Pages that link to "Q35619078"
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The following pages link to Role of M2, M3, and M4 muscarinic receptor subtypes in the spinal cholinergic control of nociception revealed using siRNA in rats (Q35619078):
Displaying 34 items.
- Prostatic acid phosphatase is required for the antinociceptive effects of thiamine and benfotiamine (Q28484678) (← links)
- Libidibia ferrea mature seeds promote antinociceptive effect by peripheral and central pathway: possible involvement of opioid and cholinergic receptors (Q33863431) (← links)
- Differential regulation of primary afferent input to spinal cord by muscarinic receptor subtypes delineated using knockout mice (Q33619553) (← links)
- Involvement of ERK2 in traumatic spinal cord injury (Q33723611) (← links)
- Casein kinase II regulates N-methyl-D-aspartate receptor activity in spinal cords and pain hypersensitivity induced by nerve injury (Q33943983) (← links)
- Dynamic Control of Glutamatergic Synaptic Input in the Spinal Cord by Muscarinic Receptor Subtypes Defined Using Knockout Mice (Q34412513) (← links)
- Targeting the notch ligand JAGGED1 in both tumor cells and stroma in ovarian cancer (Q35196364) (← links)
- Diabetic neuropathy enhances voltage‐activated Ca2 channel activity and its control by M4 muscarinic receptors in primary sensory neurons (Q35341725) (← links)
- Up-regulation of Cavβ3 subunit in primary sensory neurons increases voltage-activated Ca2 channel activity and nociceptive input in neuropathic pain (Q35774149) (← links)
- Pannexin-1 Up-regulation in the Dorsal Root Ganglion Contributes to Neuropathic Pain Development (Q35860828) (← links)
- N-methyl-D-aspartate receptor- and calpain-mediated proteolytic cleavage of K -Cl- cotransporter-2 impairs spinal chloride homeostasis in neuropathic pain (Q36286210) (← links)
- G9a is essential for epigenetic silencing of K( ) channel genes in acute-to-chronic pain transition. (Q36322506) (← links)
- Additive interaction of intrathecal ginsenosides and neostigmine in the rat formalin test (Q36636952) (← links)
- Alleviation of chronic pain following rat spinal cord compression injury with multimodal actions of huperzine A. (Q36637411) (← links)
- Upregulation of nuclear factor of activated T-cells by nerve injury contributes to development of neuropathic pain (Q36717118) (← links)
- Recent advances of siRNA delivery by nanoparticles (Q37854061) (← links)
- Muscarinic Pain Pharmacology: Realizing the Promise of Novel Analgesics by Overcoming Old Challenges (Q37973620) (← links)
- Novel siRNA delivery strategy: a new "strand" in CNS translational medicine? (Q38091009) (← links)
- Chitosans for delivery of nucleic acids. (Q38122934) (← links)
- In Vivo application of RNAi to study pain (Q38247940) (← links)
- Current and Future Issues in the Development of Spinal Agents for the Management of Pain (Q38727831) (← links)
- Epidural administration of neostigmine-loaded nanofibers provides extended analgesia in rats (Q41981028) (← links)
- Molecular, cellular and circuit basis of cholinergic modulation of pain (Q43061482) (← links)
- Intraperitoneal injection of saline modulates hippocampal brain receptor complex levels but does not impair performance in the Morris Water Maze (Q50267453) (← links)
- Antinociceptive Effect of the Essential Oil from Croton conduplicatus Kunth (Euphorbiaceae). (Q50615668) (← links)
- M2 Receptors Exert Analgesic Action on DRG Sensory Neurons by Negatively Modulating VR1 Activity (Q57245536) (← links)
- RE1-silencing transcription factor controls the acute-to-chronic neuropathic pain transition and Chrm2 receptor gene expression in primary sensory neurons (Q57458038) (← links)
- Chitosan and its derivatives as nanocarriers for siRNA delivery (Q60467863) (← links)
- Bortezomib and metformin opposingly regulate the expression of hypoxia-inducible factor alpha and the consequent development of chemotherapy-induced painful peripheral neuropathy (Q64060387) (← links)
- Bortezomib-induced aerobic glycolysis contributes to chemotherapy-induced painful peripheral neuropathy (Q64073251) (← links)
- Strategies and Advances in Nanomedicine for Targeted siRNA Delivery (Q84477460) (← links)
- Endogenous nitric oxide inhibits spinal NMDA receptor activity and pain hypersensitivity induced by nerve injury (Q88628867) (← links)
- Pre-Injection of Small Interfering RNA (siRNA) Promotes c-Jun Gene Silencing and Decreases the Survival Rate of Axotomy-Injured Spinal Motoneurons in Adult Mice (Q89543449) (← links)
- Cyclic Stretch Promotes Proliferation and Contraction of Human Bladder Smooth Muscle Cells by Cajal-Mediated c-kit Expression in Interstitial Cells (Q93088316) (← links)