Tyro3和Gas6与多发性硬化症患者的白质和髓鞘完整性有关。

IF 9.3 1区 医学 Q1 IMMUNOLOGY Journal of Neuroinflammation Pub Date : 2024-12-13 DOI:10.1186/s12974-024-03315-0
Igal Rosenstein, Lenka Novakova, Hlin Kvartsberg, Anna Nordin, Sofia Rasch, Elzbieta Rembeza, Sofia Sandgren, Clas Malmeström, Stefanie Fruhwürth, Markus Axelsson, Kaj Blennow, Henrik Zetterberg, Jan Lycke
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引用次数: 0

摘要

背景:Gas6/TAM (Tyro3, Axl和Mer)受体系统在实验动物模型中与脱髓鞘和延迟的再髓鞘形成有关,但在人类中的数据很少。我们旨在研究Gas6/TAM在多发性硬化症(MS)神经退行性过程中的作用。方法:通过一项前瞻性5年随访研究,采用酶联免疫吸附试验(ELISA)分析了复发-缓解型多发性硬化症(RRMS) (n = 40)、进展型多发性硬化症(PMS) (n = 20)和健康对照(HC) (n = 25)患者基线时脑脊液(CSF)中可溶性Gas6/TAM生物标志物。在基线、12个月和60个月的随访中,通过合成磁共振成像测量脑容量,包括髓磷脂含量(MyC)和白质(WM)。在多变量线性回归模型中研究了与脑容量变化的关系。在RRMS随访12个月时测定Gas6/TAM浓度,以评估治疗反应。结果:PMS组Tyro3、Axl和Gas6的基线浓度明显高于RRMS和HC组。经前症候群的Mer高于HC。Tyro3和Gas6与WM降低相关(β = 25.5, 95%可信区间[CI] [6.11-44.96, p = 0.012;β= 11.4,95% CI(0.42 - -22.4),分别为p = 0.042)和MyC(β= 7.95,95% CI [1.84 - -14.07], p = 0.012;β= 4.4,95% ci(1.04 - -7.75),在60个月分别p = 0.012)。在最后一次随访中,有证据表明髓鞘再生的患者有较低的基线可溶性Tyro3 (p = 0.033)和Gas6 (p = 0.014)。除Mer外,RRMS中Gas6/TAM浓度不随治疗变化。讨论:我们的数据表明,Gas6/TAM受体系统在影响脱髓鞘和无效髓鞘再生的神经退行性过程中的潜在作用。
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Tyro3 and Gas6 are associated with white matter and myelin integrity in multiple sclerosis.

Background: The Gas6/TAM (Tyro3, Axl, and Mer) receptor system has been implicated in demyelination and delayed remyelination in experimental animal models, but data in humans are scarce. We aimed to investigate the role of Gas6/TAM in neurodegenerative processes in multiple sclerosis (MS).

Methods: From a prospective 5-year follow-up study, soluble Gas6/TAM biomarkers were analyzed in cerebrospinal fluid (CSF) by enzyme-linked immunosorbent assay (ELISA) at baseline in patients with relapsing-remitting MS (RRMS) (n = 40), progressive MS (PMS) (n = 20), and healthy controls (HC) (n = 25). Brain volumes, including myelin content (MyC) and white matter (WM) were measured by synthetic magnetic resonance imaging at baseline, 12 months, and 60-month follow-up. Associations with brain volume changes were investigated in multivariable linear regression models. Gas6/TAM concentrations were also determined at 12 months follow-up in RRMS to assess treatment response.

Results: Baseline concentrations of Tyro3, Axl, and Gas6 were significantly higher in PMS vs. RRMS and HC. Mer was higher in PMS vs. HC. Tyro3 and Gas6 were associated with reduced WM (β = 25.5, 95% confidence interval [CI] [6.11-44.96, p = 0.012; β = 11.4, 95% CI [0.42-22.4], p = 0.042, respectively) and MyC (β = 7.95, 95%CI [1.84-14.07], p = 0.012; β = 4.4, 95%CI [1.04-7.75], p = 0.012 respectively) at 60 months. Patients with evidence of remyelination at last follow-up had lower baseline soluble Tyro3 (p = 0.033) and Gas6 (p = 0.014). Except Mer, Gas6/TAM concentrations did not change with treatment in RRMS.

Discussion: Our data indicate a potential role for the Gas6/TAM receptor system in neurodegenerative processes influencing demyelination and ineffective remyelination.

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来源期刊
Journal of Neuroinflammation
Journal of Neuroinflammation 医学-神经科学
CiteScore
15.90
自引率
3.20%
发文量
276
审稿时长
1 months
期刊介绍: The Journal of Neuroinflammation is a peer-reviewed, open access publication that emphasizes the interaction between the immune system, particularly the innate immune system, and the nervous system. It covers various aspects, including the involvement of CNS immune mediators like microglia and astrocytes, the cytokines and chemokines they produce, and the influence of peripheral neuro-immune interactions, T cells, monocytes, complement proteins, acute phase proteins, oxidative injury, and related molecular processes. Neuroinflammation is a rapidly expanding field that has significantly enhanced our knowledge of chronic neurological diseases. It attracts researchers from diverse disciplines such as pathology, biochemistry, molecular biology, genetics, clinical medicine, and epidemiology. Substantial contributions to this field have been made through studies involving populations, patients, postmortem tissues, animal models, and in vitro systems. The Journal of Neuroinflammation consolidates research that centers around common pathogenic processes. It serves as a platform for integrative reviews and commentaries in this field.
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