Identification and characterisation of temporal abundance of microRNAs in synovial fluid from an experimental equine model of osteoarthritis.

IF 2.4 2区 农林科学 Q1 VETERINARY SCIENCES
Marie Walters, Kerstin Skovgaard, Peter M H Heegaard, Yongxiang Fang, Yalda A Kharaz, Louise Bundgaard, Lene T Skovgaard, Henrik E Jensen, Pia H Andersen, Mandy J Peffers, Stine Jacobsen
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引用次数: 0

Abstract

Background: MicroRNAs, a class of small noncoding RNAs, serve as post-transcriptional regulators of gene expression and are present in a stable and quantifiable form in biological fluids. MicroRNAs may influence intra-articular responses and the course of disease, but very little is known about their temporal changes in osteoarthritis.

Objectives: To identify miRNAs and characterise the temporal changes in their abundance in SF from horses with experimentally induced osteoarthritis. We hypothesised that the abundance of miRNA would change during disease progression.

Study design: In vivo experiments.

Methods: RNA extracted from synovial fluid obtained sequentially (Day 0, 28 and 70) from nine horses with experimentally induced osteoarthritis was subjected to small RNA sequencing using the Illumina Hiseq 4000 sequencing platform. Differentially abundant miRNAs underwent further validation and mapping of temporal abundance (Day 0, 14, 17, 21, 28, 35, 42, 49, 56, 63 and 70 days after osteoarthritis induction) by microfluidic reverse transcription quantitative real-time PCR. Bioinformatic analyses were performed to predict potential biological associations and target genes of the differentially abundant microRNAs.

Results: Small RNA sequencing revealed 61 differentially abundant microRNAs at an early osteoarthritis stage (Day 28), and subsequent reverse transcription quantitative real-time PCR analysis validated 20 of these. Significant biological functions of the differentially abundant microRNAs were apoptosis, necrosis, cell proliferation and cell invasion. Following validation, four microRNAs (miRNA-199b-3p, miRNA-139-5p, miRNA-1839 and miRNA-151-5p) were detected in more than 50% of the synovial fluid samples and had higher abundance in osteoarthritic than in control joints.

Main limitations: Limited sample size.

Conclusion: This is the first study to determine longitudinal changes in synovial fluid microRNA abundance in an equine model of osteoarthritis. Larger studies are needed in naturally occurring osteoarthritis to interrogate putative changes identified by this study.

鉴定和表征从实验马骨关节炎模型的滑液中微小rna的时间丰度。
背景:MicroRNAs是一类小的非编码rna,作为基因表达的转录后调节因子,以稳定和可量化的形式存在于生物体液中。microrna可能影响关节内反应和疾病进程,但对其在骨关节炎中的时间变化知之甚少。目的:鉴定mirna并表征实验性骨关节炎马SF中mirna丰度的时间变化。我们假设miRNA的丰度会在疾病进展过程中发生变化。研究设计:体内实验。方法:利用Illumina Hiseq 4000测序平台,从9匹实验性骨关节炎马的滑液(第0、28和70天)中提取RNA,进行小RNA测序。通过微流控反转录实时定量PCR进一步验证和绘制差异丰度miRNAs的时间丰度图(骨关节炎诱导后第0、14、17、21、28、35、42、49、56、63和70天)。进行生物信息学分析以预测潜在的生物学关联和差异丰富的microrna的靶基因。结果:小RNA测序显示,在骨关节炎早期(第28天)有61个差异丰富的microrna,随后的反转录定量实时PCR分析证实了其中的20个。差异富集microrna的显著生物学功能是凋亡、坏死、细胞增殖和细胞侵袭。经过验证,在超过50%的滑液样本中检测到四种microrna (miRNA-199b-3p, miRNA-139-5p, miRNA-1839和miRNA-151-5p),并且在骨关节炎关节中比在对照关节中具有更高的丰度。主要局限性:样本量有限。结论:这是第一个确定马骨关节炎模型中滑液microRNA丰度纵向变化的研究。需要对自然发生的骨关节炎进行更大规模的研究,以质疑本研究确定的推定变化。
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来源期刊
Equine Veterinary Journal
Equine Veterinary Journal 农林科学-兽医学
CiteScore
5.10
自引率
13.60%
发文量
161
审稿时长
6-16 weeks
期刊介绍: Equine Veterinary Journal publishes evidence to improve clinical practice or expand scientific knowledge underpinning equine veterinary medicine. This unrivalled international scientific journal is published 6 times per year, containing peer-reviewed articles with original and potentially important findings. Contributions are received from sources worldwide.
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