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Chapter 14 - Nutritional Syndromes with Anemia

Alcohol

from Section 4 - Special Topics

Published online by Cambridge University Press:  02 April 2019

Robert T. Means Jr
Affiliation:
East Tennessee State University
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Nutritional Anemia
Scientific Principles, Clinical Practice, and Public Health
, pp. 175 - 188
Publisher: Cambridge University Press
Print publication year: 2019

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References

Nutt, D. J., King, L. A., Phillips, L. D. Drug harms in the UK: a multicriteria decision analysis. Lancet 2010; 376: 1558–65.CrossRefGoogle Scholar
Saitz, R. Unhealthy alcohol use. N Engl J Med 2005; 352: 596607.CrossRefGoogle ScholarPubMed
Hasin, D. S., Stinson, F. S., Ogburn, E., Grant, B. F. Prevalence, correlates, disability, and comorbidity of DSM-IV alcohol abuse and dependence in the United States: results from the National Epidemiologic Survey on Alcohol and Related Conditions. Arch Gen Psychiatry 2007; 64: 830–42.CrossRefGoogle ScholarPubMed
Zhang, Y., Guo, X., Saitz, R., et al. Secular trends in alcohol consumption over 50 years: the Framingham Study. Am J Med 2008; 121: 695701.CrossRefGoogle ScholarPubMed
O'Connell, H., Chin, A.-V., Cunningham, C., Lawlor, B. Alcohol use disorders in elderly people – redefining an age old problem in old age. Br Med J 2003; 327: 664–7.CrossRefGoogle ScholarPubMed
Johnston, L. D., O'Malley, P. M., Bachman, J. G., Schulenberg, J. E. Monitoring the Future national results on adolescent drug use: overview of key findings, 2008 (NIH Publication No. 09–7401). Bethesda, MD: National Institute on Drug Abuse. 2009.Google Scholar
Sokol, R. J., Miller, S. I., Reed, G. Alcohol abuse during pregnancy: an epidemiologic study. Alcoholism: Clin Exp Res 1980; 4: 135–45.CrossRefGoogle ScholarPubMed
Lieber, C. S. Medical disorders of alcoholism. N Engl J Med 1995; 333: 1058–65.CrossRefGoogle ScholarPubMed
Savage, D., Lindenbaum, J. Anemia in alcoholics. Medicine 1986; 65: 322–38.CrossRefGoogle ScholarPubMed
Ballard, H. S. Alcohol-associated pancytopenia with hypocellular bone marrow. Am J Clin Pathol 1980; 73: 830–4.CrossRefGoogle ScholarPubMed
McCurdy, P. R., Rath, C. E. Vacuolated nucleated bone marrow cells in alcoholism. Semin Hematol 1980; 17: 100102.Google ScholarPubMed
Sullivan, L. W., Herbert, V. Suppression of hematopoiesis by ethanol. J Clin Invest 1964; 43: 2048–62.CrossRefGoogle ScholarPubMed
Jarrold, T., Will, J. J., Davies, A. R, et al. Bone marrow-erythroid morphology in alcoholic patients. Am J Clin Nutr 1967; 20: 716–22.CrossRefGoogle ScholarPubMed
Yeung, K. Y., Klug, P. P., Lessin, L. S. Alcohol-induced vacuolization in bone marrow cells: ultrastructure and mechanism of formation. Blood Cells 1988; 13: 483502.Google ScholarPubMed
Meagher, R. C., Sieber, F., Spivak, J. L. Suppression of hematopoietic-progenitor-cell proliferation by ethanol and acetaldehyde. N Engl J Med 1982; 307: 845–9.CrossRefGoogle ScholarPubMed
Nogard, M. J., Carpenter, J. T. Jr., Conrad, M. E. Bone marrow necrosis and degeneration. Arch Int Med 1979; 139: 905–11.Google Scholar
Latvala, J., Parkkila, S., Melkko, J., Niemela, O. Acetaldehyde adducts in blood and bone marrow of patients with ethanol-induced erythrocyte abnormalities. Mol Med 2001; 7: 401–5.CrossRefGoogle ScholarPubMed
Liu, Y. K. Effects of alcohol on granulocytes and lymphocytes. Semin Hematol 1980; 17: 130–6.Google ScholarPubMed
Cowan, D. H. Effects of alcoholism on hemostasis. Semin Hematol 1980; 17: 137–47.Google ScholarPubMed
