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Published on: September 12, 2019
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1Service Endocrinologie et Oncologie endocrinienne, CHU de Bordeaux, hôpital Haut Lévêque, 33600 Pessac, France.
Abstract:
Multiple endocrine neoplasia (MEN) are genetic predisposition syndromes to endocrine tumors including MEN1, MEN2 and exceptionally MEN4. MEN are transmitted in an autosomal dominant fashion with a high penetrance. Classically, there is no genotype/phenotype correlation for NEM1 whereas this is the case for NEM2. Patients with NEM1, linked to an inactivating mutation of the menin gene, may present with: primary hyperparathyroidism, pituitary adenoma, duodeno-pancreatic neuroendocrine tumors (NETs), bronchial tumors with an increased risk of thymoma, adrenal cortical tumors, an increased risk of breast cancer and characteristic skin involvement such as collagenomas, lentiginomas and an increased risk of skin cancer. These patients require at least annual follow-up. Screening of children is proposed from the age of 5 years. Patients with NEM2, linked to an activating mutation of the RET proto-oncogene, all present with medullary thyroid carcinoma (MTC) at a variable age depending on the genotype. Some patients present a pheochromocytoma (50 %) and hyperparathyroidism (20 %). Pediatric forms with aggressive CMT, ganglioneuromatosis and marfanoid syndrome exist (rare NEM2B). Some mutations are associated with a risk of aggressive CMT, justifying prophylactic thyroidectomy before 6 months of age. The age of genetic testing depends on the mutation subtype in the NEM2 parent. NEM4, related to a mutation in the CDKN1B gene, are rare, with a less well-known pathogenesis and their follow-up is not well codified.
Insights
Multiple endocrine neoplasia (MEN) are inherited syndromes predisposing to endocrine tumors. Understanding MEN1, MEN2, and MEN4 genetic links and associated tumors is crucial for timely diagnosis and management.
Area of Science:
- Endocrinology
- Genetics
- Oncology
Context:
- Multiple endocrine neoplasia (MEN) syndromes (MEN1, MEN2, MEN4) are autosomal dominant genetic disorders.
- MEN1 is linked to menin gene mutations, causing various tumors and skin conditions.
- MEN2 involves RET proto-oncogene mutations, primarily leading to medullary thyroid carcinoma, with variable pheochromocytoma and hyperparathyroidism risks.
Purpose:
- To outline the clinical manifestations and genetic basis of MEN syndromes.
- To highlight the importance of genotype-phenotype correlations, especially in MEN2.
- To emphasize the need for regular screening and early intervention in affected individuals and their children.
Summary:
- MEN1 patients may develop primary hyperparathyroidism, pituitary adenomas, neuroendocrine tumors, and skin lesions, requiring annual follow-up and childhood screening.
- MEN2 patients universally develop medullary thyroid carcinoma, with some experiencing pheochromocytoma or hyperparathyroidism; prophylactic thyroidectomy is recommended for aggressive forms.
- MEN4, linked to CDKN1B mutations, is rare with less defined management protocols.
Impact:
- Improved understanding of MEN syndromes aids in early detection and personalized management strategies.
- Genetic testing and tailored screening protocols can significantly improve patient outcomes and reduce morbidity.
- This knowledge supports the development of targeted therapies and enhances patient counseling regarding prognosis and hereditary risks.
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