4.3 Review

Artificial oocyte activation: physiological, pathophysiological and ethical aspects

Journal

SYSTEMS BIOLOGY IN REPRODUCTIVE MEDICINE
Volume 65, Issue 1, Pages 3-11

Publisher

TAYLOR & FRANCIS INC
DOI: 10.1080/19396368.2018.1516000

Keywords

Oocyte activation deficiency; artificial oocyte activation; intra-cytoplasmic sperm injection; phospholipase C-zeta; calcium ionophores

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Infertile couples with low oocyte yield in combination with abnormal semen parameters may experience intra-cytoplasmic sperm injection (ICSI) failure. An established factor associated with ICSI failure is oocyte activation deficiency (AOD). The latter originates from seminal contributors, such as phospholipase C-zeta (PLC zeta) that is not adequate to produce calcium (Ca2+) oscillations for oocyte activation. Apart from this natural activator, other stimulants, such as A23187, ionomycin, strontium chloride or even electric pulses, have been used in embryological laboratories to overcome AOD and ICSI failure. The aim of the present narrative review is to discuss the role of Ca+2 oscillations in oocyte activation and summarize the evidence concerning the use of oocyte activators as agents for artificial oocyte activation (AOA). Studies in humans and animals have emerged many physiological, pathophysiological and ethical aspects of AOA. In conclusion, in mammalian eggs, the cytosolic Ca+2 oscillations derive from a periodic release of Ca+2 from intracellular pools. PLC zeta, as well as artificial stimulants, have been used to produce Ca+2 oscillations for AOA. As the latter may increase the risk of epigenetic induced malformations, further studies are required to clarify whether AOA constitutes an effective and safe method to overcome ICSI failure.

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