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The AMPK Activator ATX-304 Alters Cellular Metabolism to Protect Against Cisplatin-Induced Acute Kidney Injury

BIOMEDICINE & PHARMACOTHERAPY(2024)

Austin Hlth | St Vincents Inst Med Res | Univ Melbourne | Monash Univ | Garvan Inst Med Res

Cited 0|Views23
Abstract
Acute kidney injury (AKI) disrupts energy metabolism. Targeting metabolism through AMP-activated protein kinase (AMPK) may alleviate AKI. ATX-304, a pan-AMPK activator, was evaluated in C57Bl/6 mice and tubular epithelial cell (TEC) cultures. Mice received ATX-304 (1 mg/g) or control chow for 7 days before cisplatin-induced AKI (CI-AKI). Primary cultures of tubular epithelial cells (TECs) were pre-treated with ATX-304 (20 µM, 4 h) prior to exposure to cisplatin (20 µM, 23 h). ATX-304 increased acetyl-CoA carboxylase phosphorylation, indicating AMPK activation. It protected against CI-AKI measured by serum creatinine (control 0.05 + 0.03 mM vs ATX-304 0.02 + 0.01 mM, P = 0.03), western blot for neutrophil gelatinase-associated lipocalin (NGAL) (control 3.3 + 1.8-fold vs ATX-304 1.2 + 0.55-fold, P = 0.002), and histological injury (control 3.5 + 0.59 vs ATX-304 2.7 + 0.74, P = 0.03). In TECs, pre-treatment with ATX-304 protected against cisplatin-mediated injury, as measured by lactate dehydrogenase release, MTS cell viability, and cleaved caspase 3 expression. ATX-304 protection against cisplatin was lost in AMPK-null murine embryonic fibroblasts. Metabolomic analysis in TECs revealed that ATX-304 (20 µM, 4 h) altered 66/126 metabolites, including fatty acids, tricarboxylic acid cycle metabolites, and amino acids. Metabolic studies of live cells using the XFe96 Seahorse analyzer revealed that ATX-304 increased the basal TEC oxygen consumption rate by 38%, whereas maximal respiration was unchanged. Thus, ATX-304 protects against cisplatin-mediated kidney injury via AMPK-dependent metabolic reprogramming, revealing a promising therapeutic strategy for AKI.
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Key words
AMP-activated protein kinase,Acute kidney injury,Cisplatin-induced AKI,Renal energy metabolism,ATX-304
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要点】:研究展示了AMPK激活剂ATX-304通过调节细胞代谢保护肾脏免受顺铂引起的急性肾损伤(CI-AKI),这一发现为AKI的治疗提供了有希望的新策略。

方法】:采用C57Bl/6小鼠和肾小管上皮细胞(TEC)培养进行实验。小鼠在给予顺铂前7天喂食ATX-304(1mg/g)或对照饲料;TEC培养在暴露于顺铂前4小时用ATX-304(20µM)预处理。

实验】:在TEC中,ATX-304预处理保护了细胞免受顺铂介导的损伤,表现为乳酸脱氢酶释放减少、MTS细胞活力增加和caspase 3表达量降低。使用XFe96 Seahorse分析器进行的活细胞代谢研究显示,ATX-304增加了TEC的基础耗氧率,而最大呼吸量保持不变。代谢组学分析表明ATX-304改变了66/126种代谢物,包括脂肪酸、三羧酸循环代谢物和氨基酸。这些结果均表明,AMPK依赖的代谢重编程是ATX-304保护肾脏免受顺铂损伤的机制。