745 results on '"Pan, Hui‐Lin"'
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2. DNA demethylation in the hypothalamus promotes transcription of Agtr1a and Slc12a2 and hypertension development
3. Corticotropin-releasing factor potentiates glutamatergic input and excitability of presympathetic neurons in the hypothalamus in spontaneously hypertensive rats
4. Calcineurin regulates synaptic Ca2+‐permeable AMPA receptors in hypothalamic presympathetic neurons via α2δ‐1‐mediated GluA1/GluA2 assembly
5. Four sulfur-containing compounds with effect from marine-derived fungus aspergillus terreus
6. Indole alkaloids fusarindoles A–E from marine-derived fungus Fusarium equiseti LJ-1
7. δ-Opioid receptors in primary sensory neurons tonically restrain nociceptive input in chronic pain but do not enhance morphine analgesic tolerance
8. Nerve injury downregulates δ-opioid and cannabinoid CB1 receptor genes through REST in primary sensory neurons
9. Calcineurin regulates synaptic Ca2+‐permeable AMPA receptors in hypothalamic presympathetic neurons via α2δ‐1‐mediated GluA1/GluA2 assembly.
10. Brain α2δ-1–Bound NMDA Receptors Drive Calcineurin Inhibitor–Induced Hypertension
11. mGluR5 from Primary Sensory Neurons Promotes Opioid-Induced Hyperalgesia and Tolerance by Interacting with and Potentiating Synaptic NMDA Receptors
12. Glutamate-activated BK channel complexes formed with NMDA receptors
13. Gene therapy approaches to restore chloride homeostasis for treating neuropathic pain
14. Contributors
15. NMDA Receptors and Signaling in Chronic Neuropathic Pain
16. Electroacupuncture inhibits NLRP3 inflammasome activation through CB2 receptors in inflammatory pain
17. Presynaptic NMDA receptors control nociceptive transmission at the spinal cord level in neuropathic pain
18. Impaired Hypothalamic Regulation of Sympathetic Outflow in Primary Hypertension
19. The α2δ-1-NMDA receptor complex and its potential as a therapeutic target for ischemic stroke
20. Corticotropin-releasing hormone neurons in the central nucleus of amygdala are required for chronic stress-induced hypertension
21. Role of Histone Modifications in Chronic Pain Development
22. Contributors
23. Duloxetine and Amitriptyline Reduce Neuropathic Pain by Inhibiting Primary Sensory Input to Spinal Dorsal Horn Neurons via α1- and α2-Adrenergic Receptors
24. Glutamatergic Regulation of Hypothalamic Presympathetic Neurons in Hypertension
25. α2δ-1–Bound N-Methyl-D-aspartate Receptors Mediate Morphine-induced Hyperalgesia and Analgesic Tolerance by Potentiating Glutamatergic Input in Rodents
26. AMPK activation attenuates inflammatory pain through inhibiting NF-κB activation and IL-1β expression
27. Brief Opioid Exposure Paradoxically Augments Primary Afferent Input to Spinal Excitatory Neurons via α2δ-1–Dependent Presynaptic NMDA Receptors
28. α2δ‐1 protein drives opioid‐induced conditioned reward and synaptic NMDA receptor hyperactivity in the nucleus accumbens
29. HDAC2 in Primary Sensory Neurons Constitutively Restrains Chronic Pain by Repressing α2δ-1 Expression and Associated NMDA Receptor Activity
30. Netrin-1 Contributes to Myelinated Afferent Fiber Sprouting and Neuropathic Pain
31. Oral Nanocurcumin Alone or in Combination with Insulin Alleviates STZ-Induced Diabetic Neuropathy in Rats
32. Electroacupuncture reduces chronic itch via cannabinoid CB1 receptors in the ventrolateral periaqueductal gray
33. Calcineurin Controls Hypothalamic NMDA Receptor Activity and Sympathetic Outflow
34. Electroacupuncture Reduces Anxiety Associated With Inflammatory Bowel Disease By Acting on Cannabinoid CB1 Receptors in the Ventral Hippocampus in Mice
35. Long Non-Coding RNA and mRNA Profiles in the Spinal Cord of Rats with Resiniferatoxin-Induced Neuropathic Pain
36. Differential Regulation of Primary Afferent Input to Spinal Cord by Muscarinic Receptor Subtypes Delineated Using Knockout Mice
37. Mastering tricyclic ring systems for desirable functional cannabinoid activity
38. Signaling Mechanism of Cannabinoid Receptor-2 Activation-Induced β-Endorphin Release
39. Cannabinoid CB2 receptors are upregulated via bivalent histone modifications and control primary afferent input to the spinal cord in neuropathic pain
40. Calcineurin inhibition causes persistent hypertension through hypothalamic NMDA receptor‐dependent sympathetic outflow
41. Bortezomib induces neuropathic pain through protein kinase C-mediated activation of presynaptic NMDA receptors in the spinal cord
42. Src Kinases Regulate Glutamatergic Input to Hypothalamic Presympathetic Neurons and Sympathetic Outflow in Hypertension
43. α2δ‐1 protein drives opioid‐induced conditioned reward and synaptic NMDA receptor hyperactivity in the nucleus accumbens.
44. Identification of diverse modulators of central and peripheral circadian clocks by high-throughput chemical screening
45. Electroacupuncture Reduces Visceral Pain Via Cannabinoid CB2 Receptors in a Mouse Model of Inflammatory Bowel Disease
46. Corrigendum to “LRRC8A-dependent volume-regulated anion channels contribute to ischemia-induced brain injury and glutamatergic input to hippocampal neurons” [Experimental Neurology, 332(2020)113391]
47. α2δ‐1 protein promotes synaptic expression of Ca 2+ permeable– AMPA receptors by inhibiting GluA1 / GluA2 heteromeric assembly in the hypothalamus in hypertension
48. Epigenetic Mechanisms of Neural Plasticity in Chronic Neuropathic Pain
49. Transcriptomic Profiling in Mice With CB1 receptor Deletion in Primary Sensory Neurons Suggests New Analgesic Targets for Neuropathic Pain
50. The α2δ-1-NMDA Receptor Complex Is Critically Involved in Neuropathic Pain Development and Gabapentin Therapeutic Actions
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