Cryopreservation, cryoprotectants, and potential risk of epigenetic alteration.

J Assist Reprod Genet

Departments of Obstetrics and Gynecology, Physiology, and Urology and Reproductive Sciences Program, University of Michigan, 4742F Medical Sciences II, 1301 E. Catherine Street, Ann Arbor, MI, 48109-056171500, USA.

Published: November 2024

AI Article Synopsis

  • The cryopreservation of gametes and embryos has become a key aspect of assisted reproductive technologies over the past two decades, although the process can harm the viability of these cells.
  • Concerns have arisen regarding epigenetic anomalies and genomic-imprinting disorders associated with ARTs and cryopreservation, particularly due to the un-physiological conditions they create.
  • This paper aims to critically evaluate the relationship between cryopreservation methods, the use of cryoprotectants, and the potential long-term impacts on the health of offspring, emphasizing the need for a deeper understanding of epigenetic changes.

Article Abstract

The cryopreservation of gametes and embryos has increased notably over the past 20 years and is now an essential part of assisted reproductive technologies (ARTs). However, because the cryopreservation process is un-physiological for human cells, gametes, and embryos, cryobiologists have suggested diverse methods to successfully cryopreserve human gametes and embryos in order to maintain their viability and assure successful pregnancy. During the first period of early development, major waves of epigenetic reprogramming-crucial for the fate of the embryo-occur. Recently, concerns relating to the increased incidence of epigenetic anomalies and genomic-imprinting disorders have been reported after ARTs and cryopreservation. Epigenetic reprogramming is particularly susceptible to environmental and un-physiological conditions such as ovarian stimulation, embryo culture, and cryopreservation that might collectively affect epigenetics dysregulation. Additionally, recent literature suggests that epigenetic and transcriptomic profiles are sensitive to the stress induced by vitrification, osmotic shock, oxidative stress, rapid temperature and pH changes, and cryoprotectants; it is therefore critical to have a more comprehensive understanding of the potential induced perturbations of epigenetic modifications that may be associated with vitrification. The aim of this paper is to present a critical evaluation of the association of gamete and embryo cryopreservation, use of cryoprotectants, and epigenetic dysregulations with potential long-term consequences for offspring health.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11621268PMC
http://dx.doi.org/10.1007/s10815-024-03287-3DOI Listing

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