Metabolome

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Hoffman, S. S., Tang, Z., Dunlop, A., Brennan, P. A., Huynh, T., Eick, S. M., Barr, D. B., Rushing, B., McRitchie, S. L., Sumner, S., Taibl, K. R., Tan, Y., Panuwet, P., Lee, G. E., Eatman, J., Corwin, E. J., Ryan, P. B., Jones, D. P., & Liang, D. (2025). Impact of prenatal phthalate exposure on newborn metabolome and infant neurodevelopment. Nature Communications, 16(1). https://doi.org/10.1038/s41467-025-57273-z
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Columbia Affiliation
Kalani Roy, M., La Carpia, F., Cendali, F., Fernando, S., Moriconi, C., Wojczyk, B. S., Wang, L., Nemkov, T., Hod, E. A., & D’Alessandro, A. (2022). Irradiation Causes Alterations of Polyamine, Purine, and Sulfur Metabolism in Red Blood Cells and Multiple Organs. Journal of Proteome Research, 21(2), 519–534. https://doi.org/10.1021/acs.jproteome.1c00912
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Gerson, K. D., Liao, J., McCarthy, C., Burris, H. H., Korem, T., Levy, M., Ravel, J., & Elovitz, M. A. (2021). A non-optimal cervicovaginal microbiota in pregnancy is associated with a distinct metabolomic signature among non-Hispanic Black individuals. Scientific Reports, 11(1). https://doi.org/10.1038/s41598-021-02304-0
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