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1. FLT3 signaling inhibition abrogates opioid tolerance and hyperalgesia while preserving analgesia

3. Patch-seq of mouse DRG neurons reveals candidate genes for specific mechanosensory functions

4. Maladaptive activation of Nav1.9 channels by nitric oxide causes triptan-induced medication overuse headache

5. Pkd2l1 is required for mechanoception in cerebrospinal fluid-contacting neurons and maintenance of spine curvature

7. The Nav1.9 Channel Is a Key Determinant of Cold Pain Sensation and Cold Allodynia

8. TAFA4, a Chemokine-like Protein, Modulates Injury-Induced Mechanical and Chemical Pain Hypersensitivity in Mice

9. Mechanosensor Channels in Mammalian Somatosensory Neurons

10. The Gating of Polycystin Signaling Complex

11. Nav1.9 channel contributes to mechanical and heat pain hypersensitivity induced by subacute and chronic inflammation.

12. The Moringa Leaf Caterpillar (Noorda blitealis Walker, 1859), a Major Pest of Moringa (Moringa oleifera Lam.) Worldwide

13. D-Serine agonism of GluN1-GluN3 NMDA receptors regulates the activity of enteric neurons and coordinates gut motility

14. FLT3 signaling inhibition preserves opioid analgesia while abrogating tolerance and hyperalgesia

15. PIEZO channels and newcomers in the mammalian mechanosensitive ion channel family

16. Fluorescent‐ and tagged‐protoxin II peptides: potent markers of the Na v 1.7 channel pain target

17. The widely used antihistamine mepyramine causes topical pain relief through direct blockade of nociceptor sodium channels

18. Le cholestérol cellulaire, un régulateur important de la douleur inflammatoire

19. Piezo1-Pannexin1 complex couples force detection to ATP secretion in cholangiocytes

20. Analgesic Effects of Topical Amitriptyline in Patients With Chemotherapy-Induced Peripheral Neuropathy: Mechanistic Insights From Studies in Mice

21. SnapShot: Orofacial Sensation

22. Bases moléculaires de la mécanosensibilité

23. Pkd2l1 is required for mechanoception in cerebrospinal fluid-contacting neurons and maintenance of spine curvature

24. Membrane cholesterol depletion as a trigger of Nav1.9 channel‐mediated inflammatory pain

25. Merkel Cells Sense Cooling with TRPM8 Channels

26. Specialized Functions of Nav1.5 and Nav1.9 Channels in Electrogenesis of Myenteric Neurons in Intact Mouse Ganglia

27. The scorpion toxin Amm VIII induces pain hypersensitivity through gain-of-function of TTX-sensitive Na+ channels

28. Shear stress-induced Ca2+ mobilization in MDCK cells is ATP dependent, no matter the primary cilium

29. Chemicals inducing acute irritant contact dermatitis mobilize intracellular calcium in human keratinocytes

30. Le canal Nav1.9 : protéine clé pour la perception du froid et cible thérapeutique potentielle contre la douleur

31. ATP signalling is crucial for the response of human keratinocytes to mechanical stimulation by hypo-osmotic shock

32. Molecular mechanisms of mechanotransduction in mammalian sensory neurons

33. A polycystin-2 (TRPP2) dimerization domain essential for the function of heteromeric polycystin complexes

34. Persistent Nav1.6 current at axon initial segments tunes spike timing of cerebellar granule cells

35. Activation of neurokinin 3 receptor increases Nav1.9 current in enteric neurons

36. Rôle des canaux sodium des neurones afférents primaires dans les douleurs neuropathiques périphériques

37. Molecular basis of the mammalian pressure-sensitive ion channels: Focus on vascular mechanotransduction

38. Expression and localization of the Nav1.9 sodium channel in enteric neurons and in trigeminal sensory endings: Implication for intestinal reflex function and orofacial pain

39. Dynamic excitation states and firing patterns are controlled by sodium channel kinetics in myenteric neurons: a simulation study

40. Transduction and encoding sensory information by skin mechanoreceptors

41. The versatile nature of the calcium‐permeable cation channel TRPP2

42. Differential targeting and functional specialization of sodium channels in cultured cerebellar granule cells

43. Phosphoinositide Lipid Second Messengers: New Paradigms for Calcium Channel Modulation

44. Polycystins: polymodal receptor/ion-channel cellular sensors

45. Polycystins, calcium signaling, and human diseases

46. Polycystins

47. Gating and modulation of presumptive NaV1.9 channels in enteric and spinal sensory neurons

48. General anesthetic octanol and related compounds activate wild-type and delF508 cystic fibrosis chloride channels

49. Pharmacological and Signaling Properties of Endogenous P2Y1 Receptors in Cystic Fibrosis Transmembrane Conductance Regulator-Expressing Chinese Hamster Ovary Cells

50. Functional organization of PLC signaling microdomains in neurons

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