Activation of branched chain amino acid catabolism protects against nephrotoxic acute kidney injury.
分岐鎖アミノ酸異化の活性化は腎毒性急性腎障害を防護する (機械翻訳の邦題)
記録の確認項目
- 研究デザイン
- その他の原著論文
- 対象
- 動物
- 出版年
- 2025
- 出典
- doi.org
- 抄録の表示
- 表示あり
- 出版状態
- 有効な記録
- 状態確認日
- 2026/08/17
- 収集日
- 2026/08/03
- 鮮度
- 確認期限内
- 確認段階
- 自動処理
- 記録状態
- 公開
日本語要約(機械生成)
急性腎障害(AKI)は慢性腎臓病の主要な危険因子であるが、治療法はない。近位尿細管はアリストロキア酸I(AAI)などの腎毒性物質に特に感受性が高い。正常な近位尿細管は脂肪酸酸化と分岐鎖アミノ酸(BCAA)異化を利用してATPを産生するが、AKIではこれらの経路が低下する。本研究では、BCAA異化の薬理学的活性化因子BT2の腎毒性AKI予防効果を検討した。マウスにAAIを3日間隔で2回投与してAKIを誘発し、BT2を毎日投与した。BT2投与群では、血清クレアチニンと尿素窒素の低下、組織学的損傷の軽減、近位尿細管の保存、炎症性遺伝子発現の低下が認められた。AKIマウスでは循環BCAAと腎皮質のBCAA蓄積が増加し、mTORC1シグナルが活性化したが、BT2はこれらを抑制した。in vitroでは、BT2は損傷した近位尿細管細胞のミトコンドリア生体エネルギーを部分的に回復させた。以上から、BT2によるBCAA異化の薬理学的活性化はマウスの腎毒性AKIを減弱させた。
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抄録
Acute kidney injury (AKI) is a major risk factor for chronic kidney disease (CKD), and there are currently no therapies for AKI. Proximal tubules (PTs) are particularly susceptible to AKI, due to nephrotoxins such as aristolochic acid I (AAI). Normal PTs use fatty acid oxidation and branched chain amino acid (BCAA; valine, leucine, and isoleucine) catabolism to generate ATP; however, in AKI, these pathways are downregulated. Our aim was to investigate the utility of a pharmacological activator of BCAA catabolism, BT2, in preventing nephrotoxic AKI. Mice were administered two injections of AAI 3 days apart to induce AKI, with or without daily BT2 treatment. Mice treated with BT2 had significantly protected kidney function (reduced serum creatinine and urea nitrogen), reduced histological injury, preservation of PT (Lotus lectin staining), and less PT injury (cytokeratin-20 staining) and inflammatory gene expression compared with mice with AAI alone. Mice with AKI had increased circulating BCAA and accumulation of BCAA in the kidney cortex. Leucine is a potent activator of the mechanistic target of rapamycin complex 1 (mTORC1) signaling, and mTORC1 signaling was activated in mice treated with AAI. However, BT2 reduced kidney cortical BCAA accumulation and attenuated the mTORC1 signaling. In vitro, injured primary PT cells had compromised mitochondrial bioenergetics, but cells treated with AAI + BT2 had partially restored mitochondrial bioenergetics and improved injury markers compared with cells treated with AAI alone. Thus, pharmacological activation of BCAA catabolism using BT2 attenuated nephrotoxic AKI in mice.NEW & NOTEWORTHY This study explored the effects of pharmacological activation of branched chain amino acid (BCAA) catabolism using BT2 to prevent nephrotoxic acute kidney injury (AKI) in mice. Our results indicate that activation of BCAA catabolism protects against nephrotoxic AKI, in association with reduced BCAA accumulation, reduced mammalian target of rapamycin protein complex 1 signaling, and improved mitochondrial bioenergetics.
MeSH
DOI 10.1152/ajprenal.00260.2024
PMID 39653371
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