Genetic background and sex influence somatosensory sensitivity and oxycodone analgesia in the Hybrid Rat Diversity Panel

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-04-10 DOI:10.1111/gbb.12894
Eamonn P. Duffy, J. O. Ward, L. H. Hale, K. T. Brown, Andrew J. Kwilasz, Laura M. Saba, Marissa A. Ehringer, Ryan K. Bachtell
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Abstract

Opioid use disorder (OUD) is an ongoing public health concern in the United States, and relatively little work has addressed how genetic background contributes to OUD. Understanding the genetic contributions to oxycodone-induced analgesia could provide insight into the early stages of OUD development. Here, we present findings from a behavioral phenotyping protocol using several inbred strains from the Hybrid Rat Diversity Panel. Our behavioral protocol included a modified “up-down” von Frey procedure to measure inherent strain differences in the sensitivity to a mechanical stimulus on the hindpaw. We also performed the tail immersion assay, which measures the latency to display tail withdrawal in response to a hot water bath. Initial withdrawal thresholds were taken in drug-naïve animals to record baseline thermal sensitivity across the strains. Oxycodone-induced analgesia was measured after administration of oxycodone over the course of 2 h. Both mechanical and thermal sensitivity are shaped by genetic factors and display moderate heritability (h2 = 0.23–0.40). All strains displayed oxycodone-induced analgesia that peaked at 15–30 min and returned to baseline by 2 h. There were significant differences between the strains in the magnitude and duration of their analgesic response to oxycodone, although the heritability estimates were quite modest (h2 = 0.10–0.15). These data demonstrate that genetic background confers differences in mechanical sensitivity, thermal sensitivity, and oxycodone-induced analgesia.

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遗传背景和性别对杂交大鼠多样性小组的体感敏感性和羟考酮镇痛的影响
阿片类药物使用障碍(OUD)是美国持续关注的公共卫生问题,而针对遗传背景如何导致 OUD 的研究相对较少。了解基因对羟考酮诱导镇痛的贡献可以帮助人们深入了解 OUD 的早期发展阶段。在此,我们介绍了使用杂交大鼠多样性小组的几个近交品系进行行为表型分析的结果。我们的行为方案包括一个改进的 "上-下 "von Frey程序,以测量后爪对机械刺激敏感性的内在品系差异。我们还进行了尾部浸泡试验,该试验测量大鼠在热水浸泡下显示尾部抽出的潜伏期。我们对未服药的动物进行了最初的抽出阈值测定,以记录各品系的基线热敏感性。机械敏感性和热敏感性都受遗传因素的影响,并显示出适度的遗传性(h2 = 0.23-0.40)。所有菌株都表现出羟考酮诱导的镇痛,在 15-30 分钟达到峰值,并在 2 小时内恢复到基线。菌株之间对羟考酮的镇痛反应的程度和持续时间存在显著差异,尽管遗传率估计值很低(h2 = 0.10-0.15)。这些数据表明,遗传背景赋予了机械敏感性、热敏感性和羟考酮诱导镇痛的差异。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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