1996Nephrology Dialysis TransplantationRequires access

Cell calcium and arterial blood pressure

John Michael Gonzalez, Luis J. Jost, Diane Rouse, Joel Abramowitz, Toshiyuki Kamijo, W. N. Suki

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Abstract

In hypertensive humans and animals, intracellular calcium (Ca2+) has been found to be elevated in several cell types, including platelets, red blood cells, and smooth muscle cells. The messenger role of calcium requires its maintenance within cells at very low (submicromolar) ionic concentrations. This transcellular gradient is maintained by the reversible complexing of calcium to specific proteins. Intracellular free calcium can increase through an enhanced influx, release from intracellular stores, or a reduced efflux of calcium from the cell. Calcium channels are found to be increased in activity in some studies of hypertensive animals, but not in others. Sequestration of calcium within the cell has also been implicated in the increased cytosolic calcium in hypertension. Plasma membrane adenosine triphosphatases (ATPases) play a significant role in calcium extrusion; and the activity of these pumps has been found to be decreased in several human and animal studies. A single cause of the cellular calcium alterations in hypertension is not completely clear.

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What this paper is about

In hypertensive humans and animals, intracellular calcium (Ca2+) has been found to be elevated in several cell types, including platelets, red blood cells, and smooth muscle cells. The messenger role of calcium requires its maintenance within cells at very low (submicromolar) ionic concentrations. This transcellular gradient is maintained by the reversible complexing of calcium to specific proteins. Intracellular free calcium can increase through an enhanced influx, release from intracellular stores, or a reduced efflux of calcium from the cell. Calcium channels are found to be increased in activity in some studies of hypertensive animals, but not in others. Sequestration of calcium within the cell has also been implicated in the increased cytosolic calcium in hypertension. Plasma membrane adenosine triphosphatases (ATPases) play a significant role in calcium extrusion; and the activity of these pumps has been found to be decreased in several human and animal studies. A single cause of the cellular calcium alterations in hypertension is not completely clear.

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Available abstract

In hypertensive humans and animals, intracellular calcium (Ca2+) has been found to be elevated in several cell types, including platelets, red blood cells, and smooth muscle cells. The messenger role of calcium requires its maintenance within cells at very low (submicromolar) ionic concentrations. This transcellular gradient is maintained by the reversible complexing of calcium to specific proteins. Intracellular free calcium can increase through an enhanced influx, release from intracellular stores, or a reduced efflux of calcium from the cell. Calcium channels are found to be increased in activity in some studies of hypertensive animals, but not in others. Sequestration of calcium within the cell has also been implicated in the increased cytosolic calcium in hypertension. Plasma membrane adenosine triphosphatases (ATPases) play a significant role in calcium extrusion; and the activity of these pumps has been found to be decreased in several human and animal studies. A single cause of the cellular calcium alterations in hypertension is not completely clear.

Key concepts: Calcium, Calcium ATPase, Calcium pump, Calcium in biology, Plasma membrane Ca2+ ATPase, Intracellular, Transcellular, Medicine

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