1.Recurrent Ischemic Stroke Two Decades After Craniospinal Radiotherapy for Suprasellar Germinoma: A Case of Suspected Radiation-Induced Cerebrovascular Disease
Choon Peng Sun ; Ahmad Affan bin Hassannuddin
Journal of the ASEAN Federation of Endocrine Societies 2026;41(S1):98-
Introduction:
Cranial radiotherapy is an established treatment for
intracranial germinoma but may lead to late cerebrovascular
complications including radiation-induced vasculopathy,
cavernoma formation, and premature intracranial
atherosclerosis. These complications may manifest many
years after treatment and represent an important cause of
stroke in young adult survivors of brain tumors.
Case:
We report a 39-year-old male with a history of suprasellar
germinoma treated with transsphenoidal surgery followed
by craniospinal radiotherapy in 2006. He subsequently
developed panhypopituitarism requiring lifelong hormone
replacement therapy. In October 2024, he experienced
a cerebrovascular accident resulting in mild residual
right-sided weakness. Brain magnetic resonance imaging
demonstrated multifocal old infarcts, small vessel disease
(Fazekas grade 2), and multiple susceptibility artifacts
suggestive of radiation-induced cavernomas.In March 2026, he presented with new onset right-sided
weakness and facial asymmetry. Initial neurological
examination revealed right-sided motor power of 4/5.
Computed tomography of the brain showed no acute
intracranial hemorrhage but confirmed multiple old infarcts
and small vessel ischemic changes. Computed tomography
angiography revealed intracranial atherosclerotic disease
with 25–50% stenosis of the cavernous segments of both
internal carotid arteries and mild irregularities of posterior
circulation vessels without evidence of large vessel
occlusion or aneurysm.
Radiation-induced vasculopathy is a recognized delayed
complication of cranial irradiation, often presenting 5–25
years after treatment. Pathophysiological mechanisms
include endothelial injury, accelerated atherosclerosis, and
progressive arterial stenosis. In rare cases, cranial irradiation
may also lead to secondary Moyamoya syndrome,
characterized by progressive stenosis of the intracranial
internal carotid arteries with development of collateral
vessels. Although this patient’s vascular imaging did not
demonstrate the characteristic collateral network seen in
Moyamoya syndrome, it remains an important differential
diagnosis in young patients presenting with recurrent
stroke after cranial irradiation. In this patient, young age,
prior cranial irradiation, multifocal infarcts, and coexisting
radiation-induced cavernomas strongly suggest radiationrelated cerebrovascular disease as a major contributor to
recurrent stroke.
Conclusion
Long-term survivors of intracranial germinoma treated
with cranial radiotherapy remain at risk of delayed
cerebrovascular complications. Early recognition and
aggressive secondary stroke prevention, along with
continued neurological surveillance, are essential to reduce
morbidity in this population.
Ischemic Stroke
;
Germinoma
2.Unexpected Cardiovascular Collapse After Radioiodine Therapy in a Patient with Severe Graves' Cardiomyopathy
Choon Peng Sun ; Ahmad Affan Bin Hassannuddin
Journal of the ASEAN Federation of Endocrine Societies 2026;41(S1):111-112
Introduction:
Graves’ disease may lead to thyrotoxic cardiomyopathy,
a potentially reversible condition following restoration of
euthyroidism. Radioiodine (RAI) therapy is commonly
used as definitive treatment for patients with long-standing
Graves’ disease or poor compliance with antithyroid
medications. However, individuals with severe underlying
cardiomyopathy may remain vulnerable to cardiovascular
instability during the peri-treatment period.
Case:
We report a 39-year-old male with a 10-year history of
Graves’ disease who had previously defaulted on follow-up
and was admitted with thyroid storm. Echocardiography
during that admission demonstrated severe dilated
cardiomyopathy with global hypokinesia and an ejection
fraction (EF) of 26%. Following treatment with carbimazole
and propranolol, he achieved biochemical euthyroidism
and remained clinically stable (NYHA class I). In view
of his long-standing disease and prior thyroid storm, he
underwent RAI therapy as definitive therapy as per the
guidelines.
One week following RAI, he developed a persistent cough
and progressive dyspnea. Six weeks later, he presented to
the emergency department with hypotension (BP 60/31
mmHg) and new-onset atrial fibrillation (heart rate 100
bpm), requiring intubation and inotropic support for
cardiogenic shock. Laboratory evaluation showed low free T4 (5.31 pmol/L) with normal thyroid-stimulating hormone
(2.1 mIU/L). Repeat echocardiography demonstrated
persistent severe left ventricular dysfunction (EF ~25%)
without new structural abnormalities. The patient
improved rapidly with supportive management and was
successfully extubated after stabilization.
Although RAI is considered a safe and effective definitive
therapy, transient thyroid hormone fluctuations and
inflammatory thyroid destruction may occur following
treatment. In patients with severe pre-existing cardiomyopathy, these physiological changes may precipitate
arrhythmias or acute cardiac decompensation. In this case,
new-onset atrial fibrillation in the setting of markedly
reduced myocardial reserve likely triggered cardiogenic
shock despite biochemical euthyroidism.
Conclusion
This case highlights that patients with advanced Graves’
cardiomyopathy may remain at risk of acute cardiovascular
deterioration following RAI therapy. Careful cardiovascular
risk assessment, optimization of heart failure therapy,
and close monitoring after definitive treatment should be
considered in this high-risk population.


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