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Small pituitary size in children with Fanconi anemia
Rosa Sherafat-Kazemzadeh1, Sanjeev N Mehta, Marguerite M Care
1Division of Endocrinology, Cincinnati Children's Hospital Medical Center and University of Cincinnati, Cincinnati, Ohio.
Insights
Children with Fanconi anemia (FA) often have smaller pituitary glands than expected, even after accounting for growth issues. This finding in FA patients suggests potential endocrine implications requiring further investigation.
Area of Science:
- Endocrinology
- Genetics
- Pediatric Medicine
Background:
- Fanconi anemia (FA) is a rare genetic disorder.
- FA is characterized by congenital anomalies, bone marrow failure, and endocrine dysfunction.
- Pituitary hypofunction, including hypogonadism, thyroid issues, and growth hormone (GH) deficiency, is common in FA.
Purpose of the Study:
- To investigate pituitary gland size in children with Fanconi anemia.
- To compare pituitary height in FA patients to age- and gender-matched controls.
- To assess correlations between pituitary size, growth patterns, and endocrine function in FA.
Main Methods:
- Retrospective review of 44 Fanconi anemia patients.
- Cranial MRI analysis of 11 FA patients compared to 22 controls.
- Evaluation of growth patterns and endocrine studies.
Main Results:
- FA patients exhibited significantly smaller mean pituitary height compared to controls (P < 0.0001).
- This difference remained significant even after adjusting for head size (P = 0.0013).
- Short stature affected 50% of patients with small pituitary glands; endocrine abnormalities were prevalent (thyroid, puberty, glucose regulation).
Conclusions:
- Children with Fanconi anemia frequently have smaller pituitary glands than anticipated.
- The reduced pituitary size in FA may be independent of growth retardation.
- Further research is needed to understand the clinical significance of these pituitary findings in FA.
Background:
Fanconi anemia (FA) is a genetic disorder associated with multiple congenital anomalies, bone marrow failure, and pituitary hypofunction including hypogonadism, thyroid dysfunction, and growth hormone (GH) deficiency.
Procedure:
Among 44 patients with FA referred to Cincinnati Children's Hospital Medical Center (CCHMC) between 1975 and 2005, 33 had neuroimaging studies, including 11 cranial magnetic resonance imaging (MRIs). Two separate measurements per patient from these MRIs were used to evaluate pituitary height compared to on-site control data of similar measurements of cranial MRIs on 22 age and gender-matched children without any pathology involving the hypothalamic-pituitary system. Growth pattern and endocrine studies were reviewed to assess potential correlation with pituitary size.
Results:
When compared to the age-gender matched on-site control sample, the mean pituitary height of FA patients was significantly smaller (P < 0.0001; mean +/- SE from mixed effects model with age and gender as covariates: 3.96 +/- 0.32 vs. 5.76 +/- 0.24). Upon further adjusting for the effect of the small head size by including bi-parietal diameter (BPD) as a covariate, the difference remained statistically significant (P = 0.0013). Findings on the growth pattern and endocrinological measurements are as follows: 50% of patients with small pituitary gland were short. GH and adrenal function tests were normal in all tested patients. Thyroid, pubertal status, and glucose regulation were abnormal in 30, 50, and 75% of patients tested.
Conclusions:
Children with FA tend to have unsuspected small pituitary glands beyond what is expected from the effects of their stunted growth. Further studies are required to reveal the clinical implications of this finding.
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