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证据表明,大麻素 CB1 受体通过两种相反的机制来调节眼内压。

Evidence that cannabinoid CB1 receptors regulate intraocular pressure via two opposing mechanisms.

机构信息

The Gill Center for Biomolecular Science and the Department of Psychological and Brain Sciences, Indiana University, Bloomington, IN, 47405, USA.

Institute of Medical Sciences, University of Aberdeen, Aberdeen, Scotland, United Kingdom.

出版信息

Exp Eye Res. 2020 Nov;200:108241. doi: 10.1016/j.exer.2020.108241. Epub 2020 Sep 14.

Abstract

The cannabinoid signaling system regulates intraocular pressure (IOP) in the mouse via a complex system that includes three receptors: CB1, GPR18 and GPR119. In each case, activating the receptor lowers IOP, but CB1 receptors are found both at sites of aqueous humor inflow and outflow. As such, knockout mice for any of these receptors would be expected to have higher-than average, or at least unchanged, intraocular pressure. The current study investigates the unexpected observation that CB1 knockout mice have lower pressure than wild type counterparts by testing various regulators of cannabinoid signaling in murine models of IOP. We now report that a CB1 antagonist has differential effects on IOP: SR141716 raises IOP in standard light cycle (SLC) but lowers IOP in reverse light cycle (RLC). This is mimicked by ABD1085, a negative allosteric modulator of CB1. CB1 inhibitors lower IOP in both normotensive and hypertensive mouse eyes. The pressure-lowering effect is absent in CB1 knockout mice. IOP rebounds after the end of treatment but shows no sign of desensitization with daily treatment for a week. Unlike the positive cannabinoid effect, antagonist effects are not sex-dependent. We propose that there are two mechanisms of action for CB1, one that lowers IOP upon activation and a second with inverse sign that lowers IOP when CB1 is antagonized. The relatively lower pressure in CB1 knockout mouse eyes suggests that this second negative regulation of IOP is dominant.

摘要

大麻素信号系统通过一个复杂的系统调节小鼠眼内压(IOP),该系统包括三个受体:CB1、GPR18 和 GPR119。在每种情况下,激活受体都会降低 IOP,但 CB1 受体存在于房水流入和流出的部位。因此,这些受体中的任何一种的敲除小鼠的眼内压预计都会高于平均水平,或者至少保持不变。本研究通过测试各种大麻素信号转导调节剂在 IOP 的小鼠模型中,对 CB1 敲除小鼠的眼内压低于野生型对照的意外观察结果进行了研究。我们现在报告说,CB1 拮抗剂对 IOP 有不同的影响:SR141716 在标准光照周期(SLC)中升高 IOP,但在反向光照周期(RLC)中降低 IOP。ABD1085,一种 CB1 的负变构调节剂,模拟了这种情况。CB1 抑制剂在正常眼压和高血压小鼠眼中均降低 IOP。这种降压作用在 CB1 敲除小鼠中不存在。治疗结束后 IOP 会反弹,但在一周的每日治疗中没有出现脱敏迹象。与阳性大麻素效应不同,拮抗剂效应不受性别依赖性影响。我们提出 CB1 有两种作用机制,一种是在激活时降低 IOP,另一种是拮抗时具有相反符号的机制降低 IOP。CB1 敲除小鼠眼中相对较低的压力表明,这种对 IOP 的第二种负调节占主导地位。

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