Juvenile in vitro embryo technology (JIVET) provides exciting opportunities in animal reproduction by reducing the generation intervals. Prepubertal oocytes are also relevant models for studies on oncofertility. However, current JIVET efficiency is still unpredictable, and further improvements are needed in order for it to be used on a large-scale level. This study applied bioengineering approaches to recreate: (1) the three-dimensional (3D) structure of the cumulus-oocyte complex (COC), by constructing-via bioprinting technologies-alginate-based microbeads (COC-microbeads) for 3D in vitro maturation (3D-IVM); (2) dynamic IVM conditions, by culturing the COC in a millifluidic bioreactor; and (3) an artificial follicular wall with basal memb...
In vitro embryo production has vastly improved over the past decade through the study of the in vivo...
In vitro oocyte maturation (IVM) is a well-established technique. Despite the high IVM rates obtaine...
Background: Oocyte in vitro maturation (IVM) reduces the need for gonadotrophin-induced ovarian hype...
Juvenile in vitro embryo technology (JIVET) provides exciting opportunities in animal reproduction b...
Three-dimensional in vitro maturation (3D IVM) is a promising approach to improve IVM effi- ciency a...
Organoids are artificially assembled cell masses developed to reproduce organ functionality as the ...
Microencapsulation using hydrogels can provide a suitable structure mimicking the in vivo microenvi...
OBJECTIVE: To verify the hypothesis that a three-dimensional, follicle-mimicking structure enhances ...
Oocytes grown in vitro are of low quality and yield few live births, thus limiting the ability to st...
Ovarian follicle growth is a prolonged process that involves progressive development of the follicle...
Background: Controlling nuclear maturation during oocyte culture might improve nuclear-cytoplasmic m...
Follicle-like structures are a combination of living cells and semipermeable 3D matrices, in which p...
The number of cycles of assisted reproductive technologies (ART) performed increased by ~9.5 % globa...
In vitro embryo production has vastly improved over the past decade through the study of the in vivo...
In vitro oocyte maturation (IVM) is a well-established technique. Despite the high IVM rates obtaine...
Background: Oocyte in vitro maturation (IVM) reduces the need for gonadotrophin-induced ovarian hype...
Juvenile in vitro embryo technology (JIVET) provides exciting opportunities in animal reproduction b...
Three-dimensional in vitro maturation (3D IVM) is a promising approach to improve IVM effi- ciency a...
Organoids are artificially assembled cell masses developed to reproduce organ functionality as the ...
Microencapsulation using hydrogels can provide a suitable structure mimicking the in vivo microenvi...
OBJECTIVE: To verify the hypothesis that a three-dimensional, follicle-mimicking structure enhances ...
Oocytes grown in vitro are of low quality and yield few live births, thus limiting the ability to st...
Ovarian follicle growth is a prolonged process that involves progressive development of the follicle...
Background: Controlling nuclear maturation during oocyte culture might improve nuclear-cytoplasmic m...
Follicle-like structures are a combination of living cells and semipermeable 3D matrices, in which p...
The number of cycles of assisted reproductive technologies (ART) performed increased by ~9.5 % globa...
In vitro embryo production has vastly improved over the past decade through the study of the in vivo...
In vitro oocyte maturation (IVM) is a well-established technique. Despite the high IVM rates obtaine...
Background: Oocyte in vitro maturation (IVM) reduces the need for gonadotrophin-induced ovarian hype...