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Biomedical subjects

S M Rhind

Publications and source records attributed to S M Rhind.

66 records · Page 4Linked to original sources

Pharmacokinetic studies of passively administered ovine anti-testosterone antibodies given to cattle by the subcutaneous and intravenous routes.

Passive immunization of cattle with ovine anti-testosterone antiserum can result in an increased ovulation rate, but the effect is variable and may be influenced by the route of administration. Investigations were made into the pharmacokinetics of these antibodies in cattle when given intravenously (i.v.), subcutaneously (s.c.) or via a combination of these two routes. Serum levels of free residual binding sites were measured by testosterone radioimmunoassay, whilst total circulating ovine IgG was determined using a specific enzyme-linked immunosorbent assay which shows no cross-reactivity with bovine IgG. The biological half-life of the administered antibodies was longer when it was calculated by measuring titre than when it was calculated by measuring IgG. Subcutaneous injection resulted in a significantly longer half-life of IgG than intravenous injection or the combined route, with a concomitant increase in the area under the curve. No significant differences between the half-lives as measured by titre were noted following the various routes of administration, but the mean value following s.c. injection was longest. The choice of route of administration of antiserum for passive immunization can be used to control the timing and duration of effective antibody levels. The results of the present study suggest that the s.c. or combined i.v. and s.c. routes are the preferred methods of passive immunization if an effect of long duration is required. It may be that it is the period over which the maximum level is maintained, rather than the absolute maximum level, which is important for successful immunomodulation of ovulation rate.

Animals↗

Effect of the body condition of ewes on the secretion of LH and FSH and the pituitary response to gonadotrophin-releasing hormone.

The effects of body fat content (body condition) of ewes on hypothalamic activity and gonadotrophin-releasing hormone (GnRH) secretion and on pituitary sensitivity to GnRH were investigated using Scottish Blackface ewes. Two groups of 12 ewes were fed so that they achieved either a high body condition score (2.98, S.E.M. = 0.046; approximately 27% of empty body weight as fat) or a low body condition score (1.94, S.E.M. = 0.031; approximately 19% of empty body weight as fat) by 4 weeks before the period of study. Thereafter, they were differentially fed so that the difference in mean condition score was maintained. Oestrus was synchronized, and on day 11 of the subsequent cycle half of the ewes of each group were ovariectomized. On day 12, the remaining ewes were injected (i.m.) with 100 micrograms prostaglandin F2 alpha analogue and ovariectomized 30 h later. Numbers of large ovarian follicles and corpora lutea present at ovariectomy were recorded. Blood samples were collected at 15-min intervals for 12 h on day 10 of the cycle (luteal phase) and at 10-min intervals from 24 to 30 h after prostaglandin injection (follicular phase). At days 2 and 7 after ovariectomy, samples were collected at 15-min intervals for 8 h and ewes were then injected with 10 micrograms GnRH and samples were collected for a further 3 h.(ABSTRACT TRUNCATED AT 250 WORDS)

Adipose Tissue↗

Effect of level of food intake of ewes on the secretion of LH and FSH and on the pituitary response to gonadotrophin-releasing hormone in ovariectomized ewes.

The effect of level of food intake on LH and FSH profiles and pituitary sensitivity to gonadotrophin-releasing hormone (GnRH) was investigated in two groups of 12 ovariectomized ewes. Ewes with a high intake (group H) had a mean daily intake (+/- S.E.M.) of 1.99 +/- 0.075 kg dry matter (DM)/head per day while ewes with a moderate intake (group M) consumed a mean of 1.02 +/- 0.021 kg DM/head per day. Ovaries were surgically removed from six ewes of each group on day 11 of the luteal phase and from the remainder 30 h after an injection of 100 micrograms prostaglandin analogue given on day 11 to induce luteolysis. During both the luteal phase and the follicular phase, mean LH and FSH concentrations and LH pulse frequencies and amplitudes were unaffected by the level of intake but mean plasma prolactin concentrations were higher (P less than 0.05) in group H than in group M ewes in the follicular phase. Mean LH and FSH concentrations at day 2 after ovariectomy were unaffected by treatment while mean prolactin concentrations were higher (P less than 0.05) in group H than in group M ewes. At day 7 after ovariectomy, mean LH and FSH concentrations were lower (P less than 0.05) in group H than in group M ewes although mean LH pulse frequencies and pulse amplitudes were not significantly affected by the level of intake at either time.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Reduced ovarian follicular development as a consequence of low body condition in ewes.

