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  • Open Access

    ARTICLE

    Alterations in Metabolites Associated with Hypoxemia in Neonates and Infants with Congenital Heart Disease

    Evan Pagano1, Benjamin Frank1, James Jaggers2, Mark Twite3, Tracy T. Urban4, Jelena Klawitter2,#, Jesse Davidson1,#,*

    Congenital Heart Disease, Vol.15, No.4, pp. 251-265, 2020, DOI:10.32604/CHD.2020.012219

    Abstract Objectives: (1) To measure the global shift in the metabolome in hypoxemic versus non-hypoxemic infants with congenital heart disease; (2) To identify metabolites and metabolic pathways that are altered in hypoxemia. Study Design: Analysis of serum samples obtained prior to cardiopulmonary bypass from 82 infants ≤120 days old with congenital heart disease requiring surgery at Children’s Hospital Colorado. Infants were divided into groups based on preoperative oxygen saturations: non-hypoxemic (>92%), mild hypoxemia (85–92%), and severe hypoxemia (<85%). Tandem mass spectrometry was used to analyze 165 targeted metabolites. Partial least squares discriminant analysis and t-tests were used to determine differences among… More >

  • Open Access

    ARTICLE

    The Stability of Anionic States of Thymine-Glycine Dimers with Excess Electron

    Yugai Huang 1, 2, *

    CMC-Computers, Materials & Continua, Vol.57, No.3, pp. 485-494, 2018, DOI:10.32604/cmc.2018.03112

    Abstract It has been demonstrated that low energy electrons (LEEs) can induce serious DNA damages including bases loss and even single and double strand breaks. Experiments also showed that LEE induced DNA damages will be reduced with the presence of amino acids. For understanding of the protection of amino acids to DNA, the stability of 6 kinds of thymine and glycine (T-g) dimers with planar configurations with an excess electron were studied with density functional theory (DFT) method. The results show that, when the excess electron is vertically attached, all the dimers become more active with higher energy. After re-optimization, 4… More >

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