Results for ' Thermosensation'

4 found
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  1.  12
    Unlocking the therapeutic potential of TRPV3: Insights into thermosensation, channel modulation, and skin homeostasis involving TRPV3.Jing Lei & Makoto Tominaga - forthcoming - Bioessays.
    Recent insights reveal the significant role of TRPV3 in warmth sensation. A novel finding elucidated how thermosensation is affected by TRPV3 membrane abundance that is modulated by the transmembrane protein TMEM79. TRPV3 is a warmth‐sensitive ion channel predominantly expressed in epithelial cells, particularly skin keratinocytes. Multiple studies investigated the roles of TRPV3 in cutaneous physiology and pathophysiology. TRPV3 activation by innocuous warm temperatures in keratinocytes highlights its significance in temperature sensation, but whether TRPV3 directly contributes to warmth sensations in (...)
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  2.  17
    Molecular neurogenetics of chemotaxis and thermotaxis in the nematode Caenorhabditis elegans.Ikue Mori & Yasumi Ohshima - 1997 - Bioessays 19 (12):1055-1064.
    Chemotaxis and thermotaxis in Caenorhabditis elegans are based on the chemical senses (smell and taste) and the thermal sense, respectively, which are important for the life of the animal. Laser ablation experiments have allowed identification of sensory neurons and some interneurons required for these senses. Many mutants that exhibit various abnormalies have been isolated and analyzed. These studies have predicted novel signaling pathways whose components include a putative odorant specific transmembrane receptor (ODR‐10) and a cyclic nucleotide‐gated channel (TAX‐4/TAX‐2) functioning in (...)
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  3. Thermosensory Roles of G Protein‐Coupled Receptors and Other Cellular Factors in Animals.Kohei Ohnishi & Takaaki Sokabe - forthcoming - Bioessays:e202400233.
    In this review, we introduce the concept of “dual thermosensing mechanisms,” highlighting the functional collaboration between G protein‐coupled receptors (GPCRs) and transient receptor potential (TRP) channels that enable sophisticated cellular thermal responsiveness. GPCRs have been implicated in thermosensory processes, with recent findings identifying several candidates across species, including mammals, fruit flies, and nematodes. In many cases, these GPCRs work in conjunction with another class of thermosensors, TRP channels, offering insights into the complex mechanisms underlying thermosensory signaling. We examine how GPCRs (...)
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  4.  43
    Somatic influences on subjective well-being and affective disorders: the convergence of thermosensory and central serotonergic systems.Charles L. Raison, Matthew W. Hale, Lawrence Williams, Tor D. Wager & Christopher A. Lowry - 2014 - Frontiers in Psychology 5:104721.
    Current theories suggest that the brain is the sole source of mental illness. However, affective disorders, and major depressive disorder (MDD) in particular, may be better conceptualized as brain-body disorders that involve peripheral systems as well. This perspective emphasizes the embodied, multifaceted physiology of well-being, and suggests that afferent signals from the body may contribute to cognitive and emotional states. In this review, we focus on evidence from preclinical and clinical studies suggesting that afferent thermosensory signals contribute to well-being and (...)
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