Why the study?
Does restoration of normal calcium after calcium-free perfusion induce cell death in rat hearts of different ages?
Does restoration of normal calcium after calcium-free perfusion induce cell death in rat hearts of different ages?
The susceptibility of rat cardiac myocytes to calcium-induced cell death (calcium paradox) is age-dependent, developing fully by 15 days of age, likely due to membrane system maturation.
Suggests caution extrapolating calcium reperfusion to immature hearts; leaves open translational relevance of rat age-dependent calcium paradox to pediatrics.
Rat hearts perfused with calcium-free media exhibit an age-dependent response when a normal calcium concentration is restored to the perfusate. The response of 15- and 26-day hearts is an explosive cell death which includes immediate cessation of contractile activity, as well as release of large amounts of creatine phosphokinase activity and myoglobin. Between birth and 15 days of age, the sensitivity of the heart to this calcium-induced cellular disruption changes from a relative insensitivity before 6 days of age to a slight but constant sensitivity from 7 to 11 days of age, and to full sensitivity at 15 days of age. This pattern of sensitivity may be due to the rapid increase in complexity and quantity of the membrane systems of cardiac myocytes during the first 15 days of growth.
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Chizzonite et al. (1981) studied this question.
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