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纤维肌痛患者体内的抗卫星胶质细胞IgG抗体与症状严重程度以及丘脑和喙前扣带回皮质中的代谢物浓度有关。

Anti-satellite glia cell IgG antibodies in fibromyalgia patients are related to symptom severity and to metabolite concentrations in thalamus and rostral anterior cingulate cortex.

作者信息

Fanton Silvia, Menezes Joana, Krock Emerson, Sandström Angelica, Tour Jeanette, Sandor Katalin, Jurczak Alexandra, Hunt Matthew, Baharpoor Azar, Kadetoff Diana, Jensen Karin B, Fransson Peter, Ellerbrock Isabel, Sitnikov Rouslan, Svensson Camilla I, Kosek Eva

机构信息

Department of Clinical Neuroscience, Karolinska Institutet, Stockholm, Sweden; Department of Neuroradiology, Karolinska University Hospital, Stockholm, Sweden.

Department of Physiology and Pharmacology, Center for Molecular Medicine, Karolinska Institutet, Stockholm, Sweden.

出版信息

Brain Behav Immun. 2023 Nov;114:371-382. doi: 10.1016/j.bbi.2023.09.003. Epub 2023 Sep 6.

Abstract

Recent translational work has shown that fibromyalgia might be an autoimmune condition with pathogenic mechanisms mediated by a peripheral, pain-inducing action of immunoglobulin G (IgG) antibodies binding to satellite glia cells (SGC) in the dorsal root ganglia. A first clinical assessment of the postulated autoimmunity showed that fibromyalgia subjects (FMS) had elevated levels of antibodies against SGC (termed anti-SGC IgG) compared to healthy controls and that anti-SGC IgG were associated with a more severe disease status. The overarching aim of the current study was to determine whether the role of anti-SGC IgG in driving pain is exclusively through peripheral mechanisms, as indirectly shown so far, or could be attributed also to central mechanisms. To this end, we wanted to first confirm, in a larger cohort of FMS, the relation between anti-SGC IgG and pain-related clinical measures. Secondly, we explored the associations of these autoantibodies with brain metabolite concentrations (assessed via magnetic resonance spectroscopy, MRS) and pressure-evoked cerebral pain processing (assessed via functional magnetic resonance imaging, fMRI) in FMS. Proton MRS was performed in the thalamus and rostral anterior cingulate cortex (rACC) of FMS and concentrations of a wide spectrum of metabolites were assessed. During fMRI, FMS received individually calibrated painful pressure stimuli corresponding to low and high pain intensities. Our results confirmed a positive correlation between anti-SGC IgG and clinical measures assessing condition severity. Additionally, FMS with high anti-SGC IgG levels had higher pain intensity and a worse disease status than FMS with low anti-SGC IgG levels. Further, anti-SGC IgG levels negatively correlated with metabolites such as scyllo-inositol in thalamus and rACC as well as with total choline and macromolecule 12 in thalamus, thus linking anti-SGC IgG levels to the concentration of metabolites in the brain of FMS. However, anti-SGC IgG levels in FMS were not associated with the sensitivity to pressure pain or the cerebral processing of evoked pressure pain. Taken together, our results suggest that anti-SGC IgG might be clinically relevant for spontaneous, non-evoked pain. Our current and previous translational and clinical findings could provide a rationale to try new antibody-related treatments in FMS.

摘要

近期的转化研究表明,纤维肌痛可能是一种自身免疫性疾病,其致病机制由免疫球蛋白G(IgG)抗体与背根神经节卫星神经胶质细胞(SGC)结合产生的外周致痛作用介导。对假定的自身免疫性进行的首次临床评估显示,与健康对照相比,纤维肌痛患者(FMS)体内抗SGC抗体(称为抗SGC IgG)水平升高,且抗SGC IgG与更严重的疾病状态相关。本研究的总体目标是确定抗SGC IgG在引发疼痛中的作用是否仅通过外周机制(如目前间接显示的那样),还是也可归因于中枢机制。为此,我们首先想在更大的FMS队列中确认抗SGC IgG与疼痛相关临床指标之间的关系。其次,我们探讨了这些自身抗体与FMS患者脑代谢物浓度(通过磁共振波谱法,MRS评估)和压力诱发的脑疼痛处理(通过功能磁共振成像,fMRI评估)之间的关联。对FMS患者的丘脑和喙前扣带回皮质(rACC)进行了质子MRS检查,并评估了多种代谢物的浓度。在fMRI期间,FMS患者接受了分别校准的对应低强度和高强度疼痛的压力刺激。我们的结果证实了抗SGC IgG与评估病情严重程度的临床指标之间存在正相关。此外,抗SGC IgG水平高的FMS患者比抗SGC IgG水平低的FMS患者疼痛强度更高,疾病状态更差。此外,抗SGC IgG水平与丘脑和rACC中的 scyllo - 肌醇等代谢物以及丘脑中的总胆碱和大分子12呈负相关,从而将抗SGC IgG水平与FMS患者大脑中的代谢物浓度联系起来。然而,FMS患者的抗SGC IgG水平与压力疼痛敏感性或诱发压力疼痛的脑处理无关。综上所述,我们的结果表明抗SGC IgG可能与自发性、非诱发疼痛在临床上相关。我们目前和以前的转化及临床研究结果可为尝试在FMS中采用新的抗体相关治疗方法提供理论依据。

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