Page 295 - 2021_04-Haematologica-web
P. 295
Letters to the Editor
Fucharoen S, Smith DR. A mechanism of ineffective erythropoiesis
lassemia major: a T2* magnetic resonance imaging study.
Haematologica. 2011;96(4):515-520.
11.Marsella M, Pepe A, Borgna-Pignatti C. Better survival and less car-
diac morbidity in female patients with thalassemia major: a review
of the literature. Ann N Y Acad Sci. 2010;1202:129-133. 12.Kyriakou A, Savva SC, Savvides I, et al. Gender differences in the prevalence and severity of bone disease in thalassaemia. Pediatr
Endocrinol Rev. 2008;6(Suppl 1):S116-122.
13.Kander MC, Cui Y, Liu Z. Gender difference in oxidative stress: a
new look at the mechanisms for cardiovascular diseases. J Cell Mol
Med. 2017;21(5):1024-1032.
14. Link JC, Reue K. Genetic basis for sex differences in obesity and lipid
metabolism. Annu Rev Nutr. 2017;37:225-245.
15. Soliz J, Khemiri H, Caravagna C, Seaborn T. Erythropoietin and the
sex-dimorphic chemoreflex pathway. Adv Exp Med Biol. 2012; 758:55-62.
in β-thalassemia/Hb E disease. Haematologica. 2010;95(5):716-723.
6. Amendola G, Danise P, Todisco N, D'Urzo G, Di Palma A, Di Concilio R. Lipid profile in β-thalassemia intermedia patients: corre- lation with erythroid bone marrow activity. Int J Lab Hematol. 2007;
29(3):172-176.
7. LivreaMA,TesoriereL,MaggioA,D'ArpaD,PintaudiAM,Pedone
E. Oxidative modification of low-density lipoprotein and atheroge-
netic risk in beta-thalassemia. Blood. 1998;92(10):3936-3942.
8. el-Hazmi MA, Warsy AS, Addar MH, Babae Z. Fetal haemoglobin level-effect of gender, age and haemoglobin disorders. Mol Cell
Biochem. 1994;135(2):181-186.
9. Pes GM, Tolu F, Dore MP. Anti-thyroid peroxidase antibodies and
male gender are associated with diabetes occurrence in patients with
β-thalassemia major. J Diabetes Res. 2016;2016:1401829.
10. Marsella M, Borgna-Pignatti C, Meloni A, et al. Cardiac iron and car- diac disease in males and females with transfusion-dependent tha-
haematologica | 2021; 106(4)
1211