Erythroid glucose transport in health and disease
Author:
Publisher
Springer Science and Business Media LLC
Subject
Physiology (medical),Clinical Biochemistry,Physiology
Link
https://link.springer.com/content/pdf/10.1007/s00424-020-02406-0.pdf
Reference143 articles.
1. Afzal I, Cunningham P, Naftalin RJ (2002) Interactions of ATP, oestradiol, genistein and the anti-oestrogens, Faslodex (ICI 182780) and tamoxifen, with the human erythrocyte glucose transporter, GLUT1. Biochem J 365:707–719
2. Aït-Ali N, Fridlich R, Millet-Puel G, Clérin E, Delalande F, Jaillard C, Blond F, Perrocheau L, Reichman S, Byrne LC, Olivier-Bandini A, Bellalou J, Moyse E, Bouillaud F, Nicol X, Dalkara D, van Dorsselaer A, Sahel JA, Léveillard T (2015) Rod-derived cone viability factor promotes cone survival by stimulating aerobic glycolysis. Cell 161:817–832
3. Asaro RJ, Zhu Q, Cabrales P, Carruthers A (2018) Do skeletal dynamics mediate sugar uptake and transport in human erythrocytes? Biophys J 114:1440–1454
4. Badens C, Guizouarn H (2016) Advances in understanding the pathogenesis of the red cell volume disorders. Br J Haematol 174:674–685
5. Baldwin SA, Baldwin JM, Gorga FR, Lienhard GE (1979) Purification of the cytochalasin B binding component of the human erythrocyte monosaccharide transport system. Biochim Biophys Acta 552:183–188
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