Defective Zn2+ homeostasis in mouse and human platelets with α- and δ-storage pool diseases
Author:
Funder
Deutsche Forschungsgemeinschaft
Publisher
Springer Science and Business Media LLC
Subject
Multidisciplinary
Link
http://www.nature.com/articles/s41598-019-44751-w.pdf
Reference22 articles.
1. Kambe, T., Tsuji, T., Hashimoto, A. & Itsumura, N. The Physiological, Biochemical, and Molecular Roles of Zinc Transporters in Zinc Homeostasis and Metabolism. Physiol Rev 95, 749–784 (2015).
2. Gorodetsky, R., Mou, X., Blankenfeld, A. & Marx, G. Platelet multielemental composition, lability, and subcellular localization. Am J Hematol 42, 278–283 (1993).
3. Whitehouse, R. C., Prasad, A. S., Rabbani, P. I. & Cossack, Z. T. Zinc in plasma, neutrophils, lymphocytes, and erythrocytes as determined by flameless atomic absorption spectrophotometry. Clin Chem 28, 475–480 (1982).
4. O’Dell, B. L. & Emery, M. Compromised zinc status in rats adversely affects calcium metabolism in platelets. J Nutr 121, 1763–1768 (1991).
5. Gordon, P. R., Woodruff, C. W., Anderson, H. L. & O’Dell, B. L. Effect of acute zinc deprivation on plasma zinc and platelet aggregation in adult males. Am J Clin Nutr 35, 113–119 (1982).
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