Nature Aging

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Bischoff-Ferrari, H. A., Gängler, S., Wieczorek, M., Belsky, D. W., Ryan, J., Kressig, R. W., Stähelin, H. B., Theiler, R., Dawson-Hughes, B., Rizzoli, R., Vellas, B., Rouch, L., Guyonnet, S., Egli, A., Orav, E. J., Willett, W., & Horvath, S. (2025). Individual and additive effects of vitamin D, omega-3 and exercise on DNA methylation clocks of biological aging in older adults from the DO-HEALTH trial. Nature Aging. https://doi.org/10.1038/s43587-024-00793-y
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Chen, C., Lim, J., Koh, J., Beard, J., Rowe, J. W., Rowe, J., Antonucci, T., Berkman, L., Börsch-Supan, A., Carstensen, L., Goldman, D., Fried, L., Furstenberg, F., Jackson, J., Kohli, M., Olshansky, J., Rehkopf, D., Rother, J., & Zissimopoulos, J. (2024). A global analysis of adaptation to societal aging across low-, middle- and high-income countries using the Global Aging Society Index. Nature Aging. https://doi.org/10.1038/s43587-024-00772-3
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Ryan, C. P., Corcoran, D. L., Banskota, N., Eckstein Indik, C., Floratos, A., Friedman, R., Kobor, M. S., Kraus, V. B., Kraus, W. E., MacIsaac, J. L., Orenduff, M. C., Pieper, C. F., White, J. P., Ferrucci, L., Horvath, S., Huffman, K. M., & Belsky, D. W. (2024). The CALERIE Genomic Data Resource. Nature Aging. https://doi.org/10.1038/s43587-024-00775-0
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Chew, E. G., Liu, Z., Li, Z., Chung, S. J., Lian, M. M., Tandiono, M., Heng, Y. J., Ng, E. Y., Tan, L. C., Chng, W. L., Tan, T. J., Peh, E. K., Ho, Y. S., Chen, X. Y., Lim, E. Y., Chang, C. H., Leong, J. J., Peh, T. X., Chan, L. L., … Foo, J. N. (2024). Exome sequencing in Asian populations identifies low-frequency and rare coding variation influencing Parkinson’s disease risk. Nature Aging. https://doi.org/10.1038/s43587-024-00760-7
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Jin, C., Wang, X., Yang, J., Kim, S., Hudgins, A. D., Gamliel, A., Pei, M., Contreras, D., Devos, M., Guo, Q., Vijg, J., Conti, M., Hoeijmakers, J., Campisi, J., Lobo, R., Williams, Z., Rosenfeld, M. G., & Suh, Y. (2024). Molecular and genetic insights into human ovarian aging from single-nuclei multi-omics analyses. Nature Aging. https://doi.org/10.1038/s43587-024-00762-5
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Herzog, C. M. S., Goeminne, L. J. E., Poganik, J. R., Barzilai, N., Belsky, D. W., Betts-LaCroix, J., Chen, B. H., Chen, M., Cohen, A. A., Cummings, S. R., Fedichev, P. O., Ferrucci, L., Fleming, A., Fortney, K., Furman, D., Gorbunova, V., Higgins-Chen, A., Hood, L., … Gladyshev, V. N. (2024). Challenges and recommendations for the translation of biomarkers of aging. Nature Aging, 4(10), 1372–1383. https://doi.org/10.1038/s43587-024-00683-3
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Dahlquist, K. J. V., Huggins, M. A., Yousefzadeh, M. J., Soto-Palma, C., Cholensky, S. H., Pierson, M., Smith, D. M., Hamilton, S. E., & Camell, C. D. (2024). PD1 blockade improves survival and CD8+ cytotoxic capacity, without increasing inflammation, during normal microbial experience in old mice. Nature Aging, 4(7), 915–925. https://doi.org/10.1038/s43587-024-00620-4
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Gurkar, A. U., Gerencser, A. A., Mora, A. L., Nelson, A. C., Zhang, A. R., Lagnado, A. B., Enninful, A., Benz, C., Furman, D., Beaulieu, D., Jurk, D., Thompson, E. L., Wu, F., Rodriguez, F., Barthel, G., Chen, H., Phatnani, H., Heckenbach, I., Chuang, J. H., … Passos, J. F. (2023). Spatial mapping of cellular senescence: emerging challenges and opportunities. Nature Aging, 3(7), 776–790. https://doi.org/10.1038/s43587-023-00446-6
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Waziry, R., Ryan, C. P., Corcoran, D. L., Huffman, K. M., Kobor, M. S., Kothari, M., Graf, G. H., Kraus, V. B., Kraus, W. E., Lin, D. T. S., Pieper, C. F., Ramaker, M. E., Bhapkar, M., Das, S. K., Ferrucci, L., Hastings, W. J., Kebbe, M., Parker, D. C., Racette, S. B., … Belsky, D. W. (2023). Effect of long-term caloric restriction on DNA methylation measures of biological aging in healthy adults from the CALERIE trial. Nature Aging. https://doi.org/10.1038/s43587-022-00357-y
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Lee, P. J., Benz, C. C., Blood, P., Börner, K., Campisi, J., Chen, F., Daldrup-Link, H., De Jager, P., Ding, L., Duncan, F. E., Eickelberg, O., Fan, R., Finkel, T., Furman, D., Garovic, V., Gehlenborg, N., Glass, C., … Yang, M. (2022). NIH SenNet Consortium to map senescent cells throughout the human lifespan to understand physiological health. Nature Aging, 2(12), 1090–1100. https://doi.org/10.1038/s43587-022-00326-5
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Wendorff, A. A., Aidan Quinn, S., Alvarez, S., Brown, J. A., Biswas, M., Gunning, T., Palomero, T., & Ferrando, A. A. (2022). Epigenetic reversal of hematopoietic stem cell aging in Phf6-knockout mice. Nature Aging, 2(11), 1008–1023. https://doi.org/10.1038/s43587-022-00304-x
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Wang, C., Sierra Huertas, D., Rowe, J. W., Finkelstein, R., Carstensen, L. L., & Jackson, R. B. (2021). Rethinking the urban physical environment for century-long lives: from age-friendly to longevity-ready cities. Nature Aging, 1(12), 1088–1095. https://doi.org/10.1038/s43587-021-00140-5
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Columbia Affiliation
Cohen, A. A., Ferrucci, L., Fülöp, T., Gravel, D., Hao, N., Kriete, A., Levine, M. E., Lipsitz, L. A., Olde Rikkert, M. G. M., Rutenberg, A., Stroustrup, N., & Varadhan, R. (2022). A complex systems approach to aging biology. Nature Aging, 2(7), 580–591. https://doi.org/10.1038/s43587-022-00252-6
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Higgins-Chen, A. T., Thrush, K. L., Wang, Y., Minteer, C. J., Kuo, P.-L., Wang, M., Niimi, P., Sturm, G., Lin, J., Moore, A. Z., Bandinelli, S., Vinkers, C. H., Vermetten, E., Rutten, B. P. F., Geuze, E., Okhuijsen-Pfeifer, C., van der Horst, M. Z., Schreiter, S., Gutwinski, S., … Levine, M. E. (2022). A computational solution for bolstering reliability of epigenetic clocks: implications for clinical trials and longitudinal tracking. Nature Aging, 2(7), 644–661. https://doi.org/10.1038/s43587-022-00248-2
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