Key result
Cardiac overexpression of RALT improved cardiac function and inhibited maladaptive hypertrophy, inflammation, and fibrosis by attenuating epidermal growth factor receptor-dependent signaling.
Why the study?
Does cardiac overexpression of RALT prevent maladaptive hypertrophy in mice treated with angiotensin II and isoproterenol?
Does cardiac overexpression of RALT prevent maladaptive hypertrophy in mice treated with angiotensin II and isoproterenol?
Cardiac overexpression of RALT protects against maladaptive hypertrophy, inflammation, and fibrosis by attenuating epidermal growth factor receptor-dependent signaling in a murine model.
RALT modulation merits further preclinical study as an antihypertrophic target; leaves open translation to human cardiac disease.
Receptor-associated late transducer (RALT) is a feedback inhibitor of epidermal growth factor receptor signaling. RALT has been shown previously to be induced in the ischemic heart and to promote cardiomyocyte apoptosis in vitro. However, the role of RALT in cardiac hypertrophy remains unclear. We hypothesized that forced expression of RALT in the murine heart would protect the heart against cardiac hypertrophy in vivo. We investigated the effect of cardiac overexpression of rat RALT on cardiac hypertrophy induced by angiotensin II and isoproterenol in RALT transgenic mice and wild-type littermates. The extent of cardiac hypertrophy was assessed by 2D and M-mode echocardiography as well as by molecular and pathological analyses of cardiac samples. Constitutive expression of rat RALT in cardiac myocytes of murine heart attenuated both hypertrophic and inflammatory responses and preserved cardiac function. These beneficial effects were associated with the attenuation of the epidermal growth factor receptor-dependent cascade that was triggered by angiotensin II and isoproterenol stimulation. Additional evidence demonstrated that RALT expression blocked fibrosis in vivo and collagen synthesis in vitro. Therefore, cardiac overexpression of RALT improves cardiac function and inhibits maladaptive hypertrophy, inflammation, and fibrosis through attenuating epidermal growth factor receptor-dependent signaling.
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Cai et al. (2009) studied Cardiac hypertrophy. Cardiac overexpression of rat RALT vs. Wild-type littermates was evaluated on Extent of cardiac hypertrophy, inflammatory responses, and cardiac function. Cardiac overexpression of RALT improved cardiac function and inhibited maladaptive hypertrophy, inflammation, and fibrosis by attenuating epidermal growth factor receptor-dependent signaling.
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