Key result
Caspase-1 overexpression remarkably abrogated the salutary effects of hypertrophic preconditioning in pressure overload mouse hearts, exacerbating cardiac remodeling and dysfunction via IL-1β and IL-18.
Why the study?
Whether inflammation plays a role in the antecedent protective effects of cardiac hypertrophic preconditioning against sustained pressure overload was unknown.
Does caspase-1 overexpression abrogate the protective effects of hypertrophic preconditioning in pressure overload mouse hearts?
Does caspase-1 overexpression abrogate the protective effects of hypertrophic preconditioning in pressure overload mouse hearts?
p-value: p=<0.05
Caspase-1 abrogates the cardioprotective effects of hypertrophic preconditioning in mice, identifying it as a potential therapeutic target for preventing cardiac hypertrophy.
Caspase-1 inhibition may protect against hypertrophy; animal data leave clinical translation open.
Cardiac hypertrophic preconditioning (HP) signifies cardioprotection induced by transient pressure overload to resist hypertrophic effects of subsequently sustained pressure overload. Although it is recently found that inflammation triggers the development of nonischemic cardiomyopathy, whether inflammation plays a role in the antecedent protective effects of HP remains unknown. Caspase-1 is a critical proinflammatory caspase that also induces pyroptosis; thus, we investigated the role of caspase-1 using a unique model of HP in mice subjected longitudinally to 3 days of transverse aortic constriction (TAC 3d), 4 days of de-constriction (De-TAC 4d), and 4 weeks of Re-TAC (Re-TAC 4W). Echocardiography, hemodynamics, histology, PCR, and western blot confirmed preserved cardiac function, alleviated myocardial hypertrophy and fibrosis, and less activated hypertrophic signaling effectors in Re-TAC 4W mice, compared with TAC 4W mice. Mechanistically, caspase-1 and its downstream targets IL-1β and IL-18, but not GSDMD, were less activated in Re-TAC 4W mice. Furthermore, in HP mice with AAV-9-mediated cardiac-specific caspase-1 overexpression, the salutary effects of HP were remarkably abrogated, as evidenced by exacerbated cardiac remodeling, dysfunction, and activation of IL-1β and IL-18. Collectively, this study revealed a previously unrecognized involvement of caspase-1 in cardiac HP by regulation of IL-1β and IL-18 and shed light on caspase-1 as an antecedent indicator and target for cardiac hypertrophy.
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Dai et al. (2021) studied Cardiac hypertrophy. Caspase-1 overexpression (AAV9-caspase-1) vs. AAV9-EGFP (vector control) was evaluated on Cardiac hypertrophy and function (HW/BW, LVEF, LVFS) (p=<0.05). Caspase-1 overexpression remarkably abrogated the salutary effects of hypertrophic preconditioning in pressure overload mouse hearts, exacerbating cardiac remodeling and dysfunction via IL-1β and IL-18.
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