Improved bovine embryo production in an oviduct-on-a-chip system: prevention of poly-spermic fertilization and parthenogenic activation

Publication date

2017-02-07

Authors

de Almeida Monteiro Melo Ferraz, M.ISNI 0000000493352581
Henning, H.ISNI 0000000074556133
Ferreira da Costa, Pedro
Malda, JosORCID 0000-0002-9241-7676ISNI 0000000388144393
Melchels, F P W
Wubbolts, Richard W.ORCID 0000-0001-8661-7594ISNI 0000000394562698
Stout, T.A.E.ORCID 0000-0001-5321-8095ISNI 0000000387838262
Vos, PeterISNI 0000000364110949
Gadella, B.M.ISNI 0000000395892373

Editors

Advisors

Supervisors

Document Type

Article
Open Access logo

License

taverne

Abstract

The oviduct provides the natural micro-environment for gamete interaction, fertilization and early embryo development in mammals, such as the cow. In conventional culture systems, bovine oviduct epithelial cells (BOEC) undergo a rapid loss of essential differentiated cell properties; we aimed to develop a more physiological in vitro oviduct culture system capable of supporting fertilization. U-shaped chambers were produced using stereo-lithography and mounted with polycarbonate membranes, which were used as culture inserts for primary BOECs. Cells were grown to confluence and cultured at an air–liquid interface for 4 to 6 weeks and subsequently either fixed for immune staining, incubated with sperm cells for live-cell imaging, or used in an oocyte penetration study. Confluent BOEC cultures maintained polarization and differentiation status for at least 6 weeks. When sperm and oocytes were introduced into the system, the BOECs supported oocyte penetration in the absence of artificial sperm capacitation factors while also preventing polyspermy and parthenogenic activation, both of which occur in classical in vitro fertilization systems. Moreover, this “oviduct-on-a-chip” allowed live imaging of sperm-oviduct epithelium binding and release. Taken together, we describe for the first time the use of 3D-printing as a step further on bio-mimicking the oviduct, with polarized and differentiated BOECs in a tubular shape that can be perfused or manipulated, which is suitable for live imaging and supports in vitro fertilization.

Keywords

Taverne

Citation

de Almeida Monteiro Melo Ferraz, M, Henning, H H W, Ferreira da Costa, P, Malda, J, Melchels, F P W, Wubbolts, R W, Stout, T A E, Vos, P L A M & Gadella, B M 2017, 'Improved bovine embryo production in an oviduct-on-a-chip system : prevention of poly-spermic fertilization and parthenogenic activation', Lab on a Chip - Miniaturisation for Chemistry and Biology, vol. 17, no. 5, pp. 905-916. https://doi.org/10.1039/c6lc01566b