Why the study?
Does the Na+/H+ exchange system regulate internal pH recovery in cultured chick cardiac cells after acidification?
Does the Na+/H+ exchange system regulate internal pH recovery in cultured chick cardiac cells after acidification?
The Na+/H+ exchange system is crucial for restoring internal pH in cultured cardiac cells following intracellular acidification, subsequently activating the (Na+,K+)-ATPase.
The Na+/H+ exchange system is not the major mechanism that regulates the internal pH value (pHi) of chick cardiac cells in culture under normal physiological conditions in the absence of carbonate. In cardiac cells in which the internal pH has been lowered to 6.6-6.7, the Na+/H+ exchanger becomes the major mechanism to bring back pHi to normal values (pHi = 7.3). The blockade of the Na+/H+ exchange activity with an active amiloride derivative, ethylisopropylamiloride, prevents internal pH recovery. The internal pH dependence of the Na+/H+ exchanger activity has been carefully studied. The [H+]i-dependence is very cooperative. For an external pH of 7.4, the system is nearly completely inactive at pHi 7.8 and nearly completely active at pHi 6.9-7.0 with half-maximum activation at pHi = 7.35. The increased activity of the Na+/H+ exchange system which follows the acidification of the internal medium produces an activation of the (Na+,K+)-ATPase.
No takes yet. Share an insight, caveat, or question.
Frelin et al. (1985) studied this question.
Synapse has enriched 3 closely related papers on similar clinical questions. Consider them for comparative context: