首页> 外文期刊>Journal of chromatography, B. Analytical technologies in the biomedical and life sciences >In vitro profiling of volatile organic compounds released by Simpson-Golabi-Behmel syndrome adipocytes
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In vitro profiling of volatile organic compounds released by Simpson-Golabi-Behmel syndrome adipocytes

机译:Simpson-Golabi-Behmel综合征adipocytes释放的挥发性有机化合物的体外谱

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Breath analysis offers a non-invasive and rapid diagnostic method for detecting various volatile organic compounds that could be indicators for different diseases, particularly metabolic disorders including type 2 diabetes mellitus. The development of type 2 diabetes mellitus is closely linked to metabolic dysfunction of adipose tissue and adipocytes. However, the VOC profile of human adipocytes has not yet been investigated. Gas chromatography with mass spectrometric detection and head-space needle trap extraction (two-bed Carbopack X/Carboxen 1000 needle traps) were applied to profile VOCs produced and metabolised by human Simpson Golabi Behmel Syndrome adipocytes. In total, sixteen compounds were identified to be related to the metabolism of the cells. Four sulphur compounds (carbon disulphide, dimethyl sulphide, ethyl methyl sulphide and dimethyl disulphide), three heterocyclic compounds (2-ethylfuran, 2-methyl-5-(methyl-thio)-furan, and 2-pentylfuran), two ketones (acetone and 2-pentanone), two hydrocarbons (isoprene and n-heptane) and one ester (ethyl acetate) were produced, and four aldehydes (2-methyl-propanal, butanal, pentanal and hexanal) were found to be consumed by the cells of interest. This study presents the first profile of VOCs formed by human adipocytes, which may reflect the activity of the adipose tissue enzymes and provide evidence of their active role in metabolic regulation. Our data also suggest that a previously reported increase of isoprene and sulphur compounds in diabetic patients may be explained by their production by adipocytes. Moreover, the unique features of this profile, including a high emission of dimethyl sulphide and the production of furan-containing VOCs, increase our knowledge about metabolism in adipose tissue and provide diagnostic potential for future applications.
机译:呼气分析提供了一种用于检测各种挥发性有机化合物的非侵入性和快速的诊断方法,该化合物可能是不同疾病的指标,特别是代谢障碍,包括2型糖尿病。 2型糖尿病的发展与脂肪组织和脂肪细胞的代谢功能障碍密切相关。然而,尚未调查人脂肪细胞的VOC型谱。用质谱检测和头部空间针阱提取(两床Carbopack X / Carboxen 1000针疏水阀)的气相色谱应用于人类辛普森Golabi Behmel综合征adipocytes产生和代谢的概况VOC。总共鉴定了16种化合物与细胞的代谢有关。四种硫化合物(碳二硫化碳,二甲基硫化物,乙基甲基硫化物和二甲基二硫代甲基),三种杂环化合物(2-乙基呋喃,2-甲基-5-(甲基-5-(甲基-thio) - 浓缩酮和2-戊基呋喃),两种酮(丙酮制备了两个碳氢化合物(异戊二烯和正庚烷)和一个酯(乙酸乙酯),发现四只醛(2-甲基 - 丙醛,丁醛,戊醛和己醛)被细胞消耗兴趣。本研究介绍了人脂肪细胞形成的VOC的第一轮廓,其可以反映脂肪组织酶的活性,并提供其在代谢调节中的活跃作用的证据。我们的数据还表明,先前报告的糖尿病患者的异戊二烯和硫化合物的增加可以通过其产生的脂肪细胞来解释。此外,该概况的独特特征,包括高排放硫化物的高排放和含呋喃的VOC的产生,增加了我们对脂肪组织中代谢的知识,并为未来应用提供诊断潜力。

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