McAlpine Sarah M, Roberts Sarah E, Hargreaves Breanna K V, Bullock Claire, Ramsey Suzanne, Stringer Elizabeth, Lang Bianca, Huber Adam, György Bence, Erdélyi Fruzsina, Issekutz Thomas B, Dérfalvi Beáta
S.M. McAlpine, PhD, S.E. Roberts, BSc, B.K.V. Hargreaves, MSc, C. Bullock, BSc, S. Ramsey, MD, E. Stringer, MD, B. Lang, MD, A. Huber, MD, T.B. Issekutz, MD, Department of Pediatrics, Dalhousie University, Halifax, Nova Scotia, Canada;
S.M. McAlpine, PhD, S.E. Roberts, BSc, B.K.V. Hargreaves, MSc, C. Bullock, BSc, S. Ramsey, MD, E. Stringer, MD, B. Lang, MD, A. Huber, MD, T.B. Issekutz, MD, Department of Pediatrics, Dalhousie University, Halifax, Nova Scotia, Canada.
J Rheumatol. 2023 Feb;50(2):227-235. doi: 10.3899/jrheum.220160. Epub 2022 Jul 15.
To evaluate microRNA expression in synovial fluid (SF), plasma, and leukocytes from patients with juvenile idiopathic arthritis (JIA).
MicroRNA expression in pooled JIA plasma and SF was assessed by absolute quantitative droplet digital PCR array. The results were validated in individual patient samples. MicroRNA content in leukocytes and extracellular vesicles was evaluated by real-time PCR in JIA blood and SF. Blood microRNA expression was compared with healthy controls (HCs). Principal component analysis was used to profile JIA plasma and SF microRNAs, and the potential biological consequences of microRNA dysregulation were investigated by pathway analysis.
MiR-15a-5p and miR-409-3p levels were higher in JIA plasma than in HC plasma. JIA SF contained elevated levels of miR-21-5p, miR-27a-3p, miR-146b-5p, miR-155-5p, and miR-423-5p, and decreased miR-192-5p and miR-451a, compared to JIA plasma. Extracellular vesicle analysis demonstrated variable encapsulation among selected microRNAs, with only miR-155-5p being represented substantially in extracellular vesicles. SF leukocytes also had higher expression of miR-21-5p, miR-27a-3p, miR-146b-5p, and miR-155-5p, and lower expression of miR-409-3p and miR-451a, relative to blood. No differences were observed between JIA and HC blood leukocytes. Clusters of microRNAs were commonly altered in JIA joint fluid and leukocytes compared to JIA blood samples. In silico analysis predicted that differentially expressed microRNAs in JIA target the transforming growth factor (TGF)-β pathway.
The expression of multiple microRNAs is dysregulated in JIA both locally and systemically, which may inhibit the TGF-β pathway. These findings advance our knowledge of JIA immunopathogenesis and may lead to the development of targeted therapies.
评估幼年特发性关节炎(JIA)患者滑液(SF)、血浆及白细胞中的微小RNA表达情况。
通过绝对定量液滴数字PCR阵列评估JIA混合血浆和SF中的微小RNA表达。结果在个体患者样本中得到验证。通过实时PCR评估JIA血液和SF中白细胞及细胞外囊泡中的微小RNA含量。将血液微小RNA表达与健康对照(HC)进行比较。采用主成分分析对JIA血浆和SF微小RNA进行分析,并通过通路分析研究微小RNA失调的潜在生物学后果。
JIA血浆中miR-15a-5p和miR-409-3p水平高于HC血浆。与JIA血浆相比,JIA SF中miR-21-5p、miR-27a-3p、miR-146b-5p、miR-155-5p和miR-423-5p水平升高,miR-192-5p和miR-451a水平降低。细胞外囊泡分析显示,所选微小RNA的包封情况各不相同,只有miR-155-5p在细胞外囊泡中大量存在。相对于血液,SF白细胞中miR-21-5p、miR-27a-3p、miR-146b-5p和miR-155-5p表达也较高,miR-409-3p和miR-451a表达较低。JIA和HC血液白细胞之间未观察到差异。与JIA血液样本相比,JIA关节液和白细胞中的微小RNA簇通常发生改变。计算机分析预测,JIA中差异表达的微小RNA靶向转化生长因子(TGF)-β通路。
JIA中多种微小RNA的表达在局部和全身均失调,这可能抑制TGF-β通路。这些发现增进了我们对JIA免疫发病机制的了解,并可能促成靶向治疗的发展。