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Current progress in oocyte and embryo cryopreservation by slow freezing and vitrification

Reproduction · 2010 · Vol. 141(1) · pp. 1–19
Joseph SaragustyAmir Arav

Abstract

Preservation of female genetics is currently done primarily by means of oocyte and embryo cryopreservation. The field has seen much progress during its four-decade history, progress driven predominantly by research in humans, cows, and mice. Two basic cryopreservation techniques rule the field--controlled-rate freezing, the first to be developed, and vitrification, which, in recent years, has gained a foothold. While much progress has been achieved in human medicine, the cattle industry, and in laboratory animals, this is far from being the case for most other mammals and even less so for other vertebrates. The major strides and obstacles in human and other vertebrate oocyte and embryo cryopreservation will be reviewed here.

Reproductive Biology and FertilitySperm and Testicular FunctionRenal and related cancersVitrificationCryopreservationOocyte cryopreservationOocyteEmbryo cryopreservationEmbryoBiologyAndrologyFertility preservationCell biology

MeSH terms

AnimalsCattleCell SurvivalEmbryo, MammalianEquipment DesignFemaleFreezingHumansOocytesTime FactorsCryopreservationReproductive Techniques, AssistedMiceVitrification
Citations
492
FWCI
35.23
field-weighted impact
References
224
Percentile
100%
vs. same field & year
Citations per year
References
A two-factor hypothesis of freezing injury
Experimental Cell Research · 1972 · 942 citations
Development in vitro of mouse oocytes from primordial follicles
Biology of Reproduction · 1996 · 961 citations
The Journal of Animal Science: 1988-1990
Journal of Animal Science · 1992 · 1,584 citations
Biotechnology and Bioengineering
Biotechnology and Bioengineering · 2006 · 564 citations
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