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Juvenile Hemochromatosis Connecting Cardiac Arrest and Hypogonadotropic Hypogonadism in a Young Woman
Kevin Alexander Zinecker1, Aleksandra Sliwinska2, Leah M Wilson2
1Department of Internal Medicine, Oregon Health Sciences University Hillsboro Medical Center, Hillsboro, OR 97123, USA.
Insights
Juvenile hemochromatosis (JH) is a rare genetic disorder causing iron overload. Early screening in patients with endocrine dysfunction is crucial to prevent severe organ damage.
Area of Science:
- Genetics
- Endocrinology
- Cardiology
Background:
- Juvenile hemochromatosis (JH) is a severe genetic disorder causing excessive iron accumulation.
- Iron deposition can lead to critical organ damage, including the heart, liver, and endocrine glands.
- Endocrine dysfunction often precedes overt organ damage in JH.
Abstract:
Juvenile hemochromatosis (JH) is a subtype of hereditary hemochromatosis, a genetic disorder characterized by excessive iron absorption and deposition in various organs, leading to cardiomyopathy, cirrhosis, and diabetes. Endocrine dysfunction is a common manifestation and may appear years before end-organ damage. This report describes a rare case of JH, emphasizing the consequences of delayed diagnosis. A 28-year-old woman with a history of hypogonadotropic hypogonadism presented with cardiac arrest complicated by acute renal failure and cerebral vascular accidents. She initially exhibited signs of severe cardiomyopathy and multiorgan failure, which led to workup for an underlying cause. Laboratory values showed significantly elevated ferritin and transferrin saturation. Subsequent genetic screening revealed HJV gene pathogenic variants consistent with juvenile hemochromatosis. Treatment involved aggressive iron chelation therapy and outpatient referral for cardiac transplant. This case calls for heightened awareness and early screening of JH, particularly among patients with unexplained endocrine dysfunction. Early diagnosis and treatment are paramount in preventing irreversible organ damage and improving patient outcomes.
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