Telomeres and replicative cellular aging of the human placenta and chorioamniotic membranes

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Abstract

Recent hypotheses propose that the human placenta and chorioamniotic membranes (CAMs) experience telomere length (TL)-mediated senescence. These hypotheses are based on mean TL (mTL) measurements, but replicative senescence is triggered by short and dysfunctional telomeres, not mTL. We measured short telomeres by a vanguard method, the Telomere shortest length assay, and telomere-dysfunction-induced DNA damage foci (TIF) in placentas and CAMs between 18-week gestation and at full-term. Both the placenta and CAMs showed a buildup of short telomeres and TIFs, but not shortening of mTL from 18-weeks to full-term. In the placenta, TIFs correlated with short telomeres but not mTL. CAMs of preterm birth pregnancies with intra-amniotic infection showed shorter mTL and increased proportions of short telomeres. We conclude that the placenta and probably the CAMs undergo TL-mediated replicative aging. Further research is warranted whether TL-mediated replicative aging plays a role in all preterm births.

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Lai, T. P., Simpson, M., Patel, K., Verhulst, S., Noh, J., Roche, N., … Aviv, A. (2021). Telomeres and replicative cellular aging of the human placenta and chorioamniotic membranes. Scientific Reports, 11(1). https://doi.org/10.1038/s41598-021-84728-2

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