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基于酶解结合 LC-MS 测定法分析人血清和尿液中 C24 胆汁酸代谢组。

Analysis of human C24 bile acids metabolome in serum and urine based on enzyme digestion of conjugated bile acids and LC-MS determination of unconjugated bile acids.

机构信息

Key Laboratory of Drug Targeting and Drug Delivery System, Ministry of Education, West China School of Pharmacy, Sichuan University, Chengdu, 610041, China.

Metabolomics Shared Resource, University of Hawaii Cancer Center, Honolulu, HI, 96801, USA.

出版信息

Anal Bioanal Chem. 2018 Aug;410(21):5287-5300. doi: 10.1007/s00216-018-1183-7. Epub 2018 Jun 16.

Abstract

Host-gut microbiota metabolic interactions are closely associated with health and disease. A manifestation of such co-metabolism is the vast structural diversity of bile acids (BAs) involving both oxidative stereochemistry and conjugation. Herein, we describe the development and validation of a LC-MS-based method for the analysis of human C24 BA metabolome in serum and urine. The method has high throughput covering the discrimination of oxidative stereochemistry of unconjugated species in a 15-min analytical cycle. The validated quantitative performance provided an indirect way to ascertain the conjugation patterns of BAs via enzyme-digestion protocols that incorporated the enzymes, sulfatase, β-glucuronidase, and choloylglycine hydrolase. Application of the method has led to the detection of at least 70 unconjugated BAs including 27 known species and 43 newly found species in the post-prandial serum and urine samples from 7 nonalcoholic steatohepatitis patients and 13 healthy volunteers. Newly identified unconjugated BAs included 3α, 12β-dihydroxy-5β-cholan-24-oic acid, 12α-hydroxy-3-oxo-5β-cholan-24-oic acid, and 3α, 7α, 12β-trihydroxy-5β-cholan-24-oic acid. High-definition negative fragment spectra of the other major unknown species were acquired to facilitate future identification endeavors. An extensive conjugation pattern is the major reason for the "invisibility" of the newly found BAs to other common analytical methods. Metabolomic analysis of the total unconjugated BA profile in combination with analysis of their conjugation patterns and urinary excretion tendencies have provided substantial insights into the interconnected roles of host and gut microbiota in maintaining BA homeostasis. It was proposed that the urinary total BA profile may serve as an ideal footprint for the functional status of the host-gut microbial BA co-metabolism. In summary, this work provided a powerful tool for human C24 BA metabolome analysis that bridges the gap between GC-MS techniques in the past age and LC-MS techniques currently prevailing in biomedical researches. Further applications of the present method in clinical, translational research, and other biomedical explorations will continue to boost the construction of a host-gut microbial co-metabolism network of BAs and thus facilitate the decryption of BA-mediated host-gut microbiota crosstalk in health and diseases. Graphical abstract ᅟ.

摘要

宿主-肠道微生物群代谢相互作用与健康和疾病密切相关。这种共代谢的表现之一是胆汁酸(BAs)的巨大结构多样性,涉及氧化立体化学和共轭。本文描述了一种基于 LC-MS 的方法的开发和验证,用于分析血清和尿液中的人 C24 BA 代谢组。该方法具有高通量,可在 15 分钟的分析周期内区分未结合物的氧化立体化学。经验证的定量性能通过酶消化方案提供了一种间接方法来确定 BAs 的共轭模式,该方案包括酶、硫酸酯酶、β-葡糖苷酸酶和胆酰甘氨酸水解酶。该方法的应用导致在 7 名非酒精性脂肪性肝炎患者和 13 名健康志愿者的餐后血清和尿液样本中检测到至少 70 种未结合的 BA,包括 27 种已知物种和 43 种新发现的物种。新鉴定的未结合 BA 包括 3α,12β-二羟基-5β-胆烷-24-酸、12α-羟基-3-氧代-5β-胆烷-24-酸和 3α,7α,12β-三羟基-5β-胆烷-24-酸。获得了其他主要未知物种的高清晰度负片段光谱,以方便未来的鉴定工作。广泛的共轭模式是新发现的 BA 对其他常见分析方法“不可见”的主要原因。未结合 BA 总轮廓的代谢组学分析以及对其共轭模式和尿排泄趋势的分析,为宿主和肠道微生物群在维持 BA 动态平衡中的相互作用提供了大量见解。有人提出,尿总 BA 谱可作为宿主-肠道微生物 BA 共代谢功能状态的理想特征。总之,这项工作为人类 C24 BA 代谢组学分析提供了一个强大的工具,弥补了过去时代的 GC-MS 技术与目前生物医学研究中流行的 LC-MS 技术之间的差距。本方法在临床、转化研究和其他生物医学探索中的进一步应用将继续促进 BA 介导的宿主-肠道微生物群串扰的解密,从而促进 BA 代谢的宿主-肠道微生物群共代谢网络的构建。

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