
Template:28038937
(
edit
)
Template:28039451
(
edit
)
Template:28053885
(
edit
)
Template:28358322
(
edit
)
Template:29088850
(
edit
)
Template:29164310
(
edit
)
Template:29217583
(
edit
)
Template:29282613
(
edit
)
Template:29530988
(
edit
)
Template:29541177
(
edit
)
Template:29880642
(
edit
)
Template:29972224
(
edit
)
Template:30545944
(
edit
)
Template:30858386
(
edit
)
Template:31114308
(
edit
)
Template:31216483
(
edit
)
Template:31293565
(
edit
)
Template:31488702
(
edit
)
Template:31575973
(
edit
)
Template:31869278
(
edit
)
Template:32220960
(
edit
)
Template:32290846
(
edit
)
Template:32400133
(
edit
)
Template:32728032
(
edit
)
Template:32843690
(
edit
)
Template:32955611
(
edit
)
Template:33344232
(
edit
)
Template:33655414
(
edit
)
Template:34445208
(
edit
)
Template:34446569
(
edit
)
Template:34589786
(
edit
)
Template:34717968
(
edit
)
Template:34734022
(
edit
)
Template:34834317
(
edit
)
Template:34861341
(
edit
)
Template:35662242
(
edit
)
Template:35847920
(
edit
)
Template:35897101
(
edit
)
Template:35997391
(
edit
)
Template:36227998
(
edit
)
Template:36295712
(
edit
)
Template:36439160
(
edit
)
Template:36536695
(
edit
)
Template:36675074
(
edit
)
Template:36966947
(
edit
)
Template:37033630
(
edit
)
Template:37373205
(
edit
)
Template:37781093
(
edit
)
Template:37834183
(
edit
)
Template:37857704
(
edit
)
Template:Tp
(
edit
)
Template:Ttp
(
edit
)
Toggle limited content width