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基于核磁共振光谱的无菌大鼠适应过程中尿液代谢物变化的代谢组学研究。

NMR spectroscopic-based metabonomic studies of urinary metabolite variation in acclimatizing germ-free rats.

作者信息

Nicholls Andrew W, Mortishire-Smith Russell J, Nicholson Jeremy K

机构信息

Biological Chemistry, Faculty of Medicine, Imperial College London, Sir Alexander Fleming Building, South Kensington, London SW7 2AZ, United Kingdom.

出版信息

Chem Res Toxicol. 2003 Nov;16(11):1395-404. doi: 10.1021/tx0340293.

Abstract

Understanding metabolic variation in "normal" animals is critical to the evaluation of drug-induced metabolic perturbation related to toxicity or pharmacology. NMR spectroscopic-based metabonomic methods were used to evaluate the acclimatization pathways of germ-free (axenic) rats to standard laboratory conditions concomitant with the associated development of gut microfloral communities. Urine samples from male Fischer 344 germ-free rats were collected over 21 days following introduction to a standard laboratory environment and analyzed using NMR spectroscopy. NMR spectra were data-reduced and analyzed using principal component analysis to visualize the changes in the host metabolic trajectory over the course of the study. At days 2 and 6 of the acclimatization process, there were marked episodes of glycosuria. In comparison to the concentrations in the 0-6 h samples, there was a reduction in the level of the tricarboxylic acid cycle intermediates (citrate, 2-oxoglutarate, and succinate) from 6 h to day 6, after which there was a sustained increase until the end of the study. The concentrations of hippurate and trimethylamine N-oxide increased over the course of the study in comparison to the levels at 0-6 h, with the most pronounced increase in the former between days 17 and 21. Phenylacetylglycine levels increased after 6 h whereas 3-hydroxypropionic acid was observed at day 12 and increased up to day 17. By day 21, the urinary metabolic profile was within the control range when compared to historical data, implying the establishment of a stable gut microflora. Although the metabolic alterations caused by the microbial alterations were not as substantial as those from metabolic dysfunction, their presence does have an effect on the interpretation of the profiles, the state of the animal, and the mechanism for the cause of such alterations. Furthermore, the use of oral drug delivery will have an effect on the microbial state, not only as a direct influence of the drug but also from it's associated vehicle. Such effects are likely to be observed particularly in the area of preclinical investigation where the data from these studies are of particular relevance.

摘要

了解“正常”动物的代谢变化对于评估与毒性或药理学相关的药物诱导的代谢扰动至关重要。基于核磁共振光谱的代谢组学方法用于评估无菌(无特定病原体)大鼠适应标准实验室条件的途径以及伴随的肠道微生物群落的相关发育。在将雄性Fischer 344无菌大鼠引入标准实验室环境后的21天内收集尿液样本,并使用核磁共振光谱进行分析。核磁共振光谱数据经过简化处理,并使用主成分分析进行分析,以可视化研究过程中宿主代谢轨迹的变化。在适应过程的第2天和第6天,出现了明显的糖尿发作。与0 - 6小时样本中的浓度相比,三羧酸循环中间体(柠檬酸、2 - 氧代戊二酸和琥珀酸)的水平从6小时到第6天有所降低,此后持续增加直至研究结束。与0 - 6小时的水平相比,马尿酸盐和氧化三甲胺的浓度在研究过程中有所增加,前者在第17天至21天之间增加最为明显。苯乙酰甘氨酸水平在6小时后升高,而3 - 羟基丙酸在第12天出现并持续增加至第17天。到第21天,与历史数据相比,尿液代谢谱处于对照范围内,这意味着稳定的肠道微生物群已经建立。尽管微生物变化引起的代谢改变不如代谢功能障碍引起的改变那么显著,但它们的存在确实会对代谢谱的解释、动物状态以及此类改变的原因机制产生影响。此外,口服药物递送的使用不仅会作为药物的直接影响,还会因其相关载体对微生物状态产生影响。这种影响可能在临床前研究领域尤其明显,因为这些研究的数据具有特殊的相关性。

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