Author Correction: Verbascoside: Identification, Quantification, and Potential Sensitization of Colorectal Cancer Cells to 5-FU by Targeting PI3K/AKT Pathway (Scientific Reports, (2018), 8, 1, (16939), 10.1038/s41598-018-35083-2)

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Abstract

This Article contains a typographical error in the Results and Discussion section under subheading ‘Identification and suggested fragmentation of verbascoside’ where, “The presence of molecular ion at m/z 623 (C29H35O15)− for VER [M-H]− structure whereas characteristic ion peak of the phenyl propanoid moiety recognized at m/z 161 [caffeic acid-H-H2O]− was due to loss of H2O from caffeic acid at m/z 179 [C9H7O4]− and the ion peak at m/z 461 represents [M-H-hexose sugar]− due to loss of a hexose sugar (−162 amu)25–27” should read: “The presence of molecular ion at m/z 623 (C29H35O15)− for VER [M-H]− structure whereas characteristic ion peak of the phenyl propanoid moiety recognized at m/z 161 [caffeic acid-H-H2O]− was due to loss of H2O from caffeic acid at m/z 179 [C9H7O4]− and the ion peak at m/z 461 represents [M-H-Caffeoyl moiety]− due to loss of a Caffeoyl moiety (−162 amu)25–27”

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Attia, Y. M., El-Kersh, D. M., Wagdy, H. A., & Elmazar, M. M. (2019, December 1). Author Correction: Verbascoside: Identification, Quantification, and Potential Sensitization of Colorectal Cancer Cells to 5-FU by Targeting PI3K/AKT Pathway (Scientific Reports, (2018), 8, 1, (16939), 10.1038/s41598-018-35083-2). Scientific Reports. Nature Research. https://doi.org/10.1038/s41598-019-55121-x

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