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有先兆偏头痛患者的血流介导扩张增加。

Patients with migraine with aura have increased flow mediated dilation.

机构信息

Neurologia Clinica, Università Campus Bio-Medico, Roma, Italy.

出版信息

BMC Neurol. 2010 Mar 10;10:18. doi: 10.1186/1471-2377-10-18.

Abstract

BACKGROUND

Endothelium-derived nitric oxide (NO) mediates the arterial dilation following a flow increase (i.e. flow-mediated dilation, FMD), easily assessed in the brachial artery. NO is also involved in cerebral hemodynamics and it is supposed to trigger vascular changes occurring during migraine. This study aimed at investigating whether migraine patients present an altered response to NO also in the peripheral artery system.

METHODS

We enrolled 21 migraineurs (10 with aura [MwA], 11 without aura [MwoA]), and 13 controls. FMD was evaluated with ultrasound in all subjects by measuring the percentage increase of the brachial artery diameter induced by hyperaemia reactive to sustained cuff inflation around the arm above systolic pressure. FMD values were then normalized for shear stress.

RESULTS

Normalized FMD values were higher in patients with MwA (28.5 10-2%.s) than in controls (9.0 10-2%.s) and patients with MwoA (13.7 10-2%.s) (p < 0.001). FMD was over the median value (19%) in 23.1% of controls, in 45.5% of the MwoA patients, and in 90% of the MwA patients.

CONCLUSIONS

Migraineurs with aura present an excessive arterial response to hyperaemia, likely as an effect of an increased sensitivity to endothelium-derived nitric oxide. This phenomenon observed peripherally might reflect similar characteristics in the cerebral circulation.

摘要

背景

内皮衍生的一氧化氮(NO)介导了血流增加后的动脉扩张(即血流介导的扩张,FMD),这在肱动脉中很容易评估。NO 也参与了脑血流动力学,据推测它会引发偏头痛期间发生的血管变化。本研究旨在调查偏头痛患者的外周动脉系统是否也存在对 NO 的反应改变。

方法

我们招募了 21 名偏头痛患者(10 名有先兆 [MwA],11 名无先兆 [MwoA])和 13 名对照者。所有受试者均通过超声测量肱动脉直径在手臂上方袖带充气引起的充血反应中的百分比增加,以评估 FMD。然后将 FMD 值归一化为切应力。

结果

MwA 患者(28.5±10-2%.s)的归一化 FMD 值高于对照组(9.0±10-2%.s)和 MwoA 患者(13.7±10-2%.s)(p<0.001)。23.1%的对照组、45.5%的 MwoA 患者和 90%的 MwA 患者的 FMD 值超过中位数(19%)。

结论

有先兆的偏头痛患者对充血表现出过度的动脉反应,可能是由于对内皮衍生的一氧化氮的敏感性增加所致。这种在周围观察到的现象可能反映了大脑循环中的类似特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5233/2848147/23380f60bf22/1471-2377-10-18-1.jpg

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