PubMed Health⌕ Search

Biomedical subjects

F N Thompson

Publications and source records attributed to F N Thompson.

70 records · Page 4Linked to original sources

Effect of suckling on cortisol, progesterone and luteinizing hormone in postpartum beef cows.

Five primiparous, 3-year-old Hereford cows suckled ad libitum , were cannulated via the jugular vein and stanchioned for 2-day sampling periods, every 14 days starting 14 days after the mean calving date. On the second day of each period, calves were removed to a pen away from the cows, for 9 hours. Blood was sampled 5 min before calves were returned to their dams, as soon as possible after initiation of suckling (IOS), and at 15-min intervals for 45 min, thereafter. Cortisol, progesterone and luteinizing hormone (LH) concentrations in the serum were quantitated by radioimmunoassay. Mean serum cortisol concentrations were 7.3 +/- .7, 9.4 +/- .7, 12.1 +/- .9, 7.5 +/- .5 and 5.7 +/- .4 ng/ml (mean +/- S.E.) at -5, 0, 15, 30 and 45 min after IOS, respectively, for all cows across all periods. Cortisol concentrations, during and after suckling, tended (P<.06) to differ among sampling periods, during the postpartum interval. Serum progesterone concentrations were .28 +/- .02, .28 +/- .02, .32 +/- .05 and .24 +/- .03 ng/ml at 0, 15, 30 and 45 min after IOS, respectively, for all cows across all period, indicating that suckling had no effect on serum progesterone, and were similar at all sampling periods during the postpartum interval. Serum LH concentrations were .81 +/- .07, .77 +/- .06, .71 +/- .04, and .72 +/- .04 ng/ml at 0, 15, 30 and 45 min after IOS, respectively. During the postpartum interval, serum LH concentrations were greater (P<.01) at 71 and 85 days postpartum than at any other time.

Journal Article↗

Cortisol and luteinizing hormone after adrenocorticotropic hormone administration to postpartum beef cows.

Cortisol and luteinizing hormone (LH) were measured in serum after the administration of adrenocorticotropic hormone (ACTH) to suckled (S) and nonsuckled (NS) beef cows. Blood was sampled on 2 consecutive days every 2 weeks for four bleeding periods starting 14 days after calving. Cows were injected with 200 IU ACTH or saline in a 2-day switchback design. Serum was collected before ACTH or saline injection and at 30-min intervals thereafter for 8 hours. Average cortisol concentrations in serum were similar in S and NS cows (6.4 +/- .6 and 6.1 +/- .8 ng/ml, respectively) after saline. Average cortisol concentrations in serum collected during an 8-hr period after ACTH on days 14, 28, 42 and 56 postpartum were 24.7 +/- 2.4, 31.8 +/- 3.5, 36.4 +/- 4.2 and 40.7 +/- .5 ng/ml, respectively, for S cows, and 31.1 +/- 2.9, 44.7 +/- 5.2, 45.0 +/- 5.7 and 46.0 +/- 5.4 ng/ml, respectively, for NS cows. Cortisol response to ACTH, measured as area under the response curve, was greater (P less than .05) in NS than in S cows. Amount of cortisol released by 200 IU ACTH was maximal by days 28 to 29 postpartum in NS cows, but the response increased gradually between days 14 to 15 and days 56 to 57 in S cows. overall, LH in serum averaged .55 +/- .08 ng/ml for S cows and .92 +/- .06 ng/ml for NS cows after saline, and .49 +/- .07 ng/ml for S cows and .94 +/- .06 ng/ml for NS cows after ACth. Although mean and peak serum LH concentrations did not differ between cows given ACTH and those given saline, the number of LH peaks and the number of cows having LH after saline. Mean serum LH concentrations were lower (P less than. 05) in S than in NS cows at 28 days postpartum. The number of LH peaks was lower (P less than .05) and the magnitude of the largest LH peak tended to be lower (P less than .06) in S cows at all sampling periods.

Adrenocorticotropic Hormone↗

Decreased reproductive potential and reduced feed consumption in mature white leghorn males fed aflatoxin.