The effect of body condition on ovarian follicular development was investigated in Scottish Blackface ewes in high and low body condition. Follicles were dissected from ovaries on days 11 and 12 of the luteal phase and 24 h after prostaglandin-induced luteal regression. Ewes in low body condition had a lower ovulation rate (low: 0.9; high: 1.8 P less than 0.05) and lower mean plasma levels of FSH during both the luteal (low: 54; high: 72 micrograms/l) and follicular (low: 34; high: 43 micrograms/l) phases of the cycle. Low body condition was associated with a reduced number of large (greater than or equal to 4 mm) follicles in both the luteal and follicular phases, and in low condition a lower proportion of these follicles was oestrogenic and potentially ovulatory as assessed by follicular fluid levels of oestradiol. However, within the different oestrogenic classifications of these large follicles there were no significant differences in the steroidogenic capacity as assessed by the concentrations of either oestradiol or testosterone in follicular fluid, basal and hCG-stimulated testosterone production, thecal 125I hCG binding or basal and testosterone-stimulated oestradiol production by granulosa cells in relation to body condition. These results suggest that body condition influences ovulation rate by altering the concentration of FSH in blood, which in turn affects the number of potentially ovulatory follicles growing beyond 4 mm.

Animals↗

Effects of season, lactation and plane of nutrition on the reproductive performance and associated plasma LH and progesterone profiles in hormonally treated ewes.

Two experiments were designed to determine the effects of duration of lactation and plane of nutrition on the reproductive performance of Finn x Dorset Horn ewes mated at a hormonally induced oestrus 9 weeks after lambing. In Exp. 1, ewes were mated on 4 December or 19 March and lactation was terminated at 35 or 15 days before mating or 7 or 35 days after mating. The fertility of ewes lactating at the time of mating was reduced, particularly in ewes mated in March. This was not attributable to differences between lactating and non-lactating ewes for the incidence of oestrus, ovulation rate, litter size or the pattern of LH production. Indirect evidence based on progesterone profiles and returns to service suggest that reproductive failure was due to failure of fertilization and to embryonic death. In Exp. 2 ewes were mated on 1 July or 15 October. Lactation was terminated 15 days before or 7 days after mating and the ewes in each group were subjected to a high or low plane nutrition. Lactation depressed fertility in ewes mated in July but not in those mated in October. While the fertility of non-lactating ewes was independent of nutritional treatment, lactating ewes on a low plane and mated in July had a higher lambing rate than those on a high plane of nutrition. Nutritional effects on fertility appeared to be mediated through changes in milk production and reproductive failures were attributed to failure of fertilization and embryonic death. Seasonal and treatment effects on the incidence of oestrus and on ovulation rates, litter sizes and LH production were small and of little importance.

Animal Nutritional Physiological Phenomena↗

Ovulation and embryo survival rates and plasma progesterone concentrations of prolific ewes treated with PMSG.

Finnish Landrace x Dorset Horn ewes of two flocks comprising 47 and 51 animals were mated to Suffolk rams at a synchronized oestrus on 9 December (Flock D) and 8 April (Flock A) after treatment with 500 i.u. PMSG. The ewes were slaughtered between 50 and 145 days of pregnancy. The mean +/- s.e.m. ovulation rates were 4.5 +/- 0.24 (Flock D) and 5.0 +/- 0.32 (Flock A) for ewes which conceived to the induced oestrus and the corresponding litter sizes were 2.8 +/- 0.15 and 2.8 +/- 0.18. Mean concentrations of progesterone in the peripheral plasma during pregnancy were higher for Flock D than for Flock A ewes both in early (P less than 0.001) and late (P less than 0.05) pregnancy. An increase in ovulation rate, up to 4 or 5, was associated with an increase in mean litter size. There was evidence that higher ovulation rates were counterproductive.

Animals↗

Effects of season, lactation and plane of nutrition on prolactin concentrations in ovine plasma and the role of prolactin in the control of ewe fertility.

Plasma prolactin concentrations during the first 2 months after lambing, at oestrus, and during early pregnancy were investigated in 2 experiments in which Finn x Dorset Horn ewes were mated at an induced oestrus approximately 9 weeks after lambing. Mean prolactin concentrations between lambing and mating were dependent on seasons, being greater than 260 ng/ml plasma in lactating ewes mated in July and less than 150 ng/ml in those mated in October. Within 8 days of weaning of the lambs at 50 days post partum values declined to 122 and 30 ng/ml respectively. Plane of nutrition had little effect on prolactin levels. Higher prolactin values were recorded during oestrus in ewes mated in March or July, the normal period of anoestrus, than in December, the normal breeding season, mean values being approximately 200 ng/ml and 35 ng/ml respectively. The mean increases in the concentrations of prolactin during oestrus were smaller in lactating than non-lactating ewes. It is suggested that these differences in prolactin levels may be responsible for the effects of season and lactation on ewe fertility.

