Reference intervals for serum 11-oxygenated androgens in children

Author:

Adriaansen Bas P H12ORCID,Oude Alink Sandra E1,Swinkels Dorine W1,Schröder Mariska A M12ORCID,Span Paul N3ORCID,Sweep Fred C G J1,Claahsen-van der Grinten Hedi L2ORCID,van Herwaarden Antonius E1

Affiliation:

1. Department of Laboratory Medicine, Radboud University Medical Centre , 6525GA, Nijmegen , the Netherlands

2. Department of Paediatric Endocrinology, Amalia Children’s Hospital, Radboud University Medical Centre , 6525GA, Nijmegen , the Netherlands

3. Department of Radiation Oncology, Radboud University Medical Centre , 6525GA, Nijmegen , the Netherlands

Abstract

Abstract Objective Classic androgens such as dehydroepiandrosterone, androstenedione, and testosterone are generally measured for diagnosis and treatment monitoring in children and adolescents with hyperandrogenism, as can occur in congenital adrenal hyperplasia, premature pubarche, or polycystic ovarian syndrome. However, adrenally-derived 11-oxygenated androgens also contribute to the androgen pool and should therefore be considered in clinical management. Nevertheless, paediatric reference intervals are lacking. Therefore, we developed a serum assay to establish reference intervals for four 11-oxygenated androgens in addition to four classic androgens. Design Reference interval study for serum 11-oxygenated androgens in children. Methods We developed and validated a sensitive liquid chromatography-tandem mass spectrometry assay and quantified eight serum androgens, including four 11-oxygenated androgens, in serum of 256 healthy children (aged 0-17 years old). An age-dependency for all androgens was observed, and therefore we divided the cohort based on age (prepubertal [n = 133; 94 boys, 39 girls] and pubertal [n = 123; 52 boys, 71 girls]) to compute reference intervals (2.5th-97.5th percentiles). Results In the prepubertal group, there was no significant sex-difference for any of the measured androgens. In the pubertal group, androstenedione, testosterone, and dihydrotestosterone showed a significant difference between boys and girls. In contrast, adrenal androgens dehydroepiandrosterone, 11-hydroxyandrostenedione, 11-ketoandrostenedione, 11-hydroxytestosterone, and 11-ketotestosterone did not. Conclusions We developed and validated an assay for 11-oxygenated androgens, in addition to four classic androgens and established reference intervals. This enables a comprehensive evaluation of serum androgen status in children with clinical symptoms of hyperandrogenism.

Funder

International Fund Congenital Adrenal Hyperplasia

Publisher

Oxford University Press (OUP)

Subject

Endocrinology,General Medicine,Endocrinology, Diabetes and Metabolism

Reference34 articles.

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2. 11-Ketotestosterone is the dominant circulating bioactive androgen during normal and premature adrenarche;Rege;J Clin Endocrinol Metab,2018

3. A new dawn for androgens: novel lessons from 11-oxygenated C19 steroids;Pretorius;Mol Cell Endocrinol,2017

4. 11-Oxygenated androgens in health and disease;Turcu;Nat Rev Endocrinol,2020

5. 11Beta-hydroxydihydrotestosterone and 11-ketodihydrotestosterone, novel C19 steroids with androgenic activity: a putative role in castration resistant prostate cancer?;Storbeck;Mol Cell Endocrinol,2013

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