Objectives: Human immunodeficiency virus (HIV) infection in children can be complicated by the development of cardiac disease. Decreased left ventricular function has been temporally associated with the use of zidovudine (azidothymidine; AZT) in adults with HIV and has been associated with changes in cardiac muscle mitochondria in animal models. This study was done in an attempt to determine whether the cardiac disease is related to the antiretroviral therapy or to progressive HIV infection. Methods: We retrospectively reviewed echocardiograms, clinical records, and laboratory data from 137 HIV-infected children who were being treated by the Pediatric Branch, National Cancer Institute, and who were receiving AZT or didanosine, both drugs, or no antiretroviral therapy. Results: Despite correction of the echocardiographic results for HIV disease severity with markers such as CD4+ lymphocyte count, time since infection, mode of acquisition of HIV, and age, children who were treated with AZT had a lower average fractional shortening than those who were not treated with AZT (p <0.0001). There was a nonlinear relation between days of AZT use and this decrease in fractional shortening. The odds that a cardiomyopathy would develop was 8.4 times greater in children who had previously used AZT than in those who had never taken AZT (95% confidence interval, 1.7 to 42.0). Didanosine was not associated with the development of a cardiomyopathy. Conclusions: Treatment of HIV-infected children with AZT may be associated with the development of a cardiomyopathy; didanosine does not appear to increase the risk of cardiomyopathy. The continued use of AZT in a child in whom a cardiomyopathy develops should be carefully assessed, and all children receiving AZT should be followed by serial cardiac examination and echocardiograms. (J PEDIATR 1995;127:137-46)
Background. To determine whether deferoxamine prevents the complications of transfusional iron overload in thalassemia major, we evaluated 59 patients (30 were female and 29 male; age range, 7 to 31 years) periodically for 4 to 10 years or until death.Methods. At each follow-up visit, we performed a detailed clinical and laboratory evaluation and measured hepatic iron stores with a noninvasive magnetic device.Results. The body iron burden as assessed by magnetic measurement of hepatic iron stores was closely correlated (R = 0.89, P < 0.001) with the ratio of cumulative transfusional iron load to cumulative deferoxamine use (expressed in millimoles of iron per kilogram of body weight, in relation to grams of deferoxamine per kilogram, transformed into the natural logarithm). Each increase of one unit in the natural logarithm of the ratio (transfusional iron load to deferoxamine use) was associated with an increased risk of impaired glucose tolerance (relative risk, 19.3; 95 percent confidence interval, 4.8 to 77.4), diabetes mellitus (relative risk, 9.2; 95 percent confidence interval, 1.8 to 47.7), cardiac disease (relative risk, 9.9; 95 percent confidence interval, 1.9 to 51.2), and death (relative risk, 12.6; 95 percent confidence interval, 2.4 to 65.4). All nine deaths during the study occurred among the 23 patients who had begun chelation therapy later and used less deferoxamine in relation to their transfusional iron load (P < 0.001).Conclusions. The early use of deferoxamine in an amount proportional to the transfusional iron load reduces the body iron burden and helps protect against diabetes mellitus, cardiac disease, and early death in patients with thalassemia major.