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1. Inflammatory Signals Enhance Piezo2-Mediated Mechanosensitive Currents

2. Structure-guided mutagenesis of OSCAs reveals differential activation to mechanical stimuli

3. Excessive mechanotransduction in sensory neurons causes joint contractures

4. PIEZO1 transduces mechanical itch in mice

5. OSCA/TMEM63 are an evolutionarily conserved family of mechanically activated ion channels

6. Structure of the human volume regulated anion channel

7. Excessive Mechanotransduction in Sensory Neurons Causes Joint Contractures in a Mouse Model of Arthrogryposis

8. Lighting Up Mechanosensation: dyeing to see PIEZO2

11. PIEZO1 transduces mechanical itch in mice

12. Chemical activation of the mechanotransduction channel Piezo1

13. PIEZO ion channel is required for root mechanotransduction in Arabidopsis thaliana

14. A role of PIEZO1 in iron metabolism in mice and humans

15. PIEZO ion channel is required for root mechanotransduction in Arabidopsis thaliana

16. Piezos thrive under pressure: mechanically activated ion channels in health and disease

17. LRRC8 Proteins Form Volume-Regulated Anion Channels that Sense Ionic Strength

19. The mechanosensitive ion channel Piezo2 mediates sensitivity to mechanical pain in mice

20. OSCA/TMEM63 are an Evolutionarily Conserved Family of Mechanically Activated Ion Channels

21. Structure of the human volume regulated anion channel

22. Author response: Structure of the human volume regulated anion channel

23. Editorial Note to: Endogenous Piezo1 Can Confound Mechanically Activated Channel Identification and Characterization

24. Endogenous Piezo1 Can Confound Mechanically Activated Channel Identification and Characterization

25. Piezo2 is required for Merkel-cell mechanotransduction

26. Hypermorphic mutation of the voltage-gated sodium channel encoding gene Scn10a causes a dramatic stimulus-dependent neurobehavioral phenotype

27. Diversity of Lysophosphatidic Acid Receptor-Mediated Intracellular Calcium Signaling in Early Cortical Neurogenesis

28. Nociceptive Signals Induce Trafficking of TRPA1 to the Plasma Membrane

29. Roles of transient receptor potential channels in pain

30. HCN Channels as Targets for Drug Discovery

31. Identification of Transmembrane Domain 5 as a Critical Molecular Determinant of Menthol Sensitivity in Mammalian TRPA1 Channels

32. Pharmacology and Antitussive Efficacy of 4-(3-Trifluoromethyl-pyridin-2-yl)-piperazine-1-carboxylic Acid (5-Trifluoromethyl-pyridin-2-yl)-amide (JNJ17203212), a Transient Receptor Potential Vanilloid 1 Antagonist in Guinea Pigs

34. Chemical activation of the mechanotransduction channel Piezo1

35. More than cool: Promiscuous relationships of menthol and other sensory compounds

36. High-throughput random mutagenesis screen reveals TRPM8 residues specifically required for activation by menthol

37. Emerging medicinal roles for lysophospholipid signaling

38. Neurobiology of Receptor-Mediated Lysophospholipid Signaling: From the First Lysophospholipid Receptor to Roles in Nervous System Function and Development

39. 7-Hydroxynaphthalen-1-yl-urea and -amide antagonists of human vanilloid receptor 1

40. Fluorescence Imaging of Electrically Stimulated Cells

41. Neuronal Hyperpolarization-Activated Pacemaker Channels Drive Neuropathic Pain

42. Inactivation of olfactory sensilla of a single morphological type differentially affects the response ofDrosophila to odors

43. Synthesis and in vitro evaluation of a novel iodinated resiniferatoxin derivative that is an agonist at the human vanilloid VR1 receptor

44. Simultaneous Intracellular Calcium and Sodium Flux Imaging in Human Vanilloid Receptor 1 (VR1)-Transfected Human Embryonic Kidney Cells: A Method to Resolve Ionic Dependence of VR1-Mediated Cell Death

45. Piezo2 is the major transducer of mechanical forces for touch sensation in mice

46. SWELL1, a plasma membrane protein, is an essential component of volume-regulated anion channel

47. The Pharmacological and Functional Characteristics of the Serotonin 5-HT3A Receptor Are Specifically Modified by a 5-HT3B Receptor Subunit

48. Involvement of Genes Encoding a K+ Channel (ether a go-go) and a Na+ Channel (smellblind) in Drosophila Olfactiona

49. Voltage-activated and odor-modulated conductances in olfactory neurons ofDrosophila melanogaster

50. TNFα receptor expression in rat cardiac myocytes: TNFα inhibition of L-type Ca2+current and Ca2+transients

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