Intracytoplasmic sperm injection (ICSI) is widely used to treat human infertility, yet its effects on offspring fertility remain unclear. As infertile gametes are used in human ICSI procedures, it has remained unclear whether the procedure per se influences fertility of the resulting offspring. Here, we report on increased abortion rates and the induction of immunotolerance breakdown in mice following ICSI. Although sperm concentration was normal, sperm from ICSI-derived males showed higher curvilinear velocity and greater amplitude of lateral head displacement, suggesting a potentially increased fertilization capacity. However, when ICSI-produced males were naturally mated with wild-type females, 27.1% of the fetuses were aborted, compared to a loss of 7.5% of fetuses in control pregnancies, despite identical H2 haplotypes. Analysis of the placenta revealed infiltrating macrophages and granulocytes, as well as increased levels of 8-oxoguanine. This was accompanied by activation of innate immunity and significant downregulation of microRNAs located in the Dlk1-Dio3 microRNA cluster. Several organs of the grand-offspring exhibited inflammation. Therefore, ICSI procedure using wild-type gametes impairs the fertility of ICSI-derived male offspring by activating innate immunity during pregnancy.
Kanatsu-Shinohara et al. (Fri,) studied this question.