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Degradation of endocannabinoids in chronic migraine and medication overuse headache.

机译:慢性偏头痛中内源性大麻素的降解和药物过度使用性头痛。

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Chronic migraine (CM) is frequently associated with medication overuse headache (MOH). The endocannabinoid system plays a role in modulating pain including headache and is involved in the common neurobiological mechanism underlying drug addiction and reward system. Anandamide (AEA) and 2-arachidonoylglycerol are the most biologically active endocannabinoids, which bind to both central and peripheral cannabinoid receptors. The level of AEA in the extracellular space is controlled by cellular uptake via a specific AEA membrane transporter (AMT), followed by intracellular degradation by the enzyme AEA hydrolase (fatty acid amide hydrolase, FAAH). AMT and FAAH have also been characterized in human platelets. We assayed the activity of AMT and of FAAH in platelets isolated from four groups of subjects: MOH, CM without MOH, episodic migraine and controls. AMT and FAAH were significantly reduced in CM and MOH, compared to either controls or episodic migraine group. This latter finding was observed in both males and females with CM and MOH. Changes observed in the biochemical mechanisms degrading endogenous cannabinoids may reflect an adaptative behaviour induced by chronic headache and/or drug overuse.
机译:慢性偏头痛(CM)通常与药物过度使用性头痛(MOH)相关。内源性大麻素系统在调节疼痛(包括头痛)中起作用,并且参与了成瘾和奖励系统所基于的常见神经生物学机制。 Anandamide(AEA)和2-花生四烯酸甘油酯是最具生物活性的内源性大麻素,可与中枢和外周大麻素受体结合。通过特定的AEA膜转运蛋白(AMT)吸收细胞,然后通过AEA水解酶(脂肪酸酰胺水解酶,FAAH)降解细胞,控制细胞外空间中AEA的水平。 AMT和FAAH也已在人类血小板中表征。我们测定了从四组受试者中分离出的血小板中AMT和FAAH的活性:MOH,无MOH的CM,发作性偏头痛和对照。与对照组或发作性偏头痛组相比,CM和MOH中的AMT和FAAH显着降低。在患有CM和MOH的男性和女性中均观察到后一个发现。在降解内源性大麻素的生化机制中观察到的变化可能反映了慢性头痛和/或药物滥用引起的适应行为。

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