TY - JOUR
T1 - Identification and characterisation of temporal abundance of microRNAs in synovial fluid from an experimental equine model of osteoarthritis
AU - Walters, Marie
AU - Skovgaard, Kerstin
AU - Heegaard, Peter M. H.
AU - Fang, Yongxiang
AU - Kharaz, Yalda A.
AU - Bundgaard, Louise
AU - Skovgaard, Lene T.
AU - Jensen, Henrik E.
AU - Andersen, Pia H.
AU - Peffers, Mandy J.
AU - Jacobsen, Stine
PY - 2025
Y1 - 2025
N2 - BackgroundMicroRNAs, 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.ObjectivesTo 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 designIn vivo experiments.MethodsRNA 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.ResultsSmall 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 limitationsLimited sample size.ConclusionThis 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.
AB - BackgroundMicroRNAs, 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.ObjectivesTo 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 designIn vivo experiments.MethodsRNA 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.ResultsSmall 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 limitationsLimited sample size.ConclusionThis 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.
KW - horse
KW - microRNA
KW - osteoarthritis
KW - post-transcriptional gene regulation
KW - reverse transcription quantitative polymerase chain reaction
KW - small RNA sequencing
KW - synovial fluid
KW - horse
KW - microRNA
KW - osteoarthritis
KW - post-transcriptional gene regulation
KW - reverse transcription quantitative polymerase chain reaction
KW - small RNA sequencing
KW - synovial fluid
UR - https://res.slu.se/id/publ/140188
U2 - 10.1111/evj.14456
DO - 10.1111/evj.14456
M3 - Journal article
C2 - 39775906
SN - 0425-1644
VL - 57
SP - 1138
EP - 1150
JO - Equine Veterinary Journal
JF - Equine Veterinary Journal
IS - 4
ER -