Erucin Alleviates Cardiac Hypertrophy by Improving Mitochondrial Function via Nrf2-Sirt3 Pathway.

IF 6.3 2区 医学 Q1 CHEMISTRY, MEDICINAL
Shushu Jiang, Cheng Wang, Yin Dong, Long Chen, Menghao Shi, Fengxiao Zhang, Zhaohui Wang, Minglu Liang
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引用次数: 0

Abstract

Numerous studies have documented erucin's anticancer and vasodilatory properties, yet its impact on pathological cardiac hypertrophy remains to be fully understood. This study aimed to explore the therapeutic potential of erucin in cardiac hypertrophy induced by pressure overload. Cardiac hypertrophy was induced in mice by transverse aortic constriction (TAC) surgery, and in neonatal rat cardiomyocytes via phenylephrine (PE) treatment. Cardiac function and remodeling were evaluated using echocardiography, histological assessment, and molecular analyses. Mitochondrial function was assessed by measuring mitochondrial respiration, ATP concentration, the NAD+/NADH ratio, and reactive oxygen species (ROS) levels. Molecular docking was performed to identify erucin's downstream effector. Nrf2 and Sirt3 were silenced using siRNAs, and their activities were inhibited with ML385 and 3-TYP, respectively. Here, we found that erucin improved cardiac function and remodeling in TAC-induced hypertrophic mice, mitigated PE-induced cell hypertrophy, and restored mitochondrial function. Molecular docking analysis identified Nrf2 as a target protein of erucin. Erucin increased Nrf2 protein levels and activated the Nrf2 signaling pathway, which in turn promoted Sirt3 transcription. This effect was blocked by silencing Nrf2 or using ML385. Additionally, silencing Nrf2 and Sirt3 or using ML385 and 3-TYP abolished erucin's protective effects. This study is the first to demonstrate that erucin protects against cardiac hypertrophy by improving mitochondrial function through the activation of the Nrf2-Sirt3 pathway. Erucin may emerge as a promising therapeutic candidate for treating cardiac hypertrophy.

Erucin通过Nrf2-Sirt3途径改善线粒体功能减轻心肌肥厚。
许多研究已经证实了erucin的抗癌和血管扩张特性,但其对病理性心脏肥厚的影响仍有待充分了解。本研究旨在探讨erucin对压力过载引起的心肌肥厚的治疗潜力。横断主动脉缩窄术(TAC)诱导小鼠心肌肥厚,苯肾上腺素(PE)诱导新生大鼠心肌细胞肥厚。使用超声心动图、组织学评估和分子分析评估心功能和重构。通过测量线粒体呼吸、ATP浓度、NAD+/NADH比值和活性氧(ROS)水平来评估线粒体功能。通过分子对接来鉴定erucin的下游效应物。Nrf2和Sirt3被sirna沉默,它们的活性分别被ML385和3-TYP抑制。本研究发现,erucin改善tac诱导的肥厚小鼠的心功能和重塑,减轻pe诱导的细胞肥厚,恢复线粒体功能。分子对接分析证实Nrf2是erucin的靶蛋白。Erucin增加Nrf2蛋白水平,激活Nrf2信号通路,进而促进Sirt3转录。这种效应可以通过沉默Nrf2或使用ML385来阻断。此外,沉默Nrf2和Sirt3或使用ML385和3-TYP可消除erucin的保护作用。本研究首次证明,erucin通过激活Nrf2-Sirt3通路改善线粒体功能,从而防止心肌肥厚。Erucin可能成为治疗心脏肥厚的有希望的治疗候选药物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Phytotherapy Research
Phytotherapy Research 医学-药学
CiteScore
12.80
自引率
5.60%
发文量
325
审稿时长
2.6 months
期刊介绍: Phytotherapy Research is an internationally recognized pharmacological journal that serves as a trailblazing resource for biochemists, pharmacologists, and toxicologists. We strive to disseminate groundbreaking research on medicinal plants, pushing the boundaries of knowledge and understanding in this field. Our primary focus areas encompass pharmacology, toxicology, and the clinical applications of herbs and natural products in medicine. We actively encourage submissions on the effects of commonly consumed food ingredients and standardized plant extracts. We welcome a range of contributions including original research papers, review articles, and letters. By providing a platform for the latest developments and discoveries in phytotherapy, we aim to support the advancement of scientific knowledge and contribute to the improvement of modern medicine.
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