Department of Neuropharmacology, Valdman Institute of Pharmacology, Pavlov First Saint Petersburg State Medical University, Saint Petersburg, Russia.
Laboratory of Cortico-Visceral Physiology, Pavlov Institute of Physiology of the Russian Academy of Sciences, Saint Petersburg, Russia.
Sci Rep. 2023 Jul 24;13(1):11928. doi: 10.1038/s41598-023-39171-w.
Among numerous approaches to the study of migraine, the nitroglycerin (NTG) model occupies a prominent place, but there is relatively insufficient information about how NTG affects intracranial vessels. In this study we aim to assess the effects of NTG on blood-flow parameters in meningeal vessels measured by imaging photoplethysmography (iPPG) in animal experiments. An amplitude of the pulsatile component (APC) of iPPG waveform was assessed before and within 2.5 h after the NTG administration in saline (n = 13) or sumatriptan (n = 12) pretreatment anesthetized rats in conditions of a closed cranial window. In animals of both groups, NTG caused a steady decrease in blood pressure. In 7 rats of the saline group, NTG resulted in progressive increase in APC, whereas decrease in APC was observed in other 6 rats. In all animals in the sumatriptan group, NTG administration was accompanied exclusively by an increase in APC. Diametrically opposite changes in APC due to NTG indicate a dual effect of this drug on meningeal vasomotor activity. Sumatriptan acts as a synergist of the NTG vasodilating action. The results we obtained contribute to understanding the interaction of vasoactive drugs in the study of the headache pathophysiology and methods of its therapy.
在众多偏头痛研究方法中,硝酸甘油(NTG)模型占有突出地位,但关于 NTG 如何影响颅内血管的信息相对较少。在这项研究中,我们旨在通过动物实验中的成像光体积描记法(iPPG)评估 NTG 对脑膜血管血流参数的影响。在闭合颅窗条件下,对盐水(n=13)或舒马曲坦(n=12)预处理麻醉大鼠在 NTG 给药前和给药后 2.5 小时内评估 iPPG 波形的脉动成分(APC)幅度。在两组动物中,NTG 导致血压持续下降。在盐水组的 7 只大鼠中,NTG 导致 APC 逐渐增加,而在其他 6 只大鼠中,APC 减少。在舒马曲坦组的所有动物中,NTG 给药仅伴有 APC 的增加。由于 NTG 而导致的 APC 截然相反的变化表明该药物对脑膜血管舒缩活动具有双重作用。舒马曲坦是 NTG 血管扩张作用的协同剂。我们获得的结果有助于理解血管活性药物在头痛病理生理学研究及其治疗方法中的相互作用。