ストレスで高血圧関連の副腎異常細胞ができる仕組みを解明~最先端の空間解析技術により形成過程を可視化、二次性高血圧の病態理解に貢献~

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2025-10-28 九州大学

九州大学大学院医学研究院の中島裕也准教授らは、ストレスが副腎で高血圧関連の異常細胞を誘発する仕組みを世界で初めて解明した。マウス実験で、慢性的なストレス刺激により副腎皮質細胞の一部が過剰に増殖し、アルドステロンを異常分泌する細胞群へ変化することを確認。ストレスホルモン経路を介して転写因子EGR1が活性化し、ホルモン合成関連遺伝子の発現を持続的に高めることが原因であると判明した。ヒト副腎腺腫検体でも同様の分子変化が検出され、心理的ストレスが高血圧症発症の一因となる可能性を示す。今後はこの分子経路を標的とする新たな降圧治療法の開発が期待される。成果は『Nature Communications』誌に掲載。

ストレスで高血圧関連の副腎異常細胞ができる仕組みを解明~最先端の空間解析技術により形成過程を可視化、二次性高血圧の病態理解に貢献~

<関連情報>

アルドステロン産生細胞クラスター形成におけるストレス応答性NR4A2の役割 Role of Stress-Responsive NR4A2 in Aldosterone-Producing Cell Cluster Formation

Norifusa Iwahashi, Hironobu Umakoshi, Yuya Kitamura, Hiroki Kaneko, Masamichi Fujita, Tatsuki Ogasawara, Tazuru Fukumoto, …,and Yoshihiro Ogawa
Hypertension  Published 27 October 2025
DOI:https://doi.org/10.1161/HYPERTENSIONAHA.125.24825

Abstract

BACKGROUND:

Aldosterone-producing cell clusters (APCCs), which share some transcriptomic features with aldosterone-producing adenomas, are frequently observed in the adrenal cortex of aged individuals and those with primary aldosteronism. However, the mechanisms driving APCC formation remain poorly understood.

METHODS:

We performed an integrated analysis using spatial transcriptomics and single-cell RNA sequencing of APCC cells, aldosterone-producing adenoma cells, and zona glomerulosa (ZG) cells present in the same adrenal gland of a patient with unilateral primary aldosteronism, with validation analyses conducted on tissue samples from 2 additional patients.

RESULTS:

APCC cells exhibited a distinct cellular population with a gene expression profile more similar to that of the ZG cells than that of aldosterone-producing adenoma cells. In silico perturbation and in vitro studies suggest that the stress-responsive TF (transcription factor) NR4A2 is activated in ZG cells in response to a variety of stresses, such as ACTH (adrenocorticotropic hormone) stimulation, thereby promoting the progression from ZG to APCC cells.

CONCLUSIONS:

Our findings suggest that NR4A2 activation in ZG cells functions as a key molecular mediator in stress-induced APCC formation at least in some cases. Some APCCs maintained ZG-like characteristics with heightened stress responsiveness, representing a distinct cellular state from aldosterone-producing adenomas, which exhibit metabolic reprogramming and enhanced energy metabolism.

医療・健康
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