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Growth and Nutritional Outcomes in Children Post-Haematopoietic Stem Cell Transplant without Exposure to Total Body
A L Wanaguru1, R J Cohn2, K A Johnston3
1Endocrinology Department, Sydney Children's Hospital, Randwick, NSW, Australia; School of Women's and Children's Health, UNSW Sydney, Kensington, NSW, Australia.
Insights
Childhood cancer survivors undergoing chemotherapy-only stem cell transplants experience significant height loss, particularly before the transplant. Solid tumor patients face higher risks, with no catch-up growth observed post-treatment.
Area of Science:
- Pediatric Oncology
- Hematology
- Endocrinology
Background:
- Childhood cancer survivors often face growth issues post-treatment.
- Limited literature exists on growth outcomes after chemotherapy-only HSCT without radiation.
Purpose of the Study:
- Assess height standard deviation score (SDS) changes and final adult height (FAH) in children treated with chemotherapy-only HSCT.
- Identify predictors of poor growth in this cohort.
Main Methods:
- Retrospective review of hospital records (1984-2010).
- Included children aged 1-10 years undergoing chemotherapy-only HSCT.
- Anthropometric measurements collected at diagnosis, HSCT, age 10, and FAH.
Main Results:
- Mean height SDS loss from diagnosis to FAH was -1.21 (approx. 7-8.5 cm).
- Greatest height loss occurred pre-HSCT (-0.77 SDS), with no subsequent catch-up growth.
- Patients with solid tumors experienced the most significant height reduction.
Conclusions:
- Chemotherapy-only HSCT impacts final adult height in childhood cancer survivors.
- Pre-HSCT treatment is a critical period for height loss.
- Solid tumor patients require closer monitoring for growth deficits due to intensive regimens.
Aims:
Poor growth in childhood cancer survivors who undergo haematopoietic stem cell transplant (HSCT) without exposure to radiation is reported anecdotally, although literature to support this is limited. The aims of this study were to assess the change in height standard deviation score (SDS) and the final adult height (FAH) in children who underwent chemotherapy-only conditioned HSCT and to identify predictors of poor growth.
Materials And Methods:
We conducted a retrospective hospital medical record review (1984-2010) of children (1-10 years) who underwent chemotherapy-only conditioned HSCT, noting anthropology measurements at cancer diagnosis, HSCT, 10 years old and FAH.
Results:
The median age at HSCT of the 53 patients was 4.5 years, 75% had a haematological malignancy and 25% a solid tumour. Half of the cohort underwent allogenic HSCT and most (89%) conditioned with busulphan. The mean change in height SDS from primary cancer diagnosis to FAH was -1.21 (±1.18 SD), equivalent to 7-8.5 cm loss, with a mean FAH of -0.91 SDS (±1.10 SD). The greatest height loss occurred between diagnosis and HSCT (-0.77 SDS, 95% confidence interval -1.42, -0.12, P = 0.01), with no catch-up growth seen by FAH. Patients with solid tumours had the greatest height loss. Overall body mass index SDS did not change significantly over time, or by cancer type.
Conclusions:
Chemotherapy-only conditioned HSCT during childhood can impact FAH, with the greatest height loss occurring prior to HSCT and no catch-up growth after treatment finishes. Children transplanted for a solid tumour malignancy seem to be more at risk, possibly due to intensive treatment regimens, both pre-transplant and during conditioning.
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