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PMID: 15618480 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S. Review

Ion transport pathology in the mechanism of sickle cell dehydration.

Physiological reviews ·Vol. 85 ·No. 1 ·2005-01-00 ·Pages 179-200

Lew VL, Bookchin RM

Abstract

Polymers of deoxyhemoglobin S deform sickle cell anemia red blood cells into sickle shapes, leading to the formation of dense, dehydrated red blood cells with a markedly shortened life-span. Nearly four decades of intense research in many laboratories has led to a mechanistic understanding of the complex events leading from sickling-induced permeabilization of the red cell membrane to small cations, to the generation of the heterogeneity of age and hydration condition of circulating sickle cells. This review follows chronologically the major experimental findings and the evolution of guiding ideas for research in this field. Predictions derived from mathematical models of red cell and reticulocyte homeostasis led to the formulation of an alternative to prevailing gradualist views: a multitrack dehydration model based on interactive influences between the red cell anion exchanger and two K(+) transporters, the Gardos channel (hSK4, hIK1) and the K-Cl cotransporter (KCC), with differential effects dependent on red cell age and variability of KCC expression among reticulocytes. The experimental tests of the model predictions and the amply supportive results are discussed. The review concludes with a brief survey of the therapeutic strategies aimed at preventing sickle cell dehydration and with an analysis of the main open questions in the field.

MeSH Terms
Anemia, Sickle Cell/complications,pathology,physiopathology Anions/metabolism Dehydration/etiology,pathology,physiopathology Humans Ion Channels/physiology Potassium/metabolism Sodium/metabolism
Chemicals
Anions Ion Channels Sodium Potassium
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Lew Virgilio L
Physiological Laboratory, University of Cambridge, United Kingdom. VLL1@cam.ac.uk
Bookchin Robert M
Article Info
Journal
Physiological reviews
Abbr.
Physiol Rev
ISSN
0031-9333
Published
2005-01-00
Pages
179-200
Language
English
Region
United States
NLM ID
0231714
Subset
IM
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