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不同的甲基苯丙胺摄入遗传风险导致对其他成瘾性药物改变体温效应的敏感性不同。

Differential genetic risk for methamphetamine intake confers differential sensitivity to the temperature-altering effects of other addictive drugs.

机构信息

Department of Behavioral Neuroscience and Methamphetamine Abuse Research Center, Oregon Health & Science University, Portland, Oregon.

Division of Research, Veterans Affairs Portland Health Care System, Portland, Oregon.

出版信息

Genes Brain Behav. 2020 Jun;19(5):e12640. doi: 10.1111/gbb.12640. Epub 2020 Jan 15.

Abstract

Mice selectively bred for high methamphetamine (MA) drinking (MAHDR), compared with mice bred for low MA drinking (MALDR), exhibit greater sensitivity to MA reward and insensitivity to aversive and hypothermic effects of MA. Previous work identified the trace amine-associated receptor 1 gene (Taar1) as a quantitative trait gene for MA intake that also impacts thermal response to MA. All MAHDR mice are homozygous for the mutant Taar1 allele, whereas all MALDR mice possess at least one copy of the reference Taar1 allele. To determine if their differential sensitivity to MA-induced hypothermia extends to drugs of similar and different classes, we examined sensitivity to the hypothermic effect of the stimulant cocaine, the amphetamine-like substance 3,4-methylenedioxymethamphetamine (MDMA), and the opioid morphine in these lines. The lines did not differ in thermal response to cocaine, only MALDR mice exhibited a hypothermic response to MDMA, and MAHDR mice were more sensitive to the hypothermic effect of morphine than MALDR mice. We speculated that the μ-opioid receptor gene (Oprm1) impacts morphine response, and genotyped the mice tested for morphine-induced hypothermia. We report genetic linkage between Taar1 and Oprm1; MAHDR mice more often inherit the Oprm1 allele and MALDR mice more often inherit the Oprm1 allele. Data from a family of recombinant inbred mouse strains support the influence of Oprm1 genotype, but not Taar1 genotype, on thermal response to morphine. These results nominate Oprm1 as a genetic risk factor for morphine-induced hypothermia, and provide additional evidence for a connection between drug preference and drug thermal response.

摘要

与低甲基苯丙胺(MA)摄食(MALDR)品系的小鼠相比,经选择性培育对 MA 具有高摄食偏好的品系(MAHDR)的小鼠,对 MA 的奖赏效应更敏感,而对 MA 的厌恶和降温作用不敏感。先前的研究将痕迹胺相关受体 1 基因(Taar1)鉴定为 MA 摄入的数量性状基因,该基因还影响对 MA 的热反应。所有 MAHDR 小鼠均为突变 Taar1 等位基因的纯合子,而所有 MALDR 小鼠至少携带一个参考 Taar1 等位基因。为了确定它们对 MA 引起的降温作用的敏感性差异是否扩展到具有相似和不同类别的药物,我们研究了这些品系对兴奋剂可卡因、安非他命样物质 3,4-亚甲二氧基甲基苯丙胺(MDMA)和阿片类药物吗啡的降温作用的敏感性。这些品系对可卡因的热反应没有差异,只有 MALDR 小鼠对 MDMA 表现出降温反应,而 MAHDR 小鼠对吗啡的降温作用比 MALDR 小鼠更敏感。我们推测μ-阿片受体基因(Oprm1)影响吗啡反应,并对接受吗啡降温作用测试的小鼠进行了基因型分析。我们报告了 Taar1 和 Oprm1 之间的遗传连锁;MAHDR 小鼠更常遗传 Oprm1 等位基因,而 MALDR 小鼠更常遗传 Oprm1 等位基因。来自重组近交系小鼠品系的家族数据支持 Oprm1 基因型对吗啡引起的降温作用的影响,但不支持 Taar1 基因型的影响。这些结果将 Oprm1 命名为吗啡引起的降温作用的遗传风险因素,并为药物偏好和药物热反应之间的联系提供了更多证据。

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