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American Journal of Physiology. Lung Cellular and Molecular Physiology|October 7, 2017
ATP catabolism by tissue nonspecific alkaline phosphatase contributes to development of ARDS in influenza-infected miceParker S Woods, Lauren M Doolittle, Judy M Hickman-Davis, et al.Virology|April 21, 2020
Increased expression of microRNA-155-5p by alveolar type II cells contributes to development of lethal ARDS in H1N1 influenza A virus-infected miceParker S Woods, Lauren M Doolittle, Lucia E Rosas, et al.American Journal of Physiology. Lung Cellular and Molecular Physiology|November 13, 2016
Lethal H1N1 influenza A virus infection alters the murine alveolar type II cell surfactant lipidomeParker S Woods, Lauren M Doolittle, Lucia E Rosas, et al.American Journal of Respiratory Cell and Molecular Biology|February 19, 2021
Postexposure Liponucleotide Prophylaxis and Treatment Attenuates Acute Respiratory Distress Syndrome in Influenza-infected MiceLucia E Rosas, Lauren M Doolittle, Lisa M Joseph, et al.American Journal of Respiratory Cell and Molecular Biology|April 20, 2022
Cytidine 5'-Diphosphocholine Corrects Alveolar Type II Cell Mitochondrial Dysfunction in Influenza-infected MiceLauren M Doolittle, Katherine Binzel, Katherine E Nolan, et al.Virology|April 17, 2021
Metabolic shifts modulate lung injury caused by infection with H1N1 influenza A virusKatherine E Nolan, Lisa A Baer, Priyanka Karekar, et al.Pageof 1