
Hematopoietic stem cell transplantation-associated partial lipodystrophy (HSCT-PL) is a serious complication that develops about a decade after HSCT in childhood cancer survivors. Typically, patients present with a unique combination of lipoatrophy and lipohypertrophy, known as Dunnigan phenotype. Despite low-to-normal BMI, they often develop metabolic dysfunctions, such as insulin resistance, diabetes, hypertriglyceridemia, and fatty liver. This review discusses current hypotheses for pathogenesis of HSCT-PL. Among the proposed theories, radiation-induced damage of adipose progenitor cells in both subcutaneous and visceral adipose tissue appears to be primary, suggesting that HSCT-PL may reflect accelerated senescence. A literature survey revealed that nearly 90% of reported patients were female. Although the underlying cause of this disparity remains unclear, this is consistent with the greater disease severity in females observed in other adipose tissue-related disorders, including familial partial lipodystrophy and lipoedema. Since patients with HSCT-PL develop severe metabolic dysfunction early in life, they will be at a particularly high risk of premature atherosclerosis. Increased risk of mortality and potential predisposition to malignancy were also identified as important concerns. The development of effective therapeutics is urgently needed. Metreleptin may represent one such option, given its readily availability and demonstrated efficacy in some patients.