We have previously suggested that protein kinase C (PKC) contributes to persistent pain in the formalin test. This study compared the effects of pharmacological inhibition of PKC with either GF 109203X or chelerythrine on persistent pain following noxious chemical stimulation with its effects on mechanical hyperalgesia, which develops in the hindpaw contralateral to an injury produced by noxious thermal stimulation. Furthermore, we have assessed changes in membrane-associated PKC in spinal cord in response to both noxious chemical and thermal stimulation. Nociceptive responses, to a hindpaw injection of 50 microliters of 2.5% formalin, and flexion reflex thresholds, to mechanical stimulation (Randall-Selitto test) in the hindpaw contralateral to a thermal injury (15 sec immersion in water at 55 degrees C), were assessed following intrathecal injection of PKC inhibitors (GF 109203X or chelerythrine). Changes in the levels of membrane-associated PKC, as assayed by quantitative autoradiography of the specific binding of 3H-phorbol-12,13-dibutyrate (3H-PDBu) in spinal cord sections, were assessed in rats after noxious chemical (50 microliters of 5.0% formalin) and noxious thermal (90 sec immersion in water at 55 degrees C) stimulation. Inhibitors of PKC (GF 109203X, chelerythrine), produced significant reductions of nociceptive responses to 2.5% formalin, as well as a significant reduction in the mechanical hyperalgesia in the hindpaw contralateral to a thermal injury. In addition, both noxious chemical and thermal stimulation produced significant increases in specific 3H-PDBu binding in the dorsal horn of the lumbar spinal cord, likely reflecting alterations in membrane-associated PKC. The results provide both pharmacological and anatomical evidence that persistent pain produced by chemical stimulation with formalin and mechanical hyperalgesia in the hindpaw contralateral to a thermal injury are influenced by the translocation and activation of PKC in spinal cord dorsal horn neurons.
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http://dx.doi.org/10.1523/JNEUROSCI.15-05-03263.1995 | DOI Listing |
Pak J Med Sci
January 2025
Jun Zang Neurological Rehabilitation Center, Beijing Rehabilitation Hospital of Capital Medical University, Beijing 100000, Beijing, China.
Objective: To evaluate the clinical efficacy of bladder function training combined with pelvic floor biofeedback electrical stimulation in the treatment of neurogenic bladder and its impact on urodynamics.
Methods: This was a clinical comparative study. A total of 120 patients with neurogenic bladder after spinal cord injury admitted to Beijing Rehabilitation Hospital of Capital Medical University and Beijing Shijingshan Hospital from January 2023 to December 2023 were randomly divided into two groups (n= 60/group).
J Pain Res
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View Article and Find Full Text PDFJ Community Hosp Intern Med Perspect
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Internal Medicine Residency Program, Luminis Health Anne Arundel Medical Center, Annapolis, MD, USA.
Nitrous oxide (NO) has been increasingly used for recreational purposes due to its dissociative and euphoric properties. Exposure to NO results in the deactivation of in vivo vitamin B, leading to subsequent neurological sequelae due to vitamin B deficiency.7 Current management focuses on cessation of exposure and replacement therapy, yet patients may continue to suffer from permanent neurological damage.
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View Article and Find Full Text PDFCureus
December 2024
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Intramedullary spinal cord metastasis (ISCM) is a rare manifestation of renal cell carcinoma (RCC). A 73-year-old man presented with left shoulder pain and left upper extremity weakness for two months. Magnetic resonance imaging (MRI) revealed intramedullary and intradural extramedullary lesions at the C5 level, compressing the spinal cord from the center of the cord and the left ventral side.
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