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发情间期宫内灌注美洛昔康对奶牛组织营养物的代谢组学影响

Metabolomic effects of intrauterine meloxicam perfusion on histotroph in dairy heifers during diestrus.

作者信息

Zhang Beibei, Han Yuan, Cheng Ming, Yan Longgang, Gao Kangkang, Zhou Dong, Wang Aihua, Lin Pengfei, Jin Yaping

机构信息

Key Laboratory of Animal Biotechnology of the Ministry of Agriculture, College of Veterinary Medicine, Northwest A&F University, Yangling, Shaanxi, China.

Department of Clinical Veterinary Medicine, College of Veterinary Medicine, Northwest A&F University, Yangling, Shaanxi, China.

出版信息

Front Vet Sci. 2025 Mar 18;12:1528530. doi: 10.3389/fvets.2025.1528530. eCollection 2025.

Abstract

In ruminants, conceptus elongation is a crucial developmental process that depends on uterine lumen fluid (ULF) and coincides with a period of high pregnancy loss. Prostaglandins (PGs) play indispensable roles in conceptus elongation and implantation. However, the effects of uterus-derived PGs on the uterine environment remain unclear. To explore the metabolic pathways and metabolites induced by endometrium-derived PGs that may affect conceptus elongation and implantation in dairy cows, we investigated the biochemical composition of ULF following intrauterine perfusion of meloxicam from days 12 to 14 of the estrous cycle. Intrauterine administration of meloxicam significantly downregulated the prostaglandin-related metabolites in the ULF. A total of 385 distinct metabolites, primarily clustered within lipids and lipid-like molecules, organic acids and derivatives, organoheterocyclic compounds, and benzenoids, were identified. The metabolite network analysis identified 10 core metabolites as follows: S-adenosylhomocysteine, guanosine, inosine, thymidine, cholic acid, xanthine, niacinamide, prostaglandin I2, 5-hydroxyindoleacetic acid, and indoleacetaldehyde. The pathway enrichment analysis revealed three significantly altered metabolic pathways: arachidonic acid metabolism, tryptophan (Trp) metabolism, and linoleic acid metabolism. A total of five metabolites-guanosine, inosine, thymidine, butyryl-l-carnitine, and l-carnitine-were associated with attachment and pregnancy loss and could serve as predictors of fertility. This global metabolic study of ULF enhances our understanding of histotroph alternations induced by uterus-derived PGs during diestrus in dairy cows, with implications for improving dairy cow fertility.

摘要

在反刍动物中,孕体伸长是一个关键的发育过程,它依赖于子宫腔液(ULF),并且与高妊娠损失期相吻合。前列腺素(PGs)在孕体伸长和着床中发挥着不可或缺的作用。然而,子宫来源的PGs对子宫环境的影响仍不清楚。为了探索可能影响奶牛孕体伸长和着床的子宫内膜来源的PGs诱导的代谢途径和代谢产物,我们在发情周期的第12至14天对奶牛进行子宫内灌注美洛昔康后,研究了ULF的生化组成。子宫内给予美洛昔康显著下调了ULF中与前列腺素相关的代谢产物。共鉴定出385种不同的代谢产物,主要集中在脂质和类脂分子、有机酸及其衍生物、有机杂环化合物和苯类化合物中。代谢产物网络分析确定了10种核心代谢产物,分别为:S-腺苷同型半胱氨酸、鸟苷、肌苷、胸苷、胆酸、黄嘌呤、烟酰胺、前列腺素I2、5-羟吲哚乙酸和吲哚乙醛。通路富集分析揭示了三条显著改变的代谢途径:花生四烯酸代谢、色氨酸(Trp)代谢和亚油酸代谢。共有5种代谢产物——鸟苷、肌苷、胸苷、丁酰-L-肉碱和L-肉碱——与附着和妊娠损失相关,可作为生育能力的预测指标。这项对ULF的全面代谢研究增进了我们对奶牛发情间期子宫来源的PGs诱导的组织营养变化的理解,对提高奶牛生育能力具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ff35/11959509/368bc5e678d3/fvets-12-1528530-g001.jpg

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