Searchable, peer-reviewed, open-access proceedings from bioscience and biomedical conferences

bp0014cpr9 | Ovarian and Uterine Function | CPR1993

Sources and biological actions of relaxin in pigs

Bagnell C. A. , Zhang Q. , Downey B. , Ainsworth L.

Although the major source of relaxin in pigs is the corpus luteum of pregnancy, there is now evidence for relaxin gene expression and translation into protein in the theca intema cells of the preovulatory follicle, the corpus luteum of the cycle and the uterus. The theca interna cells retain their ability to express the relaxin gene and protein following ovulation. During the early stages of development of the corpus luteum, the theca-derived small lutein cells are the so...

bp0013cpr10 | Ovarian Function | CPR1989

The synthesis and actions of steroids and prostaglandins during follicular maturation in the pig

Ainsworth L. , Tsangt B. K. , Downey B. R. , Marcus G. J.

Summary. Our understanding of the synthesis and production of follicular steroids and prostaglandins (PG) in the pig is based largely on in-vitro studies with granulosa and theca interna tissues obtained from Graafian follicles at various stages of maturation. As the follicle enlarges before the LH surge, granulosa cells exhibit a decrease in FSH receptors and are less responsive to FSH in terms of cAMP production. Concurrently, there is an increase in gr...

bp0016cpr4 | Development of The Follicleand Corpus Luteum | CPR2001

Formation and early development of the corpus luteum in pigs

Murphy B. D. , Gévry N. , Ruiz-Cortés T. , Cote F. , Downey B. R. , Sirois J.

Numerous corpora lutea form from the multiple follicles that ovulate during the oestrous cycle of pigs. Vascular elements invade the follicle from the theca compartment, first centripetally, and subsequently by lateral branching of centripetal veins and arteries. The vessels are the vehicle for dispersion of steroidogenic theca cells throughout the corpus luteum. Mitosis occurs in both the theca and granulosa layers before ovulation, and in luteal cells well into the lut...