A200 EXPOSURE TO CANNABIS SMOKE IN UTERO AFFECTS THE DEVELOPMENT OF THE ENDOCANNABINOID SYSTEM IN THE GASTROINTESTINAL TRACT

E. Ratcliffe, M. Sunil, T. Podinić, J. Kasinska, J. Hirota, S. Raha
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Abstract

Abstract Background Recreational use of cannabis has been legalized in Canada since 2018. Increasing numbers of women are using cannabis while pregnant, with reported rates ampersand:003E10%. There is a disconnect with societal perceptions, with up to one third of women believing that cannabis is safe for use in pregnancy, but with preclinical and clinical studies demonstrating negative neurodevelopmental outcomes. A key component of gut-brain axis regulation is found in the endocannabinoid system (ECS), of which receptors, ligands and enzymes are extensively distributed throughout the gastrointestinal (GI) tract and are actively involved in GI motility and sensation. Aims We tested the hypothesis that exposure to cannabis smoke in utero could influence the expression of ECS components in the developing GI tract. Methods We developed a “real world” cannabis smoke inhalation model in which CD-1 pregnant mouse dams were exposed daily to a delta-9-tetrahydrocannabinol (THC)-dominant strain of cannabis in a smoking chamber unit, from embryonic days 6 (E6) to E18. Control mice were placed in a restraining cage and exposed to room air for the equivalent time-period. Dams were sacrificed at E18, fetuses removed and the fetal GI tract (from stomach to distal colon) collected for RNA extraction. Key components of the ECS were investigated by developing a NanoString Custom CodeSet, including receptors (cannabinoid receptors 1 and 2; CB1 and CB2, transient receptor potential vanilloid type 1; TRVP1, GPR55) and enzymes (diacylglycerol lipase; DAGL, fatty acid amide hydrolase; FAAH, monoacylglycerol lipase; MAGL, N-acylphosphatidyletanolamine phospholipase D; NAPE-PLD). Samples (n=per litter; 7 cannabis-exposed and 8 control) were processed in the Farncombe Metagenomics Facility and NanoString data analyzed using nSolver Analysis Software. Results We found a significant increase in the expression of ECS receptors in the cannabis-exposed compared to control GI tract at E18, including CB2 (pampersand:003C0.05), TRPV1 (pampersand:003C0.05) and GPR55 (pampersand:003C0.0005). Interestingly, no significant change in mRNA expression was detected for CB1. We also found a significant increase in mRNA encoding the full panel of ECS enzymes, including DAGL (pampersand:003C0.005), FAAH (pampersand:003C0.05), MAGL (pampersand:003C0.05) and NAPE-PLD (pampersand:003C0.005) in cannabis-exposed compared to control GI tract. Conclusions In conclusion, we have found a significant increase in mRNA expression in a panel of key ECS receptors and enzymes in the GI tract at a point of maximal exposure to cannabis in utero. Future research will be needed to further characterize potential impacts on postnatal GI development and function. Funding Agencies CIHRThe Azrieli Foundation
A200 在子宫内接触大麻烟雾会影响胃肠道内大麻素系统的发育
摘要 背景 加拿大自 2018 年起将娱乐性使用大麻合法化。越来越多的妇女在怀孕期间使用大麻,据报道使用率为amppersand:003E10%。这与社会观念脱节,多达三分之一的女性认为孕期使用大麻是安全的,但临床前和临床研究却证明大麻会对神经发育产生负面影响。内源性大麻素系统(ECS)是肠道-大脑轴调节的一个关键组成部分,其受体、配体和酶广泛分布于整个胃肠道,并积极参与胃肠道的蠕动和感觉。目的 我们测试了子宫内暴露于大麻烟雾会影响发育中胃肠道中 ECS 成分表达的假设。方法 我们开发了一种 "真实世界 "大麻烟雾吸入模型,在该模型中,CD-1 怀孕小鼠母体从胚胎第 6 天(E6)到 E18 天每天都要在吸烟室装置中接触以 delta-9- 四氢大麻酚(THC)为主的大麻品系。对照组小鼠被关在束缚笼中,在同等时间段内暴露在室内空气中。母鼠在 E18 期死亡,取出胎儿并收集胎儿消化道(从胃到远端结肠)以提取 RNA。通过开发 NanoString Custom CodeSet 研究了 ECS 的关键成分,包括受体(大麻素受体 1 和 2;CB1 和 CB2、瞬时受体电位类香草素 1 型;TRVP1、GPR55)和酶(二酰甘油脂肪酶;DAGL、脂肪酸酰胺水解酶;FAAH、单酰甘油脂肪酶;MAGL、N-酰基磷脂酰乙醇胺磷脂酶 D;NAPE-PLD)。样本(n= 每窝;7 个大麻暴露样本和 8 个对照样本)在 Farncombe Metagenomics Facility 中进行处理,并使用 nSolver 分析软件对 NanoString 数据进行分析。结果 我们发现,与对照组相比,在 E18 期,大麻暴露组胃肠道中 ECS 受体的表达量明显增加,包括 CB2(pampersand:003C0.05)、TRPV1(pampersand:003C0.05)和 GPR55(pampersand:003C0.0005)。有趣的是,CB1 的 mRNA 表达未发现明显变化。我们还发现,与对照组相比,大麻暴露的胃肠道中编码所有 ECS 酶的 mRNA 均有明显增加,包括 DAGL(pampersand:003C0.005)、FAAH(pampersand:003C0.05)、MAGL(pampersand:003C0.05)和 NAPE-PLD (pampersand:003C0.005)。结论 总之,我们发现在子宫内最大限度接触大麻时,胃肠道中一组关键 ECS 受体和酶的 mRNA 表达量显著增加。未来的研究需要进一步确定对出生后胃肠道发育和功能的潜在影响。资助机构 CIHRThe Azrieli 基金会
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