Secondary bile acids in portal blood contribute to liver regeneration in a rat model of partial hepatectomy.

IF 3.9 3区 医学 Q1 GASTROENTEROLOGY & HEPATOLOGY American journal of physiology. Gastrointestinal and liver physiology Pub Date : 2024-07-16 DOI:10.1152/ajpgi.00301.2023
Impreet Kaur, Pinky Juneja, Rajnish Tiwari, Ashwini Vasudevan, Akash K Mourya, Michael Trauner, Shiv K Sarin, Dinesh M Tripathi, Savneet Kaur
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Abstract

Gut metabolites via the portal vein affect several liver functions, including regeneration. Here, we investigated gut microbiota-derived metabolites in portal and peripheral serum during liver regeneration. We developed rat models of 70% partial hepatectomy (PHx) with and without prior gut microbiota modulation by three-week antibiotic (Abx) treatment. Sham without Abx were used as controls and compared to sham with Abx. Liver regeneration at day 2 following PHx was assessed by expression of proliferating cell nuclear antigen (PCNA) protein in liver tissues and cyclin genes in primary hepatocytes. High pressure liquid chromatography-mass spectrometry (HPLC-MS) based portal and peripheral venous serum metabolomics was performed to identify differentially altered metabolites (DAMs). Compared to controls, rat livers at day 2 post-PHx showed significant upregulation in the average number of PCNA-positive cells, which positively correlated with the expression of cell cycle genes in hepatocytes. In Abx-treated PHx, we observed reduced PCNA-positivity and downregulation in gene expression of various cyclins in hepatocytes compared to PHx. We identified 224 DAMs between controls vs PHx and 189 DAMs between Abx-treated PHx vs PHx in portal serum. Many common DAMs showed opposite expression trends in PHx vs controls and then Abx+PHx vs PHx in portal serum, such as sphingosine-1-phosphate and deoxycholic acid. In vitro studies with deoxycholic acid demonstrated that it enhanced the viability and proliferation of primary hepatocytes and hepatocyte organoids. The study underscores the critical role of deoxycholic acid in portal blood in enhancing hepatocyte proliferation and subsequently, liver regeneration.

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门静脉血液中的次级胆汁酸有助于肝部分切除术大鼠模型的肝脏再生。
肠道代谢物通过门静脉影响肝脏的多种功能,包括再生。在此,我们研究了肝脏再生过程中门静脉和外周血清中的肠道微生物群衍生代谢物。我们建立了 70% 部分肝切除术(PHx)大鼠模型,并通过为期三周的抗生素(Abx)治疗事先调节和未调节肠道微生物群。不使用抗生素的假大鼠作为对照组,并与使用抗生素的假大鼠进行比较。通过肝组织中的增殖细胞核抗原(PCNA)蛋白和原代肝细胞中的细胞周期蛋白基因的表达来评估PHx后第2天的肝脏再生情况。基于高压液相色谱-质谱联用技术(HPLC-MS)的门静脉和外周静脉血清代谢组学研究旨在鉴定差异改变的代谢物(DAMs)。与对照组相比,PHx 后第 2 天的大鼠肝脏显示 PCNA 阳性细胞的平均数量显著上调,这与肝细胞中细胞周期基因的表达呈正相关。在经 Abx 处理的 PHx 中,与 PHx 相比,我们观察到肝细胞中 PCNA 阳性降低,各种细胞周期蛋白的基因表达下调。在门静脉血清中,我们在对照组与 PHx 之间发现了 224 个 DAMs,在经 Abx 处理的 PHx 与 PHx 之间发现了 189 个 DAMs。许多常见的 DAMs 在 PHx 与对照组以及 Abx+PHx 与门静脉血清中的 PHx 之间呈现出相反的表达趋势,如鞘磷脂-1-磷酸和脱氧胆酸。脱氧胆酸的体外研究表明,它能增强原代肝细胞和肝细胞器官组织的活力和增殖。这项研究强调了门静脉血液中的脱氧胆酸在促进肝细胞增殖以及随后的肝脏再生方面的关键作用。
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来源期刊
CiteScore
9.40
自引率
2.20%
发文量
104
审稿时长
1 months
期刊介绍: The American Journal of Physiology-Gastrointestinal and Liver Physiology publishes original articles pertaining to all aspects of research involving normal or abnormal function of the gastrointestinal tract, hepatobiliary system, and pancreas. Authors are encouraged to submit manuscripts dealing with growth and development, digestion, secretion, absorption, metabolism, and motility relative to these organs, as well as research reports dealing with immune and inflammatory processes and with neural, endocrine, and circulatory control mechanisms that affect these organs.
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