Why the study?
Does manipulating ionic composition (Ca++, K+, Na+) alter the release of active and inactive renin in rabbit kidney cortex slices?
Does manipulating ionic composition (Ca++, K+, Na+) alter the release of active and inactive renin in rabbit kidney cortex slices?
Calcium and sodium ions have distinct and sometimes antagonistic or synergistic effects on the secretion of active versus inactive renin in rabbit kidney models.
Ionic effects on active versus inactive renin in rabbit slices warrant no clinical change; leaves open human juxtaglomerular regulation.
Excitation-secretion coupling for active and inactive renin was investigated by manipulating the ionic composition of media in which rabbit kidney cortex slices were incubated. Alterations in [Ca++] and [K+] produced qualitatively similar, but quantitatively distinct, changes in the release of the two forms of renin. Under control conditions, the slices secreted 15-20% of total renin in the inactive form and exposure to Ca++-free or low [K+] media increased this to 30-40%, a similar proportion to that stored within the kidney. Decreasing [Na+] stimulated release of active renin but reduced inactive renin. There appeared to be antagonism between the effects of Na+ and Ca++ ions in respect of active renin but synergism for release of the inactive form. It is suggested that the characteristics of a single renin release mechanism in the rat kidney resemble those for secretion of inactive, rather than active, renin in other species.
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Noble et al. (1982) studied this question.
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