Related Experiment Video
Updated: Jan 28, 2026

Refined Murine Model of Idiopathic Pulmonary Fibrosis
Published on: June 17, 2025
Idiopathic gonadotropin-independent precocious puberty - is regular surveillance required?
Ved Bhushan Arya1, Justin H Davies2,3
1Department of Paediatric Endocrinology, King's College Hospital NHS Trust, Denmark Hill, London, UK.
Insights
Precocious puberty caused by germ cell tumors secreting beta-human chorionic gonadotropin (β-HCG) can be a precursor to GCTs. Early surveillance is crucial for timely tumor detection and management.
Area of Science:
- Pediatric Endocrinology
- Oncology
- Reproductive Medicine
Background:
- Germ cell tumors (GCTs) secreting beta-human chorionic gonadotropin (β-HCG) are a rare cause of gonadotropin-independent precocious puberty (GIPP).
- Early diagnosis and management of GIPP are essential to prevent long-term complications such as advanced skeletal maturation and reduced adult height potential.
Observation:
- A 5.7-year-old boy presented with GIPP and elevated serum β-HCG, with no identifiable tumor source despite extensive investigations.
- Treatment with anastrozole and bicalutamide led to normalization of β-HCG and testosterone, improved height outcome, and reduced virilization.
Findings:
- The patient later developed a non-secreting pineal GCT at age 14, 8.5 years after initial GIPP presentation.
- This case suggests that GIPP without a clear etiology may be a prodrome for GCTs, necessitating regular radiological surveillance.
Implications:
- GIPP with an initially unknown cause should be considered a potential precursor to GCTs, warranting ongoing monitoring.
- Anastrozole and bicalutamide combination therapy shows promise for managing idiopathic GIPP and achieving favorable height outcomes.
- Regular radiological surveillance is recommended for early detection of GCTs in patients with unexplained GIPP.
Abstract:
Context Germ cell tumours (GCTs) secreting β-human chorionic gonadotropin (β-HCG) are a rare cause of gonadotropin-independent precocious puberty (GIPP). Case description A 5.7-year-old boy presented with GIPP. Investigations to elucidate the underlying cause revealed elevated serum β-HCG. Ultrasound of the abdomen and testes, urine steroid profile, bone isotope scan, and sequencing of the luteinizing hormone receptor gene (LHCGR) were normal. Despite paired serum and cerebrospinal fluid β-HCG measurement suggesting local (brain) β-HCG production, repeated magnetic resonance imaging (MRI) of the brain as well as MRI of the mediastinum did not identify a tumour source of persistently elevated serum β-HCG. Treatment with cyproterone acetate and spironolactone was unsuccessful. Increase in testicular volumes prompted the addition of a gonadotropin releasing hormone (GnRH) analogue. Due to progressing virilisation and skeletal maturation, treatment was changed to a combination of anastrozole and bicalutamide at the age of 7 years. One year later, serum β-HCG and testosterone concentrations spontaneously normalised followed by reductions in the height velocity, skeletal maturation and virilisation. The proband achieved his genetic height potential. No medication side effects were observed. The patient subsequently presented with non-secreting pineal GCT at 14 years, 8½ years after his initial presentation with GIPP. Conclusions Our case highlights that GIPP with no definite underlying aetiology at diagnosis should be considered as a prodrome for GCTs, and regular radiological surveillance for earlier tumour identification is warranted. To the best of our knowledge, our case is the first reported case of the use of anastrozole and bicalutamide in the setting of idiopathic GIPP. The good height outcome in our case warrants the trial of anastrozole and bicalutamide in similar cases.
Related Concept Videos
Signs of Puberty
Introduction to Test of Independence
The test statistic for a test of independence is similar to that of a goodness-of-fit test:
Hypothesis Test for Test of Independence
H0: The two variables (factors)...
Principles of Disease Surveillance
Requirements for Human Life
Oxygen
Atmospheric air is only about 20 percent oxygen, but that oxygen is a key component of the chemical reactions that keep the body alive, including the reactions that produce ATP. Brain cells are susceptible to a lack of oxygen because they require a...
Law of Independent Assortment

