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1,267 results on '"ACID-sensing ion channels"'

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1. Ischemic Stroke: Pathophysiology and Evolving Treatment Approaches.

2. A conserved peptide-binding pocket in HyNaC/ASIC ion cha.

3. ASIC3-activated key enzymes of de novo lipid synthesis supports lactate-driven EMT and the metastasis of colorectal cancer cells.

4. Acid-sensing ion channel 3 is a new potential therapeutic target for the control of glioblastoma cancer stem cells growth.

5. Does a single oral administration of amiloride affect spontaneous arterial baroreflex sensitivity and blood pressure variability in healthy young adults?

6. Ion channels in osteoarthritis: emerging roles and potential targets.

7. ASIC1/RIP1 accelerates atherosclerosis via disrupting lipophagy.

8. The Phytochemical, Quercetin, Attenuates Nociceptive and Pathological Pain: Neurophysiological Mechanisms and Therapeutic Potential.

9. Insulin enhances acid-sensing ion channel currents in rat primary sensory neurons.

10. iMSC exosome delivers hsa-mir-125b-5p and strengthens acidosis resilience through suppression of ASIC1 protein in cerebral ischemia-reperfusion.

11. Bone marrow monocytes and macrophages from mice lacking βENaC and ASIC2 have a reduced chemotactic migration response and polarization.

12. Sensory ASIC3 channel exacerbates psoriatic inflammation via a neurogenic pathway in female mice.

13. Functional expression of the proton sensors ASIC1a, TMEM206, and OGR1 together with BKCa channels is associated with cell volume changes and cell death under strongly acidic conditions in DAOY medulloblastoma cells.

14. ASIC1 promotes migration and invasion of hepatocellular carcinoma via the PRKACA/AP-1 signaling pathway.

15. Mesenchymal stromal cell response to intervertebral disc‐like pH is tissue source dependent.

16. Commentary: Effects of combined treatment with transcranial and peripheral electromagnetic stimulation on performance and pain recovery from delayed onset muscle soreness induced by eccentric exercise in young athletes. A randomized clinical trial.

17. Genetic or Pharmacological Ablation of Acid-Sensing Ion Channel 1a (ASIC1a) Is Not Neuroprotective in a Mouse Model of Spinal Cord Injury.

18. Recent advances in the knowledge of the mechanism of reflux hypersensitivity.

19. Paradoxical potentiation of the exercise pressor reflex by endomorphin 2 in the presence of naloxone.

20. Non-traditional risk factors: built environment assessed by Google Street View, syphilis, and rheumatoid arthritis.

21. Acid-sensing ion channel 1a blockade reduces myocardial injury in rodent models of myocardial infarction.

22. Lycocasine A, a Lycopodium Alkaloid from Lycopodiastrum casuarinoides and Its Acid-Sensing Ion Channel 1a Inhibitory Activity.

23. Antifibromyalgic Activity of Phytomolecule Niranthin: In-Vivo Analysis, Molecular Docking, Dynamics and DFT.

24. 4-(Azolyl)-Benzamidines as a Novel Chemotype for ASIC1a Inhibitors.

25. Complex alterations in inflammatory pain and analgesic sensitivity in young and ageing female rats: involvement of ASIC3 and Nav1.8 in primary sensory neurons.

26. Brain sodium sensing for regulation of thirst, salt appetite, and blood pressure.

27. Circular RNA CircFOXO3 Functions as a Competitive Endogenous RNA for Acid-Sensing Ion Channel Subunit 1 Mediating Oxeiptosis in Nucleus Pulposus.

28. Acid-sensing ion channel 3 mediates pain hypersensitivity associated with high-fat diet consumption in mice.

29. NGF contributes to activities of acid‐sensing ion channels in dorsal root ganglion neurons of male rats with experimental peripheral artery disease.

30. The Role of Ion-Transporting Proteins in Human Disease.

31. Opioid Analgesic as a Positive Allosteric Modulator of Acid-Sensing Ion Channels.

32. Inhibiting acid‐sensing ion channel exerts neuroprotective effects in experimental epilepsy via suppressing ferroptosis.

33. ASIC1a contributes to the epithelial–mesenchymal transformation of breast cancer by activating the Ca2+/β‐catenin pathway.

34. Editorial: Targeting ion channels for drug discovery: emerging challenges for high throughput screening technologies.

35. Molecular determinants of ASIC1 modulation by divalent cations.

36. The role of acid-sensing ion channels in monosodium urate-induced gouty pain in mice.

37. Modulation of TRPV1 and TRPA1 Channels Function by Sea Anemones' Peptides Enhances the Viability of SH-SY5Y Cell Model of Parkinson's Disease.

38. Experimental Physiology special issue: 'Mechanotransduction, muscle spindles and proprioception'.

39. Genetic exploration of roles of acid‐sensing ion channel subtypes in neurosensory mechanotransduction including proprioception.

40. Nocistatin and Products of Its Proteolysis Are Dual Modulators of Type 3 Acid-Sensing Ion Channels (ASIC3) with Algesic and Analgesic Properties.

41. Acid-Sensing Ion Channels' Immunoreactivity in Nerve Profiles and Glomus Cells of the Human Carotid Body.

42. Mechanisms of carbon dioxide detection in the earthworm Dendrobaena veneta.

43. Dynamic landscape of the intracellular termini of acid-sensing ion channel 1a.

44. Acid-Sensing Ion Channel 1a Contributes to the Prefrontal Cortex Ischemia-Enhanced Neuronal Activities in the Amygdala.

45. Vacuolar-ATPase-mediated muscle acidification caused muscular mechanical nociceptive hypersensitivity after chronic stress in rats, which involved extracellular matrix proteoglycan and ASIC3.

46. Reduced Plasma-Membrane Calcium ATPase Activity and Extracellular Acidification Trigger Presynaptic Homeostatic Potentiation at the Mouse Neuromuscular Junction.

47. Acute inhibition of acid sensing ion channel 1a after spinal cord injury selectively affects excitatory synaptic transmission, but not intrinsic membrane properties, in deep dorsal horn interneurons.

48. Probing the Proton-Gated ASIC Channels Using Tetraalkylammonium Ions.

49. Acidic Environment Induces Pyroptosis of NLRP3 Inflammatory Vesicle-Mediated Nucleus Pulposus Cells Through Up-Regulation of POSTN Expression.

50. Acid-Sensing Ion Channel 1a Signaling Target and Vitamin D-Mediated Mechanisms in Hypoxic-Ischemic Brain Damage of Neonatal Rat.

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