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背侧迷走神经复合体中的大麻素1受体调节雪貂下食管括约肌的松弛。

Cannabinoid1 receptor in the dorsal vagal complex modulates lower oesophageal sphincter relaxation in ferrets.

作者信息

Partosoedarso E R, Abrahams T P, Scullion R T, Moerschbaecher J M, Hornby P J

机构信息

Department of Pharmacology and Experimental Therapeutics, Louisiana State University Health Sciences Center, New Orleans, Louisiana 70112, USA.

出版信息

J Physiol. 2003 Jul 1;550(Pt 1):149-58. doi: 10.1113/jphysiol.2003.042242.

Abstract

Delta9-tetrahydrocannabinol (delta9-THC) is an effective anti-emetic; however, other potential gastrointestinal therapeutic effects of delta9-THC are less well-known. Here, we report a role of delta9-THC in a vago-vagal reflex that can result in gastro-oesophageal reflux, that is, gastric distension-evoked lower oesophageal sphincter (LOS) relaxation. Oesophageal, LOS and gastric pressures were measured using a miniaturized, manometric assembly in decerebrate, unanaesthetized ferrets.Gastric distension (30 ml) evoked LOS relaxation (70 +/- 8% decrease from baseline). Delta9-THC administered systemically (0.2 mg kg-1, iv.) or directly to the dorsal hindbrain surface (0.002 mg),significantly attenuated the nadir of the gastric distention-evoked LOS relaxation, and time to reach maximal response. Similar increases to maximal effect were observed after treatment with the cannabinoid receptor agonist WIN 55,212-2 (0.2 mg kg-1 iv.). The effect of systemic delta9-THC on gastric distention-evoked LOS relaxation was reversed by a selective cannabinoid1 (CBI) receptor antagonist, SR141617A (1 mg kg-1 i.v.). Since this reflex is vagally mediated, we used a CB1 receptor antiserum and immunocytochemistry to determine its distribution in ferret vagal circuitry. CBI receptor staining was present in cell bodies within the area postrema, nucleus tractus solitarius (NTS) and nodose ganglion. Intense terminal-like staining was noted within the NTS and dorsal motor vagal nucleus (DMN). Neither nodose ganglionectomy nor vagotomy altered the CB1 receptor terminal-like staining in the dorsal vagal complex. Retrogradely labelled gastric- or LOS-projecting DMN neurones did not express CBI receptors within their soma. Therefore, CBI receptor staining in the NTS and DMN is not due to primary vagal afferents or preganglionic neurones. These novel findings suggest that delta9-THC can modulate reflex LOS function and that the most likely site of action is via the CBI receptor within the NTS. This effect of delta9-THC may have implications in treatment of gastro-oesophageal reflux and other upper gut disorders.

摘要

9-四氢大麻酚(Δ9-THC)是一种有效的止吐药;然而,Δ9-THC的其他潜在胃肠道治疗作用却鲜为人知。在此,我们报告了Δ9-THC在一种迷走-迷走反射中的作用,该反射可导致胃食管反流,即胃扩张诱发的食管下括约肌(LOS)松弛。在去大脑、未麻醉的雪貂中,使用小型化测压组件测量食管、LOS和胃内压力。胃扩张(30毫升)诱发LOS松弛(相对于基线下降70±8%)。全身给药(0.2毫克/千克,静脉注射)或直接注射到后脑背表面(0.002毫克)的Δ9-THC,显著减弱了胃扩张诱发的LOS松弛的最低点以及达到最大反应的时间。用大麻素受体激动剂WIN 55,212-2(0.2毫克/千克,静脉注射)治疗后,观察到类似的最大效应增加。全身给药的Δ9-THC对胃扩张诱发的LOS松弛的作用被选择性大麻素1(CB1)受体拮抗剂SR141617A(1毫克/千克,静脉注射)逆转。由于这种反射是由迷走神经介导的,我们使用CB1受体抗血清和免疫细胞化学来确定其在雪貂迷走神经回路中的分布。CB1受体染色存在于最后区、孤束核(NTS)和结状神经节内的细胞体中。在NTS和迷走神经背运动核(DMN)内观察到强烈的终末样染色。结状神经节切除术或迷走神经切断术均未改变迷走神经复合体背侧的CB1受体终末样染色。逆行标记的投射至胃或LOS的DMN神经元在其胞体内不表达CB1受体。因此,NTS和DMN中的CB1受体染色并非源于初级迷走神经传入纤维或节前神经元。这些新发现表明,Δ9-THC可调节反射性LOS功能,最可能的作用部位是通过NTS内的CB1受体。Δ9-THC的这种作用可能对胃食管反流和其他上消化道疾病具有治疗意义。

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