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黄曲霉毒素B1和卵形艾美耳球虫通过破坏绵羊的肠-血液-生殖轴对子宫功能的联合作用的新见解。

New insights into the combined effects of aflatoxin B1 and Eimeria ovinoidalis on uterine function by disrupting the gut-blood-reproductive axis in sheep.

作者信息

Huang Shu-Cheng, Liu Kai-Li, Chen Pan, Xu Bo-Wen, Ding Wen-Li, Yue Tao-Jing, Lu Ya-Nan, Li Sen-Yang, Li Jia-Kui, Jian Fu-Chun

机构信息

College of Veterinary Medicine, Henan Agricultural University, Zhengzhou, 450046, People's Republic of China.

College of Veterinary Medicine, Huazhong Agricultural University, Wuhan, 430070, People's Republic of China.

出版信息

Microbiome. 2024 Dec 20;12(1):269. doi: 10.1186/s40168-024-01966-y.

Abstract

BACKGROUND

Sheep coccidiosis is an infectious parasitic disease that primarily causes diarrhea and growth retardation in young animals, significantly hindering the development of the sheep breeding industry. Cereal grains and animal feeds are frequently contaminated with mycotoxins worldwide, with aflatoxin B1 (AFB1) being the most common form. AFB1 poses a serious threat to gastrointestinal health upon ingestion and affects the function of parenteral organs, thus endangering livestock health. However, the impact of the combined effects of coccidia and AFB1 on the reproductive system of sheep has not been reported. Therefore, this study utilized sheep as an animal model to investigate the mechanisms underlying the reproductive toxicity induced by the individual or combined effects of AFB1 and Eimeria ovinoidalis (E. ovinoidalis) on the gut-blood-reproductive axis.

RESULTS

The results showed that AFB1 and coccidia adversely affect the reproductive system defense of sheep by altering uterine histopathology and hormone levels and triggering inflammation, which is associated with changes in the gut microbiota and metabolites. Moreover, co-exposure to AFB1 and coccidia disrupted the intestinal structure of the colon, resulting in reduced crypt depth. The impaired barrier function of the colon manifests primarily through the suppression of barrier protein expression, changes in the gut microbiome composition, and disruptions in gut metabolism. Importantly, the levels of blood inflammatory factors (IL-6, IL-10, TNF-α, and LPS) increased, suggesting that exposure to AFB1 and coccidia compromises the function of uterine organs in sheep by perturbing the gut-blood-reproductive axis. Blood metabolomics analysis further revealed that the differential metabolites predominantly concentrate in the amino acid pathway, particularly N-acetyl-L-phenylalanine. This metabolite is significantly correlated with IL-6, TNF-α, LPS, ERα, and ERβ, and it influences hormone levels while inducing uterine damage through the regulation of the downstream genes PI3K, AKT, and eNOS in the relaxin signaling pathway, as demonstrated by RNA sequencing.

CONCLUSIONS

These findings reveal for the first time that the combined effects of AFB1 and E. ovinoidalis on sheep uterine function operate at the level of the gut-blood-reproductive axis. This suggests that regulating gut microbiota and its metabolites may represent a potential therapeutic strategy for addressing mycotoxins and coccidia-co-induced female reproductive toxicity.

摘要

背景

绵羊球虫病是一种传染性寄生虫病,主要导致幼畜腹泻和生长发育迟缓,严重阻碍绵羊养殖业的发展。在全球范围内,谷物和动物饲料经常被霉菌毒素污染,其中黄曲霉毒素B1(AFB1)最为常见。AFB1摄入后对胃肠道健康构成严重威胁,并影响非肠道器官的功能,从而危及家畜健康。然而,球虫和AFB1联合作用对绵羊生殖系统的影响尚未见报道。因此,本研究以绵羊为动物模型,探讨AFB1和卵形艾美耳球虫(E. ovinoidalis)单独或联合作用于肠道-血液-生殖轴诱导生殖毒性的机制。

结果

结果表明,AFB1和球虫通过改变子宫组织病理学和激素水平并引发炎症,对绵羊的生殖系统防御产生不利影响,这与肠道微生物群和代谢产物的变化有关。此外,同时暴露于AFB1和球虫会破坏结肠的肠道结构,导致隐窝深度降低。结肠屏障功能受损主要表现为屏障蛋白表达受抑制、肠道微生物群组成改变以及肠道代谢紊乱。重要的是,血液炎症因子(IL-6、IL-10、TNF-α和LPS)水平升高,表明暴露于AFB1和球虫会通过扰乱肠道-血液-生殖轴损害绵羊子宫器官的功能。血液代谢组学分析进一步表明,差异代谢产物主要集中在氨基酸途径,尤其是N-乙酰-L-苯丙氨酸。RNA测序表明,这种代谢产物与IL-6、TNF-α、LPS、ERα和ERβ显著相关,它通过调节松弛素信号通路中的下游基因PI3K、AKT和eNOS来影响激素水平,同时诱导子宫损伤。

结论

这些发现首次揭示了AFB1和卵形艾美耳球虫对绵羊子宫功能的联合作用在肠道-血液-生殖轴水平上发挥作用。这表明调节肠道微生物群及其代谢产物可能是解决霉菌毒素和球虫共同诱导的雌性生殖毒性的潜在治疗策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8b2a/11662449/bd72925a666f/40168_2024_1966_Fig1_HTML.jpg

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