The molecular mechanisms involved in the transition of cardiac hypertrophy to heart failure (HF) are not fully characterized. Autophagy is a catabolic, self-renewal intracellular mechanism, which protects the heart during HF. In the heart of a mouse model of angiotensin-II-induced hypertrophy, Sun and colleagues demonstrated that reduced levels of miR-93 lead to synaptotagmin-7 (Syt-7) upregulation and consequent inhibition of autophagy. miR-93 overexpression or syt-7 inhibition rescues autophagy and maladaptive hypertrophy. This research identifies new players in the pathophysiology of cardiac hypertrophy, opening innovative therapeutic perspectives. miR-93 may also be considered in the future as a novel circulating biomarker for patients at high risk to develop HF.

miR-93 and synaptotagmin-7: two novel players in the regulation of autophagy during cardiac hypertrophy / Forte, M., Sarto, G., Sciarretta, S.. - In: THE FEBS JOURNAL. - ISSN 1742-464X. - 291:3(2024), pp. 441-444. [10.1111/febs.17008]

miR-93 and synaptotagmin-7: two novel players in the regulation of autophagy during cardiac hypertrophy

Forte M.;Sarto G.;Sciarretta S.
2024

Abstract

The molecular mechanisms involved in the transition of cardiac hypertrophy to heart failure (HF) are not fully characterized. Autophagy is a catabolic, self-renewal intracellular mechanism, which protects the heart during HF. In the heart of a mouse model of angiotensin-II-induced hypertrophy, Sun and colleagues demonstrated that reduced levels of miR-93 lead to synaptotagmin-7 (Syt-7) upregulation and consequent inhibition of autophagy. miR-93 overexpression or syt-7 inhibition rescues autophagy and maladaptive hypertrophy. This research identifies new players in the pathophysiology of cardiac hypertrophy, opening innovative therapeutic perspectives. miR-93 may also be considered in the future as a novel circulating biomarker for patients at high risk to develop HF.
2024
angiotensin II; autophagy; cardiac hypertrophy; cardiovascular diseases; heart failure; miRNAs
01 Pubblicazione su rivista::01m Editorial/Introduzione in rivista
miR-93 and synaptotagmin-7: two novel players in the regulation of autophagy during cardiac hypertrophy / Forte, M., Sarto, G., Sciarretta, S.. - In: THE FEBS JOURNAL. - ISSN 1742-464X. - 291:3(2024), pp. 441-444. [10.1111/febs.17008]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1775512
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