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Condition: Chronic Pain

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Total 159 results found since Jan 2013.

Employing the sustained-release properties of poly(lactic-co-glycolic acid) nanoparticles to reveal a novel mechanism of sodium-hydrogen exchanger 1 in neuropathic pain
Transl Res. 2023 Sep 5:S1931-5244(23)00143-3. doi: 10.1016/j.trsl.2023.09.003. Online ahead of print.ABSTRACTNeuropathic pain is caused by injury or disease of the somatosensory system, and its course is usually chronic. Several studies have been dedicated to investigating neuropathic pain-related targets; however, little attention has been paid to the persistent alterations that these targets, some of which may be crucial to the pathophysiology of neuropathic pain. The present study aimed to identify potential targets that may play a crucial role in neuropathic pain and validate their long-term impact. Through bioinformat...
Source: Translational Research : the journal of laboratory and clinical medicine - September 7, 2023 Category: Laboratory Medicine Authors: Junhua Wu Meiling Jin Quangdon Tran Minwoo Kim Song I Kim Juhee Shin Hyewon Park Nara Shin Hyunji Kang Hyo Jung Shin Sun Yeul Lee Song-Biao Cui C Justin Lee Won Hyung Lee Dong Woon Kim Source Type: research

Adiponectin receptor 1-mediated stimulation of Cav3.2 channels in trigeminal ganglion neurons induces nociceptive behaviors in mice
ConclusionOur study elucidates a novel signaling cascade wherein adiponectin stimulates TG Cav3.2 channels via adipoR1 coupled to a novel CK2 α-dependent PKCβ1. This process induces neuronal hyperexcitability and pain hypersensitivity. Insight into adipoR-Cav3.2 signaling in sensory neurons provides attractive targets for pain treatment.
Source: The Journal of Headache and Pain - August 25, 2023 Category: Neurology Source Type: research

Rab27a-mediated exosome secretion in anterior cingulate cortex contributes to colorectal visceral pain in adult mice with neonatal maternal deprivation
CONCLUSIONS: This study suggested that overexpression of Rab27a increased exosome secretion in ACC neurons, thus contributing to visceral hyperalgesia in NMD mice.PMID:37529842 | DOI:10.1152/ajpgi.00029.2023
Source: American Journal of Physiology. Gastrointestinal and Liver Physiology - August 2, 2023 Category: Physiology Authors: Qian Sun Rui-Xia Weng Jia-Hui Li Yong-Chang Li Ji-Tian Xu Rui Li Xiaomin Lu Guang-Yin Xu Source Type: research

Suppression of microglial Ccl2 reduces neuropathic pain associated with chronic spinal compression
ConclusionDisc microglia expressing high levels of Ccl2 may contribute to chronic spinal compression and SCI-associated pain. Therapeutically targeting Ccl2 in microglia could offer a potential avenue for treating chronic spinal compression and SCI-associated pain.
Source: Frontiers in Immunology - July 11, 2023 Category: Allergy & Immunology Source Type: research