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Theriogenology 2000-May

Peripheral and intrauterine neutrophil function in the cow: the influence of endogenous and exogenous sex steroid hormones.

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A L Subandrio
I M Sheldon
D E Noakes

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Abstrait

It has been accepted for many years that the susceptibility of the genital tract to infection is reduced during the follicular phase compared with the luteal phase of the estrous cycle. Since the role of intrauterine neutrophils is paramount in the elimination of bacteria, it can be hypothesized that these differences in resistance to infection could be mediated by differences in uterine-derived neutrophil function. In order to test this hypothesis two groups of cows were used in this study. Group 1 cows (n=5) were studied at estrus, diestrus, after ovariectomy, after exogenous estradiol and after progesterone treatment, at which time they underwent intrauterine infusion with 1% oyster glycogen (OG) and a bacterial-free filtrate (BFF) of Actinomyces genes (BFF), the latter having been recovered from a clinical case of endometritis; neutrophils were harvested by flushing from the lumen 15 to 18 h later. A peripheral blood sample was collected at the time of flushing for the assay of estradiol and progesterone for a WBC and differential count and for the harvesting of neutrophils using a Percoll single-stage discontinuous gradient. After the recovery of the cells they were re-suspended in HBSS. Group 2 (n=4) were infused with BFF during during all reproductive states as Group 1, but with OG only after ovariectomy and after treatment with progesterone and estradiol. Neutrophil chemotaxis was assessed by measuring their migration using a modified Boyden chamber and Zymogen-activated serum as a chemoattractant. Phagocytic activity was measured by determining the number of Candida albicans ingested by each neutrophil after incubation. The percentage of kill was determined using a radiometric assay in which C. albicans was labeled with L-(5-3H) Proline. Peripheral WBC concentration was not influenced by the reproductive state of the cow; however, the mean neutrophil concentration was significantly different between the reproductive states (P<0.001) and between individual cows (P<0.001). In Group 1, there was little difference in the function of the peripheral and uterine neutrophils, and while there were differences in all 3 aspects of neutrophil function from both sources between reproductive states and individual cows, of which some were statistically significant, there was no consistent pattern. In Group 2, neutrophils recovered after the infusion of BFF had poorer function compared with those recovered after the infusion of OG. There was no consistent influence of the reproductive state or individual animal. The hypothesis that the influence of the reproductive state of the cow on the resistance of the uterus to infection is mediated by the inherent differences in either peripheral or intrauterine neutrophil function was not supported by this study.

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