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Pituitary incidentalomas in paediatric age are different from those described in adulthood
Pedro Souteiro1,2,3, Rúben Maia4, Rita Santos-Silva5,6
1Department of Endocrinology, Diabetes and Metabolism, Centro Hospitalar Universitário de São João, Alameda Prof. Hernâni Monteiro, 4200-319, Porto, Portugal. pedrobsouteiro@gmail.com.
Insights
This study analyzed pediatric pituitary incidentalomas, finding pituitary hypertrophy common and adenomas rare. Most children showed no hormonal issues, and lesions did not grow over time.
Area of Science:
- Pediatric Endocrinology
- Neuroimaging
- Endocrine Neoplasms
Background:
- Pituitary incidentalomas lack specific pediatric guidelines.
- Current data primarily focuses on adult populations.
- Understanding pediatric pituitary lesions is crucial for appropriate management.
Purpose of the Study:
- To investigate the characteristics of pituitary incidentalomas in children.
- To analyze hormonal profiles and follow-up data in pediatric patients.
- To establish a baseline for pediatric pituitary incidentaloma evaluation.
Main Methods:
- Retrospective review of neuroimaging reports and medical records.
- Inclusion of patients aged 18 years or younger.
- Analysis of lesion morphology, hormonal status, and follow-up imaging.
Main Results:
- Forty-one pediatric pituitary incidentalomas identified; 62.4% in females.
- Pituitary hypertrophy was the most common lesion (29.3%), followed by arachnoid cysts (17.1%) and adenomas (14.6%).
- Most patients (90.2%) had no hormonal dysfunction; none showed dimensional progression on follow-up.
Conclusions:
- This is the first series on pediatric pituitary incidentalomas.
- Pediatric cases show higher rates of hypertrophy than adenomas compared to adults.
- Lower prevalence of hormonal hyper/hyposecretion and reduced risk of growth observed in children.
Purpose:
Guidelines on pituitary incidentalomas evaluation and management are limited to adults since there are no data on this matter in the paediatric population. We aim to analyse the morphologic characteristics, hormonal profile and follow-up of these lesions in children.
Methods:
We have searched for pituitary incidentalomas in the neuroimaging reports and electronic medical records of the Paediatric Endocrinology Clinic of our centre. Patients with 18 years-old or less were included.
Results:
Forty-one incidentalomas were identified, 25 of them (62.4%) in females. The mean age at diagnosis was 12.0 ± 4.96 years-old. Headaches were the main reason that led to image acquisition (51.2%) and MRI was the imaging method that detected the majority of the incidentalomas (70.7%). The most prevalent lesion was pituitary hypertrophy (29.3%), which was mainly diagnosed in female adolescents (91.7%), followed by arachnoid cysts (17.1%), pituitary adenomas (14.6%) and Rathke's cleft cysts (12.2%). Most patients (90.2%) did not present clinical or laboratorial findings of hypopituitarism or hormonal hypersecretion. Four patients presented endocrine dysfunction: three had growth hormone deficiency and one had a central precocious puberty. Twenty-three patients (56.1%) underwent imagiological revaluation during a median follow-up time of 24.6 months (interquartile range 5.07). None of them presented dimensional progression.
Conclusions:
To the best of our knowledge, this is the first series of pituitary incidentalomas in pediatric age. Comparing our series with those conducted in adults, we have observed a higher preponderance of pituitary hypertrophy over adenomas, a lower prevalence of hormonal hyper/hyposecretion and lower risk of dimensional progression during follow-up.
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