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August 1, 1985AJP Heart and Circulatory Physiology29 citations

Adult cardiac myocytes in primary culture: cell characteristics and insulin-receptor interaction

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JEJürgen EckelGEG. van EchtenHRH. Reinauer

Structured PICO

P
Population
Calcium-tolerant adult cardiac myocytes in primary culture
I
Intervention
Insulin (physiological and high concentrations, e.g., 1.7 X 10(-7) mol/l)
C
Comparator
Control cells cultured in the absence of insulin
O
Outcome
Cell characteristics (morphology, ATP-to-ADP ratio, [14C]phenylalanine incorporation) and insulin-receptor interaction (binding, dissociation constant, receptor number)surrogate

Adult cardiac myocytes in primary culture retain structural integrity, insulin receptors, and insulin responsiveness, providing a useful model for long-term studies on the regulation of insulin action on the heart.

Abstract

Calcium-tolerant adult cardiac myocytes were kept in culture under serum-free conditions in the presence of physiological concentrations of insulin. Up to 4 days, 70% of cells retained their in vivo rodshaped morphology without gross structural alterations. During that period a constant ATP-to-ADP ratio was observed with a mean value of 10.6 +/- 0.5 (n = 4). The rate of 14Cphenylalanine incorporation remained unaltered up to 63 h in culture. Insulin binding to cultured cells was found to be time-and temperature-dependent, reversible, and highly specific. Scatchard analysis of equilibrium binding data showed a curvilinear plot with a high-affinity segment yielding an apparent dissociation constant of 4.5 X 10(-10) mol/l and a receptor number of 125,000 sites/cell. Both affinity and receptor number remained unaltered between 18 and 66 h in culture. 14Cphenylalanine incorporation was stimulated by 108% in cardiocytes cultured in the presence of high concentrations of insulin (1.7 X 10(-7) mol/l) for 63 h, when compared with control cells cultured in the absence of insulin. These data demonstrate the retention of structural integrity, insulin receptors, and insulin responsiveness in primary cultured adult cardiac myocytes and provide a useful model for long-term studies on the regulation of insulin action on the heart.

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Cite This Study

Eckel et al. (1985) studied this question.

synapsesocial.com/papers/6a87a3586239aa4041f2feabhttps://doi.org/10.1152/ajpheart.1985.249.2.h212
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Transformation of adult rat cardiac myocytes in primary culture2007 · 102 citations
  2. 2Glucose transport and phosphorylation in single cardiac myocytes: rate-limiting steps in glucose metabolism1994 · 81 citations
  3. 3Insulin action on the glucose transport system in isolated cardiocytes from adult rat1983 · 82 citations
  4. 4Insulin-like growth factor I stimulates myofibrildevelopment and decreases smooth muscle alpha-actin of adultcardiomyocytes.1994 · 120 citations
  5. 5Insulin resistance in adult cardiomyocytes undergoing dedifferentiation: role of GLUT4 expression and translocation2004 · 42 citations