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鉴定 为多发性硬化症的一个新的潜在生物标志物。

Identification of as a New Potential Biomarker for Multiple Sclerosis.

机构信息

Department of Biomedical Sciences, University of Sassari, Sassari 07100, Italy.

Department of Medicine, Surgery and Pharmacy, University of Sassari, Sassari 07100, Italy.

出版信息

Cells. 2024 Oct 9;13(19):1668. doi: 10.3390/cells13191668.

Abstract

Multiple sclerosis (MS) is a demyelinating autoimmune disease characterized by early onset, for which the interaction of genetic and environmental factors is crucial. Dysregulation of the immune system as well as myelinization-de-myelinization has been shown to correlate with changes in RNA, including non-coding RNAs. Recently, circular RNAs (circRNAs) have emerged as a key player in the complex network of gene dysregulation associated with MS. Despite several efforts, the mechanisms driving circRNA regulation and dysregulation in MS still need to be properly elucidated. Here, we explore the panorama of circRNA expression in PBMCs purified from five newly diagnosed MS patients and five healthy controls (HCs) using the Arraystar Human circRNAs microarray. Experimental validation was then carried out in a validation cohort, and a possible correlation with disease severity was tested. We identified 64 differentially expressed circRNAs, 53 of which were downregulated in PBMCs purified from MS compared to the HCs. The discovery dataset was subsequently validated using qRT-PCR with an independent cohort of 20 RRMS patients and 20 HCs. We validated seven circRNAs differentially expressed in the RRMS group versus the HC group. , , , and were significantly upregulated in the MS group, while , , and were significantly downregulated; Among them, the expression level of was significantly decreased in patients showing a higher level of disability and in progressive forms of MS. We described the circRNAs expression profile of PBMCs in newly diagnosed MS patients and proposed as potential MS biomarker.

摘要

多发性硬化症(MS)是一种脱髓鞘自身免疫性疾病,其特征为发病早,遗传和环境因素的相互作用至关重要。免疫系统的失调以及髓鞘形成-脱髓鞘与 RNA 的变化有关,包括非编码 RNA。最近,环状 RNA(circRNA)已成为与 MS 相关的基因失调复杂网络中的关键参与者。尽管已经做了多项努力,但 MS 中 circRNA 调节和失调的机制仍需要得到适当阐明。在这里,我们使用 Arraystar Human circRNAs microarray 探索了从五名新诊断的 MS 患者和五名健康对照者(HC)中纯化的 PBMC 中 circRNA 表达的全景。然后在验证队列中进行了实验验证,并测试了与疾病严重程度的可能相关性。我们鉴定了 64 个差异表达的 circRNA,其中 53 个在 MS 患者的 PBMC 中与 HCs 相比下调。随后,使用 qRT-PCR 对包含 20 名 RRMS 患者和 20 名 HCs 的独立队列进行了验证。我们验证了 RRMS 组与 HC 组差异表达的七个 circRNA。在 MS 组中显著上调,而在 MS 组中显著下调;其中,在残疾程度较高和进展性 MS 患者中, 的表达水平显著降低。我们描述了新诊断 MS 患者 PBMC 中的 circRNAs 表达谱,并提出 作为潜在的 MS 生物标志物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0eff/11475351/3dfb2d7c9084/cells-13-01668-g001.jpg

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