A pair-feeding study was conducted to investigate the relative importance of ingestion of aflatoxin (20 microgram/g diet) versus decreased feed consumption in explaining the effects of dietary aflatoxin on reproduction. Fifty-eight mature White Leghorn males were divided among three groups - control, 0 microgram/g diet ad lib; aflatoxin, 20 micrograms/g diet ad lib; and pair-fed, 0 microgram/g diet pair fed to 20 micrograms/g group. Aflatoxin and pair-fed males consumed significantly less feed than controls during weeks 1 through 5 of the 8-week aflatoxin feeding period. Measures of reproductive potential (semen volume, testes weights, spermatocrit, and plasma testosterone) for pair-fed males were not significantly different from males fed aflatoxin, although both groups were significantly lower than control males. Measures of aflatoxicosis (liver weight, liver fat, and plasma albumin) for pair-fed males were not significantly different from control males, although both groups were significantly different from males fed aflatoxin. In conclusion, decreased feed consumption did not produce symptoms of aflatoxicosis but accounted for 60% of the effects of aflatoxin on reproduction. Therefore, aflatoxin has nutritional and toxicological effects on reproduction.U

Aflatoxins↗

Adrenocortical suppression in the dog after a single dose of methylprednisolone acetate.

Adrenal function was assessed in dogs after intramuscular administration of a single dose of methylprednisolone acetate (MPA). Twelve dogs were test challenged with adrenocorticotropic hormone (ACTH) and then assigned randomly to 1 of 3 groups and given MPA. Individual groups were test challenged with ACTH 2, 3, or 4 weeks later. All dogs were rechallenged 5 weeks after MPA administration. Plasma cortisol concentration was determined by radioimmunoassay. Basal plasma cortisol (time 0) was depressed on weeks 2 and 3, but not on weeks 4 and 5. Adrenal response to ACTH (increment of cortisol change) was suppressed on weeks 2, 4, and 5, but not on week 3. It was concluded that a single dose of MPA is capable of altering adrenal cortical function in dogs for at least 5 weeks.

Adrenal Cortex↗

Progesterone in bovine milk fat.

The progesterone (P(4)) concentration (ng/5 mul) in the fat portion of cow's milk was measured on days 0, 12, 20, 24, and 30 after insemination in an effort to assess the ability of this analysis to judge the reproductive status of dairy cows. Pregnancy was determined by rectal palpation at approximately 40 days after insemination. The mean P(4) concentration (ng/5 mul) +/- SD in the pregnant cows (n=17) was 0.14+/-.07, 1.31+/-.36, 1.41+/-.52, 1.22+/-.21, and 1.30+/-.43 on post-insemination days 0, 12, 20, 24, and 30 respectively. At these same intervals the P(4) concentration in the non-pregnant (NP) cows (n=18) was 0.14+/-.06, 1.26+/-.37, 0.56+/-.52, 0.57+/-.42, and 1.08+/-.59. On days 20 and 24 after insemination, mean P(4) levels were significantly (P<.001) elevated in the pregnant cows. It was concluded that an accurate assessment of the reproductive status of a cow, milk samples from days 0, 20, and 24 post-insemination would have to be analyzed for milkfat P(4) concentrations. In order to determine the percentage of cows inseminated out of the periestrual period, milkfat P(4) concentrations were ascertained in milk collected from 165 cows at the time of insemination. Cows that conceived (n=38) had a mean milkfat P(4) concentration at the time of insemination of 0.16+/-.09. The upper limit for P(4) in the milkfat at the time of insemination in cows that conceived was calculated to be 0.43 ng/5 mul milkfat. Subsequently, it was found that of the 14 cows that had P(4) levels above this upper limit at time of insemination, nine were inseminated at a period other than in the periestrual period and five were inseminated while already pregnant.

Journal Article↗

Effects of progesterone or estradiol on uterine tubal transport of ova in the cow.

An experiment was designed to determine the effect of progesterone (P) or estradiol benzoate (EB) on uterine tubal transport of ova in the cow. Intramuscular injections of P, EB, or corn oil (C) were administered to heifers 24 hours after the end of estrus. The heifers were euthanatized 60 hours after the end of estrus and the location of the ovum or zygote was determined. Venous serum levels of progesterone and estradiol-17beta were measured by radioimmunoassay. The mean uterine tube (UT) length was 23.9 cm. An ovum or zygote was recovered from 11 of 14 heifers. Serum levels of progesterone and estradiol-17beta were above normal bovine levels following the P and EB treatments, respectively. The mean UT ovum transport rates were 0.42, 0.21 and 0.23 cm/hour in the P, EB and C treatment groups, respectively. The UT ovum transport rate was increased (P<0.05) by the P treatment and EB treatment had no effect (P > 0.05) when compared with the C treatment.

Journal Article↗

Adrenal gland function in dogs given methylprednisolone.