Wu, A., Chanarin, I., Levi, A. J. Macrocytosis of chronic alcoholism. Lancet 1974; 1: 829–31.Google ScholarPubMed
Unger, K. W., Johnson, D. Red blood cell mean corpuscular volume: a potential indicator of alcohol usage in a working population. Am J Med Sci 1974; 267: 281–9.CrossRefGoogle Scholar
Stibler, H., Beauge, F., Leguicher, A., Borg, S. Biophysical and biochemical alterations in erythrocyte membranes from chronic alcoholics. Scand J Clin Lab Invest 1991; 51: 309–19.CrossRefGoogle ScholarPubMed
Hernandez-Munoz, R., Baraona, E., Blacksberg, I., Lieber, C. S. Characterization of the increased binding of acetaldehyde to red blood cells in alcoholism. Alcoholism: Clin Exp Res 1989; 13: 654–9.CrossRefGoogle Scholar
Koivisto, H., Hietala, J., Anttila, P., et al. Long-term ethanol consumption and macrocytosis: diagnostic and pathogenic implications. J Lab Clin Med 2006; 147: 191–6.CrossRefGoogle ScholarPubMed
Niemela, O. Biomarkers in alcoholism. Clin Chim Acta 2007; 377: 3949.CrossRefGoogle ScholarPubMed
Eichner, E. R. The hematologic disorders of alcoholism. Am J Med 1973; 54: 621–30.CrossRefGoogle ScholarPubMed
Hines, J. D. Reversible megaloblastic and sideroblastic marrow abnormalities in alcoholic patients. Br J Haematol 1969; 16: 87101.CrossRefGoogle ScholarPubMed
Eichner, E. R., Hillman, R. S. The evolution of anemia in alcoholic patients. Am J Med 1971; 50: 218–32.CrossRefGoogle ScholarPubMed
Eichner, E. R., Buchanan, B., Smith, J. W., Hillman, R. S. Variations in the hematologic and medical status of alcoholics. Am J Med Sci 1972; 263: 3542.CrossRefGoogle ScholarPubMed
Eichner, E. R., Pierce, H. I., Hillman, R. S. Folate balance in dietary-induced megaloblastic anemia. N Engl J Med 1971; 281: 933–8.Google Scholar
Lindenbaum, J., Lieber, C. S. Hematologic effects of alcohol in man in the absence of nutritional deficiency. N Engl J Med 1969; 284: 333–8.Google Scholar
Halsted, C. H., Villanueva, J. A., Devlin, A. M., Chandler, C. J. Metabolic interactions of alcohol and folate. J Nutr 2002; 132: 2367S–72S.CrossRefGoogle ScholarPubMed
Halsted, C. H., Robles, E. A., Mezey, E. Intestinal malabsorption in folate-deficient alcoholics. Gastroenterology 1973; 64: 526–32.CrossRefGoogle ScholarPubMed
Eichner, E. R., Hillman, R. S. Effect of alcohol on serum folate level. J Clin Invest 1973; 52: 584–91.CrossRefGoogle ScholarPubMed
Weir, D. G., McGing, P. G., Scott, J. M. Folate metabolism, the enterohepatic circulation and alcohol. Biochem Pharmacol 1985; 34: 17.CrossRefGoogle Scholar
Cherrick, G. R., Baker, H., Frank, O., et al. Observations on hepatic avidity for folate in Laennec's cirrhosis. J Lab Clin Med 1965; 66: 446–51.Google Scholar
Chanarin, I. The Megaloblalstic Anemias, 3nd ed. Oxford, Blackwell Scientific Publications, 1990.Google Scholar
Hoffbrand, A. V., Newcombe, F. A., Mollin, D. L. Method of assay of red cell folate activity and the value of the assay as a test for folate deficiency. J Clin Pathol 1966; 19: 1728.CrossRefGoogle ScholarPubMed
Wu, A., Chanarin, I., Slavin, G., Levi, A. J. Folate deficiency in the alcoholic – its relationship to clinical and haematologic abnormalities, liver disease and folate stores. Br J Haematol 1975; 29: 469–78.CrossRefGoogle ScholarPubMed
Carmel, R., James, S. J. Alcohol abuse: an important cause of severe hyperhomocysteinemia. Nutr Rev 2002; 60: 215–21.CrossRefGoogle ScholarPubMed
Stark, K. D., Pawlosky, R. J., Beblo, S., et al. Status of plasma folate after folic acid fortification of the food supply in pregnant African American women and the influences of diet, smoking, and alcohol consumption. Am J Clin Nutr 2005; 81: 669–77.CrossRefGoogle ScholarPubMed
