Noninvasive liquid diet delivery of stable isotopes into mouse models for deep metabolic network tracing

Isotope tracer administration for probing metabolism in vivo is important to assess metabolic functions in a relevant physiological setting. Here, the authors report a non-invasive method of administering 13C6- glucose to mouse models via liquid diet feeding to achieve deep metabolic network coverag...

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Main Authors: Ramon C. Sun, Teresa W.-M. Fan, Pan Deng, Richard M. Higashi, Andrew N. Lane, Anh-Thu Le, Timothy L. Scott, Qiushi Sun, Marc O. Warmoes, Ye Yang
Format: Article
Language:English
Published: Nature Publishing Group 2017-11-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/s41467-017-01518-z
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spelling doaj-84d4323985664c0fb540d359fc8039012021-05-11T07:18:49ZengNature Publishing GroupNature Communications2041-17232017-11-018111010.1038/s41467-017-01518-zNoninvasive liquid diet delivery of stable isotopes into mouse models for deep metabolic network tracingRamon C. Sun0Teresa W.-M. Fan1Pan Deng2Richard M. Higashi3Andrew N. Lane4Anh-Thu Le5Timothy L. Scott6Qiushi Sun7Marc O. Warmoes8Ye Yang9Center for Environmental and Systems Biochemistry, University of KentuckyCenter for Environmental and Systems Biochemistry, University of KentuckyCenter for Environmental and Systems Biochemistry, University of KentuckyCenter for Environmental and Systems Biochemistry, University of KentuckyCenter for Environmental and Systems Biochemistry, University of KentuckyDepartment of Surgery, University of KentuckyCenter for Environmental and Systems Biochemistry, University of KentuckyCenter for Environmental and Systems Biochemistry, University of KentuckyCenter for Environmental and Systems Biochemistry, University of KentuckyCenter for Environmental and Systems Biochemistry, University of KentuckyIsotope tracer administration for probing metabolism in vivo is important to assess metabolic functions in a relevant physiological setting. Here, the authors report a non-invasive method of administering 13C6- glucose to mouse models via liquid diet feeding to achieve deep metabolic network coverage.https://doi.org/10.1038/s41467-017-01518-z
collection DOAJ
language English
format Article
sources DOAJ
author Ramon C. Sun
Teresa W.-M. Fan
Pan Deng
Richard M. Higashi
Andrew N. Lane
Anh-Thu Le
Timothy L. Scott
Qiushi Sun
Marc O. Warmoes
Ye Yang
spellingShingle Ramon C. Sun
Teresa W.-M. Fan
Pan Deng
Richard M. Higashi
Andrew N. Lane
Anh-Thu Le
Timothy L. Scott
Qiushi Sun
Marc O. Warmoes
Ye Yang
Noninvasive liquid diet delivery of stable isotopes into mouse models for deep metabolic network tracing
Nature Communications
author_facet Ramon C. Sun
Teresa W.-M. Fan
Pan Deng
Richard M. Higashi
Andrew N. Lane
Anh-Thu Le
Timothy L. Scott
Qiushi Sun
Marc O. Warmoes
Ye Yang
author_sort Ramon C. Sun
title Noninvasive liquid diet delivery of stable isotopes into mouse models for deep metabolic network tracing
title_short Noninvasive liquid diet delivery of stable isotopes into mouse models for deep metabolic network tracing
title_full Noninvasive liquid diet delivery of stable isotopes into mouse models for deep metabolic network tracing
title_fullStr Noninvasive liquid diet delivery of stable isotopes into mouse models for deep metabolic network tracing
title_full_unstemmed Noninvasive liquid diet delivery of stable isotopes into mouse models for deep metabolic network tracing
title_sort noninvasive liquid diet delivery of stable isotopes into mouse models for deep metabolic network tracing
publisher Nature Publishing Group
series Nature Communications
issn 2041-1723
publishDate 2017-11-01
description Isotope tracer administration for probing metabolism in vivo is important to assess metabolic functions in a relevant physiological setting. Here, the authors report a non-invasive method of administering 13C6- glucose to mouse models via liquid diet feeding to achieve deep metabolic network coverage.
url https://doi.org/10.1038/s41467-017-01518-z
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