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Biology subjects

La, J.-H.

Publications and source records attributed to La, J.-H..

2 recordsLinked to original sources

Identification of arginine-vasopressin receptor 1a (Avpr1a/AVPR1A) as a novel candidate gene for chronic visceral pain.

Chronic abdominal pain in the absence of ongoing disease is the hallmark of disorders of gut-brain interaction (DGBIs), including irritable bowel syndrome (IBS). While the etiology of DGBIs remains poorly understood, there is evidence that both genetic and environmental factors play a role. In this study, we report the identification and validation of Avpr1a as a novel candidate gene for visceral hypersensitivity (VH), a primary peripheral mechanism underlying abdominal pain in DGBI/IBS. Comparing two C57BL/6 (BL/6) substrains (C57BL/6NTac and C57BL/6J) revealed differential susceptibility to the development of chronic VH following intrarectal zymosan (ZYM) instillation, a validated preclinical model for post-inflammatory IBS. Using whole genome sequencing, we identified a SNP differentiating the two strains in the 5 intergenic region upstream of Avpr1a, encoding the protein arginine-vasopressin receptor 1A (AVPR1A). We used behavioral, histological, and molecular approaches to identify distal colon- specific gene expression differences and neuronal hyperresponsiveness covarying with Avpr1a genotype and VH susceptibility. While the two BL/6 substrains did not differ across other gastrointestinal (GI) phenotypes (e.g., GI motility), VH-susceptible BL/6NTac mice had higher colonic Avpr1a mRNA and protein expression. Moreover, neurons of the enteric nervous system were hyperresponsive to the AVPR1A agonist AVP, suggesting a role for enteric neurons in the pathology underlying VH. These results parallel our findings that patients colonic Avpr1a mRNA expression was higher in patients with higher pain ratings. Taken together, these findings implicate differential regulation of Avpr1a as a novel mechanism of VH-susceptibility as well as a potential therapeutic target specific to VH. SummaryA combination of approaches, from genomic analysis to functional analyses, confirm Avpr1a as a high priority candidate gene for visceral pain.

genetics↗

Intraoperative Spinal Cord Stimulation Mitigates Pain after Spine Surgery in Mice

BackgroundManaging postoperative pain after spine surgery is challenging, and up to 40% of operated patients develop failed back surgery syndrome (FBSS) resulting in intractable back and/or leg pain. While spinal cord stimulation (SCS) has been shown to effectively alleviate such chronic pain, it is unknown if intraoperative SCS can mitigate the development of central sensitization that potentially causes intense postoperative pain and FBSS after spine surgery. MethodsAs an experimental spine surgery, unilateral T13 laminectomy was performed in mice to expose the dorsal part of L4-5 spinal segments that receive sensory inputs from the hind limb. After the laminectomy, a group of mice received intraoperative SCS epidurally applied to the exposed side of the dorsal part of the spinal cord for an hour under anesthesia before closing the surgical wounds. Secondary mechanical hypersensitivity, a behavioral manifestation of central sensitization, was measured in hind paws using von Frey assay one day before and at predetermined times after surgery. In addition, because von Frey assay is a nocifensive reflex-based analysis that primarily assesses the sensory-discriminative domain of pain, we also performed a conflict avoidance test to capture the affective-motivational domain of pain at selected timepoints post-laminectomy. ResultsMice that underwent unilateral T13 laminectomy developed mechanical hypersensitivity in both hind paws, which gradually resolved in 1-2 weeks. The extent of the hypersensitivity was significantly less in the contralateral hind paw (relative to the laminectomy) than in the ipsilateral hind paw only in females. Intraoperative SCS applied to the exposed side of the dorsal -spinal cord significantly inhibited the development of hind paw mechanical hypersensitivity only in the SCS-applied side. When paws were mechanically stimulated in their preferred place to present a conflict between pain/discomfort and natural preference, mice avoided the conflict after laminectomy, spending less time in the place than before the surgery. However, mice treated with intraoperative SCS after laminectomy did not avoid the conflict. ConclusionThese results demonstrate that spine surgery for unilateral laminectomy induces central sensitization that results in postoperative pain hypersensitivity. Intraoperative SCS after laminectomy can mitigate the development of this hypersensitivity in the SCS-applied side.

neuroscience↗