Animal Nutritional Physiological Phenomena↗

Effect of long-term feed restriction on seasonal endocrine changes in soay sheep.

Groups of 15 adult, castrated, male Soay sheep were housed under natural daylength conditions at 57 degrees N and fed a complete diet ad libitum (AL) or at a restricted rate (R) of 35 g dry matter (DM)/kg(0.75) initial liveweight per day. The diet was based on barley and dried grass pellets and contained an estimated 11.6 MJ of metabolisable energy, 83% DM and 140 g crude protein/kg DM. In the AL animals, higher levels of feed intake during the periods of long daylength were associated with shorter inter-meal intervals (p<0. 001), a greater meal frequency (p<0.001), and a greater proportion of time spent eating (p<0.001) together with a greater rate of feed ingestion (p<0.001) and an increased meal size (p<0.001). Mean plasma concentrations of insulin, prolactin, insulin-like growth factor 1 (IGF-1), triiodothyronine (T(3)), and thyroxine (T(4)) were higher (p<0.001) in the spring or summer than in the autumn. Mean plasma GH concentrations did not differ with month. Compared with R animals, AL animals had higher mean plasma concentrations of insulin (p<0.001), prolactin (p<0.01), T(3) (p<0.01), and T(4) (p<0.01). Plasma GH and IGF-1 concentrations did not differ significantly with treatment. There was a greater increase in plasma insulin concentrations following feeding in R than AL animals (p<0.001) owing to higher pre-feeding concentrations in AL animals and the ingestion of larger amounts of feed by R than AL animals in the period after fresh feed was introduced. There were significant differences between months in this response, in R animals (p<0.01). Mean CSF insulin concentrations were significantly higher in AL than R animals (p<0.05) but were not affected by month. Neither was there a difference between pre-feeding concentrations and concentrations at approximately 12 h after feeding. It is concluded that the differences in the response of plasma insulin concentrations to feeding at different times of year, which were detected in R animals, were attributable, primarily, to differences in the vagally-induced insulin response to feeding and that these differences may provide important feedback signals to the appetite centre.

Animals↗

Desquamative form of cryptogenic fibrosing alveolitis in a cat.

Bronchopulmonary disease is not uncommon in cats, many cases falling into the categories of chronic bronchitis and the "feline asthma syndrome". We report a case of chronic bronchopulmonary disease in an adult cat, which was initially diagnosed as chronic bronchitis. Failure to respond to appropriate therapy led to euthanasia. At necropsy, the lungs exhibited multifocal areas of consolidation, especially at the periphery of the diaphragmatic lobes. Histopathological examination revealed a striking variability of lesions, with interstitial fibrosis and intra-alveolar accumulations of macrophages in addition to alveolar epithelialization and smooth muscle hyperplasia. These changes were consistent with those described for the desquamative form of cryptogenic fibrosing alveolitis in human beings.

Animals↗

Effect of maternal overnutrition during pregnancy on pituitary gonadotrophin gene expression and gonadal morphology in female and male foetal sheep at day 103 of gestation.

The aim was to determine whether nutritionally mediated restriction of placental growth alters foetal body growth, pituitary gonadotrophin gene expression and gonadal development at Day 103 of gestation. Embryos recovered from adult ewes inseminated by a single sire were transferred, singly, into the uteri of adolescent recipients. After transfer, adolescent ewes were offered a high (H, n=16) or moderate (M, n=12) level of a complete diet. Ewes were slaughtered at 103+/-0.2 days of gestation and foetal blood, brain, pituitary and gonads were collected. Mean placental weight was lower (P< 0.01) in H than in M groups but foetal weight and reproductive organ weights were similar. Maternal nutrition did not influence LHbeta or FSHbeta mRNA expression in either sex but FSHbeta mRNA expression was higher (P< 0.001) in female (n=11) than in male (n=17) foetal pituitaries. Mean foetal plasma gonadotrophin concentrations were not influenced by dietary intake in either sex. Plasma progesterone concentrations were lower (P=0.001) in foetuses derived from H compared with M intake dams. Compared with M foetuses (n=5), ovaries from H foetuses (n=6) had fewer primordial follicles (P< 0.05) and fewer follicles in total (P< 0.005). In contrast, maternal nutritional status did not influence either seminiferous cord or Sertoli cell numbers in male foetuses (H, n=10; M, n=7). It is concluded that high maternal nutrient intakes restricted placental growth and altered foetal ovarian follicular development prior to the end of the second third of gestation. The latter effect was independent of gonadotrophin secretion.Crown

Animal Nutritional Physiological Phenomena↗