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Red blood cell regulation of microvascular tone through adenosine triphosphate

Authors :
DIETRICH, HANS H.
ELLSWORTH, MARY L.
SPRAGUE, RANDY S.
DACEY, RALPH G. JR.
Source :
The American Journal of Physiology. April, 2000, Vol. 278 Issue 4, H1294
Publication Year :
2000

Abstract

Dietrich, Hans H., Mary L. Ellsworth, Randy S. Sprague, and Ralph G. Dacey, Jr. Red blood cell regulation of microvascular tone through adenosine triphosphate. Am J Physiol Heart Circ Physiol 278: H1294-1298, 2000.--The matching of blood flow with metabolic need requires a mechanism for sensing the needs of the tissue and communicating that need to the arterioles, the ultimate controllers of tissue perfusion. Despite significant strides in our understanding of blood flow regulation, the identity of the [O.sub.2] sensor has remained elusive. Recently, the red blood cell, the Hb-containing [O.sub.2] carrier, has been implicated as a potential [O.sub.2] sensor and contributor to this vascular control by virtue of its concomitant carriage of millimolar amounts of ATP, which it is able to release when exposed to a low-[O.sub.2] environment. To evaluate this possibility, we exposed perfused cerebral arterioles to low extraluminal [O.sub.2] in the absence and presence of red blood cells or 6% dextran and determined both vessel diameter and ATP in the vessel effluent. Only when the vessels were perfused with red blood cells did the vessels dilate in response to low extraluminal [O.sub.2]. In addition, this response was accompanied by a significant increase in vessel effluent ATP. These findings support the hypothesis that the red blood cell itself serves a role in determining [O.sub.2] supply to tissue. rat; cerebral arterioles; microvascular regulatory mechanism; oxygen tension

Details

ISSN :
00029513
Volume :
278
Issue :
4
Database :
Gale General OneFile
Journal :
The American Journal of Physiology
Publication Type :
Academic Journal
Accession number :
edsgcl.62193840