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Human DNAge citations

Borsky, P., Chmelarova, M., Fiala, Z., Hamakova, K., Palicka, V., Krejsek, J., Andrys, C., Kremlacek, J., Rehacek, V., Beranek, M., Malkova, A., Svadlakova, T., Holmannova, D. and Borska, L. (2021). Aging in psoriasis vulgaris: female patients are epigenetically older than healthy controls. Immunity & Ageing, [online] 18(1). Available at: https://immunityageing.biomedcentral.com/articles/10.1186/s12979-021-00220-5 [Accessed 2 Dec. 2021].

Chew, Y.C., Guo, W., Yang, X., Jin, M., Booher, K., Horvath, S. and Jia, X.Y. (2018). A High‐throughput Targeted Bisulfite Sequencing‐based Analysis for Epigenetic Age Quantification and Monitoring. The FASEB Journal, [online] 32(S1). Available at: https://faseb.onlinelibrary.wiley.com/doi/10.1096/fasebj.2018.32.1_supplement.674.8 [Accessed 2 Dec. 2021].

Moghadasi Boroujeni, S., Koontz, A., Tseropoulos, G., Kerosuo, L., Mehrotra, P., Bajpai, V.K., Selvam, S.R., Lei, P., Bronner, M.E. and Andreadis, S.T. (2019). Neural crest stem cells from human epidermis of aged donors maintain their multipotency in vitro and in vivo. Scientific Reports, [online] 9(1). Available at: https://www.nature.com/articles/s41598-019-46140-9 [Accessed 2 Dec. 2021].

Monseur, B., Murugappan, G., Bentley, J., Teng, N. and Westphal, L. (2020). Epigenetic clock measuring age acceleration via DNA methylation levels in blood is associated with decreased oocyte yield. Journal of Assisted Reproduction and Genetics, [online] 37(5), pp.1097–1103. Available at: https://link.springer.com/article/10.1007%2Fs10815-020-01763-0 [Accessed 27 Feb. 2021].