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成像光体积描记术揭示的偏头痛患者中新型辣椒素诱导的微循环参数。

Novel capsaicin-induced parameters of microcirculation in migraine patients revealed by imaging photoplethysmography.

机构信息

Department of Computer Photonics and Videomatics, ITMO University, St. Petersburg, Russia.

Department of Neurology and Rehabilitation, Kazan State Medical University, Kazan, Russia.

出版信息

J Headache Pain. 2018 Jun 18;19(1):43. doi: 10.1186/s10194-018-0872-0.

Abstract

BACKGROUND

The non-invasive biomarkers of migraine can help to develop the personalized medication of this disorder. In testing of the antimigraine drugs the capsaicin-induced skin redness with activated TRPV1 receptors in sensory neurons associated with the release of the migraine mediator CGRP has already been widely used.

METHODS

Fourteen migraine patients (mean age 34.6 ± 10.2 years) and 14 healthy volunteers (mean age 29.9 ± 9.7 years) participated in the experiment. A new arrangement of imaging photoplethysmography recently developed by us was used here to discover novel sensitive parameters of dermal blood flow during capsaicin applications in migraine patients.

RESULTS

Blood pulsation amplitude (BPA) observed as optical-intensity waveform varying synchronously with heartbeat was used for detailed exploration of microcirculatory perfusion induced by capsicum patch application. The BPA signals, once having appeared after certain latent period, were progressively rising until being saturated. Capsaicin-induced high BPA areas were distributed unevenly under the patch, forming "hot spots." Interestingly the hot spots were much more variable in migraine patients than in the control group. In contrast to BPA, a slow component of waveforms related to the skin redness changed significantly less than BPA highlighting the latter parameter as the potential sensitive biomarker of capsaicin-induced activation of the blood flow. Thus, in migraine patients, there is a non-uniform (both in space and in time) reaction to capsaicin, resulting in highly variable openings of skin capillaries.

CONCLUSION

BPA dynamics measured by imaging photoplethysmography could serve as a novel sensitive non-invasive biomarker of migraine-associated changes in microcirculation.

摘要

背景

偏头痛的非侵入性生物标志物有助于制定这种疾病的个性化药物治疗方案。在测试抗偏头痛药物时,已经广泛使用与偏头痛介质 CGRP 释放相关的感觉神经元中激活的 TRPV1 受体的辣椒素诱导皮肤发红。

方法

14 名偏头痛患者(平均年龄 34.6±10.2 岁)和 14 名健康志愿者(平均年龄 29.9±9.7 岁)参加了实验。我们最近开发的一种新的成像光体积描记术安排用于在此处发现偏头痛患者在辣椒素应用过程中皮肤血流的新的敏感参数。

结果

作为与心跳同步变化的光强度波形观察到的血流脉动幅度(BPA)用于详细探索辣椒素贴片应用引起的微循环灌注。BPA 信号在经过一定的潜伏期后一旦出现,就会逐渐上升直至饱和。辣椒素诱导的高 BPA 区域在贴片下分布不均匀,形成“热点”。有趣的是,与对照组相比,偏头痛患者中的热点变化更大。与 BPA 相比,与皮肤发红相关的波形的缓慢成分变化明显较小,突出了后者作为辣椒素诱导的血流激活的潜在敏感生物标志物的参数。因此,在偏头痛患者中,对辣椒素的反应不均匀(无论是在空间上还是在时间上),导致皮肤毛细血管的高度可变开放。

结论

通过成像光体积描记术测量的 BPA 动力学可以作为偏头痛相关微循环变化的新型敏感非侵入性生物标志物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d16a/6005996/e9b600d0aab9/10194_2018_872_Fig1_HTML.jpg

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