Charlton, R. W., Jacobs, P., Sheftel, H., et al. Effect of alcohol on iron absorption. Br Med J 1964; 2: 1427–29.CrossRefGoogle ScholarPubMed
Chapman, R. W., Morgan, M. Y., Laulicht, M., et al. Hepatic iron stores and markers of iron overload in alcoholics and patients with idiopathic hemochromatosis. Dig Dis Sci 1982; 27: 909–16.CrossRefGoogle ScholarPubMed
Bottomley, S. S., Fleming, M. D. Sideroblastic anemias. In: Greer, J. P., Appelbaum, F., Arber, D. A., et al, eds. Wintrobe's Clinical Hematology, 14th ed. Philadelphia, Wolters Kluwer / Lippincott Williams & Wilkins. 2018; 644–64.Google Scholar
Pierce, H. I., McGuffin, R. G., Hillman, R. S. Clinical studies in alcoholic sideroblastosis. Arch Int Med 1976; 136: 283–9.CrossRefGoogle ScholarPubMed
Hines, J. D., Cowan, D. H. Studies on the pathogenesis of alcohol-induced sideroblastic bone marrow abnormalities. N Engl J Med 1970; 283: 441–6.CrossRefGoogle ScholarPubMed
Lumeng, L. The role of acetaldehyde in mediating the deleterious effect of ethanol on pyridoxal 5’-phosphate metabolism. J Clin Invest 1978; 62: 286–93.CrossRefGoogle ScholarPubMed
Bottomley, S. S. Sideroblastic anemia. In: Jacobs, A., Worwood, M., eds. Iron in Biochemistry and Medicine, II. London, Academic Press. 1980; 363–92.Google Scholar
Lisman, T., Caldwell, S. H., Burroughs, A. K., et al. Hemostasis and thrombosis in patients with liver disease: the ups and downs. J Hepatol 2010; 53: 362–71.CrossRefGoogle ScholarPubMed
Cooper, R. A. Hemolytic syndromes and red cell membrane abnormalities in liver disease. Semin Hematol 1980; 17: 103112.Google ScholarPubMed
Douglass, C. C., Twomey, J. J. Transient stomatocytosis with hemolysis: a previously unrecognized complication of alcoholism. Ann Int Med 1970; 72: 159–64.CrossRefGoogle ScholarPubMed
Gaines, K. C., Salhany, J. M., Tuma, D. J., Sorrell, M. F. Reaction of acetaldehyde with human erythrocyte membrane proteins. FEBS Letters 1977; 75: 115–19.CrossRefGoogle ScholarPubMed
Zieve, L. Jaundice, hyperlipemia and hemolytic anemia: a heretofore unrecognized syndrome associated with alcoholic fatty liver and cirrhosis. Ann Int Med 1958; 48: 471–96.Google ScholarPubMed
Goebel, K. M., Goebel, F. D., Schubotz, R., Schneider, J. Red cell metabolic and membrane features of haemolytic anaemia of alcoholic liver disease (Zieve's Syndrome). Br J Haematol 1977; 35: 573–85.CrossRefGoogle ScholarPubMed
Jacob, H. S., Amsden, T. Acute hemolytic anemia with rigid red cells in hypophosphatemia. N Engl J Med 1971; 285: 1446–50.CrossRefGoogle ScholarPubMed
DeMarchi, S., Cecchin, E., Basile, A, et al. Renal tubular dysfunction in chronic alcohol abuse – effects of abstinence. N Engl J Med 1993; 329: 1927–34.Google Scholar
Marinella, M. A. Refeeding syndrome and hypophosphatemia. J Intensive Care Med 2005; 20: 155–9.CrossRefGoogle ScholarPubMed
Lieberman, F. L., Reynolds, T. B. Plasma volume in cirrhosis of the liver: its relation of portal hypertension, ascites and renal failure. J Clin Invest 1967; 46: 1297–308.CrossRefGoogle ScholarPubMed
Sternbach, G. L. Infections in alcoholic patients. Emerg Med Clin North Am 1990; 8: 793803.CrossRefGoogle ScholarPubMed
Nelson, S., Kolls, J. K. Alcohol, host defence and society. Nat Rev 2002; 2: 205–09.Google ScholarPubMed
Nemeth, E., Ganz, T. Anemia of inflammation. Hematol Oncol Clin N Am 2014; 28: 671–81.CrossRefGoogle ScholarPubMed
Tilg, H., Wilmer, A., Vogel, W., et al. Serum levels of cytokines in chronic liver diseases. Gastroenterology 1992; 103: 264–74.CrossRefGoogle ScholarPubMed

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