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Published on: September 15, 2017
Histopathology and Genetic Causes of Primary Aldosteronism in Young Adults
Kazutaka Nanba1,2, Jessica E Baker1, Amy R Blinder1
1Department of Molecular and Integrative Physiology, University of Michigan, Ann Arbor, MI, 48109, USA.
Context:
Due to its rare incidence, molecular features of primary aldosteronism (PA) in young adults are largely unknown. Recently developed targeted mutational analysis identified aldosterone-driver somatic mutations in aldosterone-producing lesions, including aldosterone-producing adenomas (APAs), aldosterone-producing nodules (APNs), and aldosterone-producing micronodules, formerly known as aldosterone-producing cell clusters.
Objective:
To investigate histologic and genetic characteristics of lateralized PA in young adults.
Methods:
Formalin-fixed, paraffin-embedded adrenal tissue sections from 74 young patients with lateralized PA (<35 years old) were used for this study. Immunohistochemistry (IHC) for aldosterone synthase (CYP11B2) was performed to define the histopathologic diagnosis. Somatic mutations in aldosterone-producing lesions were further determined by CYP11B2 IHC-guided DNA sequencing.
Results:
Based on the CYP11B2 IHC results, histopathologic classification was made as follows: 48 APAs, 20 APNs, 2 multiple aldosterone-producing nodules (MAPN), 1 double APN, 1 APA with MAPN, and 2 nonfunctioning adenomas (NFAs). Of 45 APAs with successful sequencing, 43 (96%) had somatic mutations, with KCNJ5 mutations being the most common genetic cause of young-onset APA (35/45, 78%). Of 18 APNs with successful sequencing, all of them harbored somatic mutations, with CACNA1D mutations being the most frequent genetic alteration in young-onset APN (8/18, 44%). Multiple CYP11B2-expressing lesions in patients with MAPN showed several aldosterone-driver mutations. No somatic mutations were identified in NFAs.
Conclusion:
APA is the most common histologic feature of lateralized PA in young adults. Somatic KCNJ5 mutations are common in APAs, whereas CACNA1D mutations are often seen in APNs in this young PA population.
Insights
Primary aldosteronism (PA) in young adults is rare, with specific molecular features being unknown. This study found KCNJ5 mutations in aldosterone-producing adenomas (APAs) and CACNA1D mutations in aldosterone-producing nodules (APNs) in young PA patients.
Area of Science:
- Endocrinology and Molecular Genetics
- Oncology and Cancer Genetics
Background:
- Primary aldosteronism (PA) in young adults is infrequently studied, leaving its molecular underpinnings largely unexplored.
- Aldosterone-producing lesions, including adenomas (APAs) and nodules (APNs), are increasingly recognized as driven by somatic mutations.
Purpose of the Study:
- To elucidate the distinct histologic and genetic profiles of lateralized PA in individuals under 35 years old.
- To identify specific molecular drivers associated with aldosterone-producing adenomas and nodules in a young patient cohort.
Main Methods:
- Analysis of 74 adrenal tissue samples from young patients (<35 years) with lateralized PA.
- Immunohistochemistry (IHC) for aldosterone synthase (CYP11B2) to guide histopathologic diagnosis.
- Targeted DNA sequencing of aldosterone-producing lesions identified via CYP11B2 IHC to detect somatic mutations.
Main Results:
- Aldosterone-producing adenomas (APAs) were the most frequent histologic finding (48/74).
- Somatic mutations were identified in 96% of APAs, with KCNJ5 mutations being the predominant cause (78%).
- Somatic mutations were present in 100% of aldosterone-producing nodules (APNs), with CACNA1D mutations being most common (44%).
Conclusions:
- Aldosterone-producing adenomas (APAs) represent the most common histologic subtype of lateralized PA in young adults.
- Somatic KCNJ5 mutations are significantly associated with APAs, while CACNA1D mutations are frequently observed in APNs within this demographic.
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