Circulating myomiRNAs as biomarkers in patients with Cushing’s syndrome

Purpose Impairment of skeletal muscle mass and strength affects 40–70% of patients with active Cushing’s syndrome (CS). Glucocorticoid excess sustains muscle atrophy and weakness, while muscle-specific microRNAs (myomiRs) level changes were associated with muscle organization and function perturbati...

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Veröffentlicht in:Journal of endocrinological investigation 2024-03, Vol.47 (3), p.655-669
Hauptverfasser: Pivonello, C., Patalano, R., Simeoli, C., Montò, T., Negri, M., Amatrudo, F., Di Paola, N., Larocca, A., Crescenzo, E. M., Pirchio, R., Solari, D., de Angelis, C., Auriemma, R. S., Cavallo, L. M., Colao, A., Pivonello, R.
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Sprache:eng
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Zusammenfassung:Purpose Impairment of skeletal muscle mass and strength affects 40–70% of patients with active Cushing’s syndrome (CS). Glucocorticoid excess sustains muscle atrophy and weakness, while muscle-specific microRNAs (myomiRs) level changes were associated with muscle organization and function perturbation. The aim of the current study is to explore changes in circulating myomiRs in CS patients compared to healthy controls and their involvement in IGFI/PI3K/Akt/mTOR pathway regulation in skeletal muscle. Methods C2C12, mouse myocytes, were exposed to hydrocortisone (HC), and atrophy-related gene expression was investigated by RT-qPCR, WB and IF to assess HC-mediated atrophic signalling. miRNAs were evaluated in HC-treated C2C12 by PCR Arrays. MyomiRs significantly overexpressed in C2C12 were investigated in 37 CS patients and 24 healthy controls serum by RT-qPCR. The anti-anabolic role of circulating miRNAs significantly upregulated in CS patients was explored in C2C12 by investigating the IGFI/PI3K/Akt/mTOR pathway regulation. Results HC induced higher expression of atrophy-related genes, miR-133a-3p, miR-122-5p and miR-200b-3p in C2C12 compared to untreated cells. Conversely, the anabolic IGFI/PI3K/Akt/mTOR signalling was reduced and this effect was mediated by miR-133a-3p. In CS patients miR-133a-3p and miR-200b-3p revealed higher circulating levels ( p  
ISSN:1720-8386
0391-4097
1720-8386
DOI:10.1007/s40618-023-02184-3