国产精品久久久久久,丰满岳乱妇,欧美亚洲天堂网,人妻精品视频

<blockquote id="q4qa0"><tfoot id="q4qa0"></tfoot></blockquote>
<th id="q4qa0"><menu id="q4qa0"></menu></th><th id="q4qa0"><nav id="q4qa0"></nav></th>
  • <th id="q4qa0"><nav id="q4qa0"></nav></th>
    <samp id="q4qa0"></samp>
    <blockquote id="q4qa0"><tbody id="q4qa0"></tbody></blockquote>
  • <strike id="q4qa0"><menu id="q4qa0"></menu></strike>
    技術(shù)文章您現(xiàn)在的位置:首頁(yè) > 技術(shù)文章 > 尿代謝貌相使用氣相色譜質(zhì)譜

    尿代謝貌相使用氣相色譜質(zhì)譜

    更新時(shí)間:2012-10-15   點(diǎn)擊次數(shù):1588次

    Global urinary metabolic profiling procedures using gas chromatography–mass spectrometry
    Eric Chun Yong Chan,1 Kishore Kumar Pasikanti1, 2 & Jeremy K Nicholson3

    Abstract

    The role of urinary metabolic profiling in systems biology research is expanding. This is because of the use of this technology for clinical diagnostic and mechanistic studies and for the development of new personalized health care and molecular epidemiology (population) studies. The methodologies commonly used for metabolic profiling are NMR spectroscopy, liquid chromatography mass spectrometry (LC/MS) and gas chromatography–mass spectrometry (GC/MS). In this protocol, we describe urine collection and storage, GC/MS and data preprocessing methods, chemometric data analysis and urinary marker metabolite identification. Results obtained using GC/MS are complementary to NMR and LC/MS. Sample preparation for GC/MS analysis involves the depletion of urea via treatment with urease, protein precipitation with methanol, and trimethylsilyl derivatization. The protocol described here facilitates the metabolic profiling of ~400–600 metabolites in 120 urine samples per week.

    Journal name: Nature Protocols
    Volume: 6, Pages: 1483–1499
    Year published: (2011) DOI: doi:10.1038/nprot.2011.375
    Published online 08 September 2011

    聯(lián)