暴露于醋酸棉酚的雏鹅的组织生理学、转录组学和代谢组学的综合分析:揭示肝毒性机制。

IF 3.1 2区 农林科学 Q1 VETERINARY SCIENCES Frontiers in Veterinary Science Pub Date : 2025-01-21 eCollection Date: 2025-01-01 DOI:10.3389/fvets.2025.1527284
Jun Yu, Haiming Yang, Jian Wang, Zixin Huang, Shi Chen, Hongchang Zhao, Jun Wang, Zhiyue Wang
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引用次数: 0

摘要

棉籽粕在家禽饲料中是一种很有前途的豆粕替代品,但对游离棉酚的担忧限制了其使用。尽管游离棉酚的一般毒性是众所周知的,但其对肝脏(其主要积聚部位)的特殊影响还没有得到彻底的研究,特别是在分子水平上。本研究通过形态学、转录组学和代谢组学的综合分析,研究了醋酸棉酚(GA)对雏鹅的肝毒性作用。选取体重相近的7日龄雄性雏鹅48只,随机分为两组:对照组给予生理盐水(0.9%,2.5 mL/kg BW), GA处理组给予GA 50 mg/kg BW口服,持续14 d。组织学分析显示肝损伤的迹象,包括颗粒变性、肝细胞增大、坏死和线粒体损伤。转录组学分析鉴定出1137个差异表达基因,其中702个上调,435个下调。主要影响途径包括碳代谢、糖酵解/糖异生、丙酮酸代谢、丙酸代谢、TCA循环、脂肪酸降解、初级胆酸生物合成、色氨酸代谢、半胱氨酸和蛋氨酸代谢、局灶黏附和PPAR信号通路。代谢组学分析显示109种差异代谢物,82种上调,27种下调,暗示亚油酸代谢、花生四烯酸代谢、cAMP信号传导和5 -羟色胺能突触通路的中断。总的来说,ga诱导的肝毒性包括能量产生受损、脂质代谢中断和肝局灶粘连异常,导致肝细胞功能障碍。这些发现强调了线粒体和关键代谢途径的脆弱性,为GA毒性的分子机制提供了见解,并指导了未来减轻GA诱导的雏鹅肝损伤的研究。
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Comprehensive analysis of histophysiology, transcriptomics and metabolomics in goslings exposed to gossypol acetate: unraveling hepatotoxic mechanisms.

Cottonseed meal is a promising alternative to soybean meal in poultry feed, but concerns over free gossypol limit its use. Although the general toxicity of free gossypol is well-known, its specific effects on the liver-the primary site where it accumulates-are less thoroughly studied, particularly at the molecular level. This study investigated the hepatotoxic effects of gossypol acetate (GA) on goslings through a comprehensive analysis combining morphology, transcriptomics, and metabolomics. Forty-eight 7-day-old male goslings with similar body weight (BW) were randomly assigned to two groups: a control group, receiving a saline solution (0.9%, 2.5 mL/kg BW), and a GA-treated group, administered GA at 50 mg/kg BW orally for 14 days. Histological analysis revealed signs of liver damage, including granular degeneration, hepatocyte enlargement, necrosis, and mitochondrial injury. Transcriptomic analysis identified 1,137 differentially expressed genes, with 702 upregulated and 435 downregulated. Key affected pathways included carbon metabolism, glycolysis/gluconeogenesis, pyruvate metabolism, propanoate metabolism, TCA cycle, fatty acid degradation, primary bile acid biosynthesis, tryptophan metabolism, cysteine and methionine metabolism, focal adhesion, and the PPAR signaling pathway. Metabolomic analysis revealed 109 differential metabolites, 82 upregulated and 27 downregulated, implicating disruptions in linoleic acid metabolism, arachidonic acid metabolism, cAMP signaling, and serotonergic synapse pathways. Overall, GA-induced hepatotoxicity involves impaired energy production, disrupted lipid metabolism, and abnormal liver focal adhesion, leading to liver cell dysfunction. These findings highlight the vulnerability of mitochondria and critical metabolic pathways, providing insights into the molecular mechanisms of GA toxicity and guiding future studies on mitigating GA-induced liver damage in goslings.

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来源期刊
Frontiers in Veterinary Science
Frontiers in Veterinary Science Veterinary-General Veterinary
CiteScore
4.80
自引率
9.40%
发文量
1870
审稿时长
14 weeks
期刊介绍: Frontiers in Veterinary Science is a global, peer-reviewed, Open Access journal that bridges animal and human health, brings a comparative approach to medical and surgical challenges, and advances innovative biotechnology and therapy. Veterinary research today is interdisciplinary, collaborative, and socially relevant, transforming how we understand and investigate animal health and disease. Fundamental research in emerging infectious diseases, predictive genomics, stem cell therapy, and translational modelling is grounded within the integrative social context of public and environmental health, wildlife conservation, novel biomarkers, societal well-being, and cutting-edge clinical practice and specialization. Frontiers in Veterinary Science brings a 21st-century approach—networked, collaborative, and Open Access—to communicate this progress and innovation to both the specialist and to the wider audience of readers in the field. Frontiers in Veterinary Science publishes articles on outstanding discoveries across a wide spectrum of translational, foundational, and clinical research. The journal''s mission is to bring all relevant veterinary sciences together on a single platform with the goal of improving animal and human health.
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