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暴露于寒冷环境下揭示了纤维肌痛综合征的潜在生物标志物,这些标志物反映了机体对压力的交感神经反应不足。

Exposure to Cold Unmasks Potential Biomarkers of Fibromyalgia Syndrome Reflecting Insufficient Sympathetic Responses to Stress.

机构信息

Cognitive Neuroimaging Unit, Minneapolis VA Health Care System.

Departments of Psychiatry.

出版信息

Clin J Pain. 2019 May;35(5):407-419. doi: 10.1097/AJP.0000000000000695.

Abstract

OBJECTIVES

Fibromyalgia syndrome (FMS) is a chronically painful condition whose symptoms are widely reported to be exacerbated by stress. We hypothesized that female patients with FMS differ from pain-free female controls in their sympathetic responses, a fact that may unmask important biomarkers and factors that contribute to the etiology of FMS.

MATERIALS AND METHODS

In a pilot study, blood pressure (BP), skin temperature, thermogenic activity, circulating glucose, and pain sensitivity of 13 individuals with FMS and 11 controls at room temperature (24°C) were compared with that after exposure to cold (19°C).

RESULTS

When measured at 24°C, BP, skin temperature, blood glucose, and brown adipose tissue (BAT) activity, measured using F-fluorodeoxyglucose positron-emission tomography/computed tomography, did not differ between controls and individuals with FMS. However, after cold exposure (19°C), BP and BAT activity increased in controls but not in individuals with FMS; skin temperature on the calf and arm decreased in controls more than in individiuals with FMS; and circulating glucose was lower in individiuals with FMS than in controls. Pain sensitivity did not change during the testing interval in response to cold.

DISCUSSION

The convergence of the effect of cold on 4 relatively simple measures of thermogenic, cardiovascular, and metabolic activity, each regulated by sympathetic activity, strongly indicate that individuals with FMS have impaired sympathetic responses to stress that are observable and highly significant even when measured in extraordinarily small sample populations. If insufficient sympathetic responses to stress are linked to FMS, stress may unmask and maximize these potential clinical biomarkers of FMS and be related to its etiology.

摘要

目的

纤维肌痛综合征(FMS)是一种慢性疼痛疾病,其症状广泛报道受到压力的加剧。我们假设 FMS 女性患者与无疼痛的女性对照组在其交感反应方面存在差异,这一事实可能揭示了导致 FMS 发病的重要生物标志物和因素。

材料和方法

在一项初步研究中,比较了 13 名 FMS 患者和 11 名对照组在室温(24°C)下的血压(BP)、皮肤温度、产热活性、循环葡萄糖和疼痛敏感性,以及暴露于寒冷(19°C)后的变化。

结果

在 24°C 下测量时,BP、皮肤温度、血糖和使用 F-氟脱氧葡萄糖正电子发射断层扫描/计算机断层扫描测量的棕色脂肪组织(BAT)活性在对照组和 FMS 患者之间没有差异。然而,在寒冷暴露(19°C)后,BP 和 BAT 活性在对照组中增加,但在 FMS 患者中没有增加;对照组小腿和手臂的皮肤温度下降幅度大于 FMS 患者;FMS 患者的循环葡萄糖水平低于对照组。在寒冷期间,疼痛敏感性在测试间隔内没有变化。

讨论

寒冷对产热、心血管和代谢活动的 4 种相对简单的测量方法的影响的收敛,每种方法都受交感神经活动的调节,强烈表明 FMS 患者对压力的交感反应受损,即使在样本量非常小的人群中测量,这种受损也是明显且高度显著的。如果对压力的交感反应不足与 FMS 有关,那么压力可能会揭示并最大化这些 FMS 的潜在临床生物标志物,并与它的发病机制有关。

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Chronic Pain and Chronic Stress: Two Sides of the Same Coin?慢性疼痛与慢性压力:同一硬币的两面?
Chronic Stress (Thousand Oaks). 2017 Feb;1. doi: 10.1177/2470547017704763. Epub 2017 Jun 8.
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Fibromyalgia: Timely diagnosis and treatment options.
Nurse Pract. 2016 Sep 22;41(9):37-43. doi: 10.1097/01.NPR.0000490394.96969.0d.

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