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Research Article Free access | 10.1172/JCI116087

Role of transforming growth factor-beta in maintenance of function of cultured neonatal cardiac myocytes. Autocrine action and reversal of damaging effects of interleukin-1.

A B Roberts, N S Roche, T S Winokur, J K Burmester, and M B Sporn

Laboratory of Chemoprevention, National Cancer Institute, Bethesda, Maryland 20892.

Find articles by Roberts, A. in: PubMed | Google Scholar

Laboratory of Chemoprevention, National Cancer Institute, Bethesda, Maryland 20892.

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Laboratory of Chemoprevention, National Cancer Institute, Bethesda, Maryland 20892.

Find articles by Winokur, T. in: PubMed | Google Scholar

Laboratory of Chemoprevention, National Cancer Institute, Bethesda, Maryland 20892.

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Laboratory of Chemoprevention, National Cancer Institute, Bethesda, Maryland 20892.

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Published November 1, 1992 - More info

Published in Volume 90, Issue 5 on November 1, 1992
J Clin Invest. 1992;90(5):2056–2062. https://doi.org/10.1172/JCI116087.
© 1992 The American Society for Clinical Investigation
Published November 1, 1992 - Version history
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Abstract

The three isoforms of transforming growth factor-beta (TGF-beta) have previously been implicated in embryonic development of the heart as well as in repair of myocardial damage after ischemia/reperfusion injury. TGF-beta 1 has also been localized intracellularly to both mitochondria and contractile filaments of cardiac myocytes, although its role in these structures has not been defined. We now report that exogenous TGF-beta stabilizes the beating rate of neonatal rat cardiac myocytes cultured on fibroblast matrix, and sustains their spontaneous rhythmic beating in serum-free medium. Moreover, using blocking antibodies to TGF-beta, we show that endogenous TGF-beta secreted by these myocytes acts in an autocrine fashion to maintain their beating rate. In contrast, IL-1 beta, an inflammatory mediator secreted by immune cells during myocardial injury, inhibits the beating of cardiac myocytes, and TGF-beta can overcome this inhibition. The antagonistic effects of TGF-beta and IL-1 were not observed when the myocytes were cultured on gelatin, as compared to native fibroblast matrix. The data indicate that TGF-beta is an important regulator of contractile function of the heart and have significant implications for understanding cardiac physiology in health and disease.

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