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压力反射敏感性与精神病患者海马神经胶质增生和脱髓鞘标志物相关。

Baroreflex sensitivity is associated with markers of hippocampal gliosis and dysmyelination in patients with psychosis.

作者信息

Mueller Bridget, Robinson-Papp Jessica, Suprun Maria, Suarez-Farinas Mayte, Lotan Eyal, Gonen Oded, Malaspina Dolores

机构信息

Center for Headache and Facial Pain, Department of Neurology, Icahn School of Medicine at Mount Sinai, 5 East 98th Street, Box 1139, New York City, NY, 10029, USA.

Department of Neurology, Icahn School of Medicine at Mount Sinai, New York City, NY, USA.

出版信息

Clin Auton Res. 2023 Apr;33(2):101-110. doi: 10.1007/s10286-023-00929-x. Epub 2023 Mar 6.

Abstract

PURPOSE

Hippocampal dysfunction plays a key role in the pathology of psychosis. Given hippocampal sensitivity to changes in cerebral perfusion, decreased baroreflex function could contribute to psychosis pathogenesis. This study had two aims: (1) To compare baroreflex sensitivity in participants with psychosis to two control groups: participants with a nonpsychotic affective disorder and participants with no history of psychiatric disease; (2) to examine the relationship between hippocampal neurometabolites and baroreflex sensitivities in these three groups. We hypothesized that baroreflex sensitivity would be reduced and correlated with hippocampal neurometabolite levels in participants with psychosis, but not in the control groups.

METHODS

We assessed baroreflex sensitivity during the Valsalva maneuver separated into vagal and adrenergic components. Metabolite concentrations for cellular processes were quantitated in the entire multivoxel hippocampus using H-MR spectroscopic (MRS) imaging and were compared with baroreflex sensitivities in the three groups.

RESULTS

Vagal baroreflex sensitivity (BRS-V) was reduced in a significantly larger proportion of participants with psychosis compared with patients with nonpsychotic affective disorders, whereas participants with psychosis had increased adrenergic baroreflex sensitivity (BRS-A) compared with participants with no history of psychiatric disease. Only in psychotic cases were baroreflex sensitivities associated with hippocampal metabolite concentrations. Specifically, BRS-V was inversely correlated with myo-inositol, a marker of gliosis, and BRS-A was positively correlated with energy dependent dysmyelination (choline, creatine) and excitatory activity (GLX).

CONCLUSIONS

Abnormal baroreflex sensitivity is common in participants with psychosis and is associated with MRS markers of hippocampal pathology. Future longitudinal studies are needed to examine causality.

摘要

目的

海马功能障碍在精神病病理学中起关键作用。鉴于海马对脑灌注变化敏感,压力反射功能降低可能导致精神病发病机制。本研究有两个目的:(1)比较精神病患者与两个对照组(非精神病性情感障碍患者和无精神疾病史的参与者)的压力反射敏感性;(2)研究这三组中海马神经代谢物与压力反射敏感性之间的关系。我们假设精神病患者的压力反射敏感性会降低,且与海马神经代谢物水平相关,而对照组则不然。

方法

我们在瓦尔萨尔瓦动作期间评估压力反射敏感性,分为迷走神经和肾上腺素能成分。使用氢磁共振波谱(MRS)成像对整个多体素海马体中细胞过程的代谢物浓度进行定量,并与三组的压力反射敏感性进行比较。

结果

与非精神病性情感障碍患者相比,精神病患者中迷走神经压力反射敏感性(BRS-V)降低的比例显著更大,而与无精神疾病史的参与者相比,精神病患者的肾上腺素能压力反射敏感性(BRS-A)增加。仅在精神病病例中,压力反射敏感性与海马代谢物浓度相关。具体而言,BRS-V与胶质增生标志物肌醇呈负相关,BRS-A与能量依赖性脱髓鞘(胆碱、肌酸)和兴奋性活动(GLX)呈正相关。

结论

压力反射敏感性异常在精神病患者中很常见,并且与海马病理学的MRS标志物相关。未来需要进行纵向研究以检验因果关系。

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