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核磁共振波谱法作为测定生物产生的代谢物浓度的定量工具:在安全性测试中对代谢物的影响。

Nuclear magnetic resonance spectroscopy as a quantitative tool to determine the concentrations of biologically produced metabolites: implications in metabolites in safety testing.

作者信息

Espina Robert, Yu Linning, Wang Jianyao, Tong Zeen, Vashishtha Sarvesh, Talaat Rasmy, Scatina JoAnn, Mutlib Abdul

机构信息

Drug Safety and Metabolism, Wyeth Research, 500 Arcola Road, Collegeville, Pennsylvania 19426, USA.

出版信息

Chem Res Toxicol. 2009 Feb;22(2):299-310. doi: 10.1021/tx800251p.

Abstract

Nuclear magnetic resonance (NMR) spectroscopy has traditionally been considered as an indispensable tool in elucidating structures of metabolites. With the advent of Fourier transform (FT) spectrometers, along with improvements in software and hardware (such as high-field magnets, cryoprobes, versatile pulse sequences, and solvent suppression techniques), NMR is increasingly being considered as a critical quantitative tool, despite its lower sensitivity as compared to mass spectrometry. A specific quantitative application of NMR is in determining the concentrations of biologically isolated metabolites, which could potentially be used as reference standards for further quantitative work by liquid chromatography/mass spectrometry. With the recent demands from regulatory agencies on quantitative information on metabolites, it is proposed that NMR will play a significant role in strategies aimed at addressing metabolite coverage in toxicological species. Traditionally, biologically isolated metabolites have not been considered as a way of generating "reference standards" for further quantitative work. However, because of the recent FDA guidance on safety testing of metabolites, one has to consider means of authenticating and quantitating biologically or nonbiologically generated metabolites. 1H NMR is being proposed as the method of choice, as it is able to be used as both a qualitative and a quantitative tool, hence allowing structure determination, purity check, and quantitative measurement of the isolated metabolite. In this publication, the application of NMR as a powerful and robust analytical technique in determining the concentrations of in vitro or in vivo isolated metabolites is discussed. Furthermore, to demonstrate the reliability and accuracy of metabolite concentrations determined by NMR, validation and cross-validation with gravimetric and mass spectrometric methods were conducted.

摘要

传统上,核磁共振(NMR)光谱法一直被视为阐明代谢物结构不可或缺的工具。随着傅里叶变换(FT)光谱仪的出现,以及软件和硬件的改进(如高场磁体、低温探头、通用脉冲序列和溶剂抑制技术),尽管与质谱法相比灵敏度较低,但NMR越来越被视为一种关键的定量工具。NMR的一种特定定量应用是测定生物分离代谢物的浓度,这些代谢物有可能用作液相色谱/质谱法进一步定量工作的参考标准。鉴于监管机构最近对代谢物定量信息的要求,有人提出NMR将在旨在解决毒理学物种中代谢物覆盖范围的策略中发挥重要作用。传统上,生物分离的代谢物并未被视为生成用于进一步定量工作的“参考标准”的一种方式。然而,由于美国食品药品监督管理局(FDA)最近关于代谢物安全性测试的指南,人们必须考虑对生物或非生物生成的代谢物进行鉴定和定量的方法。氢核磁共振(1H NMR)被提议作为首选方法,因为它既可以用作定性工具,也可以用作定量工具,从而能够对分离出的代谢物进行结构测定、纯度检查和定量测量。在本出版物中,讨论了NMR作为一种强大而可靠的分析技术在测定体外或体内分离代谢物浓度方面的应用。此外,为了证明通过NMR测定的代谢物浓度的可靠性和准确性,还采用重量法和质谱法进行了验证和交叉验证。

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