医学
肌炎
皮肌炎
骨骼肌
凝集素
肌肉组织
细胞因子
内科学
内分泌学
炎症
病理
活检
肌肉活检
免疫学
生物
细胞凋亡
生物化学
作者
Tereza Kropáčková,Lucia Vernerová,Hana Štorkánová,Veronika Horváthová,Martina Vokurková,Martin Klein,Sabína Oreská,Maja Špiritović,Barbora Heřmánková,Kateřina Kubínová,Lucie Andrés Cerezo,Olga Kryštůfková,H. Mann,Jozef Ukropec,Barbara Ukropcová,Josef Zámečnı́k,Michal Tomčík,Jiří Vencovský,Ladislav Šenolt
标识
DOI:10.55563/clinexprheumatol/k3vtg5
摘要
OBJECTIVES The aim of this cross-sectional study was to explore the circulating and skeletal muscle expression of clusterin (CLU) in inflammatory myopathies (IIM) and its potential implication in pathogenetic mechanisms of the disease. METHODS A total of 85 IIM patients and 86 healthy controls (HC) were recruited. In addition, 20 IIM patients and 21 HC underwent a muscle biopsy. Circulating CLU was measured by ELISA. Serum cytokine profile of patients and HC was assessed by Cytokine 27-plex Assay. Immunohistochemical localisation of CLU was assessed in 10 IIM and 4 control muscle tissue specimens. The expression of CLU and myositis related cytokines in muscle was determined by qPCR. RESULTS Serum levels of CLU were significantly increased in IIM patients compared to controls (86.2 (71.6-99.0) vs. 59.6 (52.6-68.4) μg/mL, p<0.0001) and positively correlated with myositis disease activity assessment (MYOACT) (r=0.337, p=0.008), myositis intention-to-treat activity index (MITAX) (r=0.357, p=0.004) and global disease assessment evaluated by physician (r=0.309, p=0.015). Moreover, serum CLU correlated with cytokines and chemokines involved in IIM and their combined effect on disease activity was revealed by multivariate redundancy analysis. In muscle tissue, CLU mRNA was increased in IIM patients compared to controls (p=0.032) and CLU accumulated in the cytoplasm of regenerating myofibres. CONCLUSIONS We suggest that the up-regulation of clusterin in circulation and skeletal muscle of IIM patients may be an inflammation and atrophy induced response of the organism intended to limit the environment, favouring further muscle damage.
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