Serum cortisol (hydrocortisone) was measured by radioimmunoassay in dogs given methylprednisolone (MP) orally or methylprednisolone acetate (MPA) IM. The MP was given on a daily and on an alternate-day basis to different treatment groups and the MPA was administered weekly. Samples of blood were obtained twice a week over a 9-week treatment period for serum cortisol determination, and the adrenal gland response to ACTH was assessed on posttreatment days 1, 3, 5, and 7. Administration of MP on an alternate or daily basis caused a slight but significant (P < 0.05) depression in mean resting cortisol values over time. The MPA administration caused a severe depression of resting serum cortisol values. In response to ACTH, cortisol values invariably increased sharply in nontreated control dogs and in those dogs given MP on an alternate-day basis. Dogs given MP daily had a depressed response to ACTH. The MPA treatment resulted in adrenal cortices that were unresponsive to ACTH. Dogs given MPA, but not challenge exposed with ACTH, had markedly lowered cortisol values for at least 2 weeks after cessation of treatment. Consequently, a difference between daily- and alternate-day MP administration was detected after ACTH challenge exposure; MPA administration inhibited adrenal cortisol secretion for at least the duration of the experiment.

Administration, Oral↗

Oxygen affinity in stored canine blood: the effect of prednisolone.

Erythrocyte 2,3 diphosphoglycerate (DPG) levels and P450 measurements were made on canine blood stored in acid citrate dextrose solution at weekly intervals for four weeks. A negative correlation (-0.904) was found between weekly DPG and P50 values. The mean P50 measurement of 28.2 mm Hg on day 0 was significantly (P less than 0.001) greater than values measured on days 14, 21 and 28. Mean DPG values in the blood at the time of collection of 8.59 micrometers/gHB were only significantly (P less than 0.005) greater compared to values measured on day 28. On day 27, 0.5 mg of prednisolone sodium succinate per ml of blood was added to certain blood samples. This treatment did not result in an increase in P50 and DPG values on day 28.

Animals↗

Milk progesterone to predict reproductive status in a commercial dairy herd.

Progesterone was measured in milk strippings of cows to evaluate potential diagnosis of pregnancy and to estimate embryonic mortality. Progesterone in milk was measured at 20 days and at 10-day intervals thereafter through 90 days after artificial insemination when the cows were palpated for pregnancy. Mean progesterone for 24 nonpregnant cows in estrus was 4.5 ng/ml at 20 days after insemination. Cows were classified as pregnant or nonpregnant by a formula which provided a progesterone concentration for which the probability of nonpregnancy was .8. At 20 days after insemination, the success in identifying the nonpregnant and pregnant cows was 87% and 67%. Ten of 34 nonpregnant cows with low (nonpregnant range) progesterone in milk on day 20 were not seen in estrus. Progesterone at sampling intervals after 20 days was used to investigate incorrect assessments. Seventeen nonpregnant cows had progesterone indicative of pregnancy at day 20. Progesterone in milk decreased at various later sampling intervals in all 17 cows. Two of these cows were diagnosed as having pathology of their reproductive tracts. If the other 15 cows experienced death of their embryos, the frequency of embryonic mortality was 28%.

Animals↗

Effect of prednisolone treatment on selected respiratory parameters and cardiac output in prematurely delivered neonatal lambs.

Lambs were delivered by hysterotomy on days 142 and 143 postcoitum and were assigned to either a control group or a prednisolone-treated group (10 mg/kg daily for four days). On days 1 through 3 of life erythrocyte 2,3-diphosphoglycerate values were significantly increased in the treated group. Prednisolone treatment did not result in significantly increased P50 values. Mean plasma corticoid values in the control group decreased gradually postpartum. The prednisolone-treated lambs compared to the control lambs had depressed corticoid values, differing significantly on day 4. Body weight gains were significantly depressed by treatment and this effect lasted beyond the treatment period. On day 1 of life (24 hours postinitial treatment) oxygen consumption and cardiac output were significantly elevated in the treated group.

Adrenal Cortex Hormones↗

Effect of adrenalectomy in the dog on blood gas tensions and oxygen content.

Arterial and venous blood gas tensions and pH were determined in 8 dogs during a control interval, while adrenal deficient, and following replacement therapy with corticosteroids. Additionally, erythrocyte 2,3-diphosphoglycerate (DPG) values were measured, and oxygen tension (mm of Hg) when hemoglobin is half-saturated with oxygen (P50) values were calculated. Mixed venous oxygen tension (PVO2), but not arterial oxygen tension (Pao2), decreased significantly (P less than 0.001) during adrenal insufficiency. This change was reflected in a significantly decreased (P less than 0.001) venous oxygen content and a significant increase (P less than 0.001) of the arterial-venous oxygen content difference. Other changes during adrenal insufficiency were nonsignificant decreases in DPG and P50 values. Treatment with corticosteroids for 2 to 3 days resulted in a significant (P less than 0.001) increase in DPG concentrations, a significant (P less than 0.025) increase in P50, and a reduction in the arterial-venous oxygen content difference compared with those values found in the adrenal-deficient dog.

Adrenal Cortex↗