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Demonstration of luteotrophic responses of human recombinant gamma interferon in porcine corpora lutea using an in-vivo microdialysis system.
Conceptuses from several mammalian species prior to implantation secrete proteins belonging to the family of interferons. The main species of interferons known to be secreted by the pig blastocyst is interferon gamma (IFNgamma), the precise role of which is unclear. We decided to explore its effects on corpus luteum (CL) function using the novel microdialysis technique in vivo. Six cycling miniature pigs were monitored for estrus by daily plasma progesterone analysis and visual symptoms. On day nine of the cycle (day zero being the day of ovulation) the animals underwent surgery, and microdialysis tubing (vitafiber, Amicon U.S.A, cut off mol. wt. 1 million) were implanted in 17 corpora lutea. The inlets and outlets of all tubings were exteriorized and the entry and exit points of tubings in the CLs sealed with tissue glue. The afferent extension tubings were connected to a fraction collector and the system was continuously flushed with Ringer at a flow rate of 2.4 ml/h. After an initial flushout phase of 8 h, fractions were collected every half hour over 3 days. On days 10, 11 and 12 post estrus 12 CLs were stimulated for 4 h with 10(-7) M, 2 x 10(7) M and 4 x 10(-7) M human recombinant IFNgamma (Pharma Biotechnologie) respectively. Simultaneously, fractions were also collected from the remaining five unstimulated corpora lutea which served as controls. Progesterone concentrations in the dialysates were estimated by a sensitive enzymeimmunoassay (EIA). A significant increase (P < 0.01) in progesterone release was observed in all 3 days following stimulation. The progesterone increase was more marked on the first day of stimulation (1 x 10[-7] M) with the hormone levels rising further even after the end of stimulation. The overall increase in progesterone concentration was 2-fold on day 10 in comparison to 15-30% on subsequent days even though IFN concentrations for stimulation were 2- and 4-fold higher. In the unstimulated CLs, a gradual decline (P < 0.01) in progesterone levels were observed over days. In conclusion, these data provide evidence that the early conceptus signals its presence by way of IFNgamma to maintain the CL in pigs.
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