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Biomedical subjects

G D Riegle

Publications and source records attributed to G D Riegle.

51 records · Page 3Linked to original sources

Physiological temperature response and embryonic mortality in stressed swine.

Physiological responses and some aspects of reproductive function were examined in mated female pigs subjected to a short-term heat stress during two intervals of early gestation. Trial 1 control and treated animals experienced temperatures of 24.0 and 40.2 degrees C, respectively, from days 2 through 13 of pregnancy. Trial 2 control and treated pigs were exposed to 23.3 and 40.4 degrees C, respectively, from days 14 through 25 of pregnancy. Both high thermal exposures caused significant increases (P less than 0.05) in rectal temperature. At body temperatures of 41.1 degrees C or above, animals became more active and behavioral patterns erratic. Stressed pigs in both trials exhibited adaptation to the short-term high thermal environment as treatment days progressed. Embryonic mortality in the stressed animals in trial 1 was greater than in controls, with the animals in the former group retaining a normal size litter or losing the entire litter by day of slaughter. A significant proportion (P less than 0.01) of litters from stressed animals contained degenerating fetuses at day 42 of gestation, suggesting a continuous or delayed effect of thermal stress on embryo survival.

Adaptation, Physiological↗

L-Dopa effects on serum LH and prolactin in old and young female rats.

Serum LH and prolactin changes in response to an acute systemic L-dopa injection were measured in young (4-6 months) proestrous, estrous and 2nd day diestrous rats, and in aged (23-30 months) constant estrous and pseudopregnant (long diestrous) Long-Evans rats. Serum LH and prolactin were measured by radioimmunoassays in serial blood samples taken before and 15, 60 and 120 min after i.p. injections of 0, 3 or 30 mg of L-dopa. Pretreatment serum prolactin levels were elevated in afternoon samples from young proestrous and estrous rats and in both aged groups. Both the 3- and 30-mg injections caused a reduction in serum prolactin in all groups. The reduction in serum prolactin following 3 mg of L-dopa was less in both the aged groups than in the young rats. The pretreatment serum LH concentration was markedly elevated only on the afternoon of proestrus. The pretreatment serum LH level of the aged constant estrous group was greater than that of either the young estrous or diestrous group. Pretreatment serum LH levels were lower in aged pseudopregnant rats than in young diestrous rats. After the 30-mg L-dopa injection serum LH increased in all groups except the aged pseudopregnant group. Although the increase in LH following L-dopa injection was similar in young estrous and aged constant estrous rats, the increase in serum LH occurred later and lasted longer in the latter group. These data indicate that the hypothalamic-anterior pituitary endocrine control mechanisms are less responsive to acute L-dopa treatment in the aging female rat.

Age Factors↗

Effects of acute stress on serum LH and prolactin in intact, castrate and dexamethasone-treated male rats.

The effects of handling, ether vapor anesthesia and blood sampling on serum LH and prolactin were determined in intact, castrate and dexamethasone-treated male rats. Cage removal and transport to an adjacent room increased LH and prolactin levels by 10 and 15 min after the initial animal disturbance. Intact male rats subjected to repeated ether anesthesia and blood sampling showed a more rapid increase in serum LH and prolactin than the preceding rats, since serum LH and prolactin was increased by 4, 8 and 15 min after initial cage disturbance. In a group of rats subjected to serial blood sampling over a longer time interval, both prolactin and LH levels remained higher than 90 min after initial animal handling. At 90 minutes after a single blood sampling, blood prolactin concentration remained higher than in controls. Serum LH levels returned to control levels 90 min after the stress of a single blood sampling. Although serum prolactin was increased in the castrate group subjected to serial anesthesia and blood sampling, LH concentrations were reduced under the same conditions. Injection of 5 and 50 mug of dexamethasone/100 g body wt for 8 days markedly reduced adrenocortical responsiveness to the stress of serial anesthesia and blood sampling at 1, 4, 8 and 15 min after initial rat disturbance. The 50 mug dexamethasone treatment reduced the stress-stimulated increase in serum prolactin at all blood sampling intervals. The dexamethasone-treated groups also showed smaller increases in serum LH at 8 and 15 min after first animal handling than the control rats. These results indicate that serum LH and prolactin concentrations are consistently increased by acute stress in intact male rats, the duration of the stress stimulation of LH and prolactin is at least 90 min under the conditions of this study, serum LH levels of castrate male rats are decreased by acute stress and dexamethasone administration lowers stress stimulation of LH and prolactin release.

Anesthesia↗

Age-related changes in pituitary responsiveness to LHRH in the female rat.

Serum LH changes in response to LH-releasing hormone (LHRH) injection were measured in young (4-6 month-old) proestrous, estrous, and second-day-diestrous rats and in aged(23-30-month-old) constant estrous and irregular pseudopregnant (prolonged diestrus) female Long-Evans rats. Serum LH was measured by radioimmunoassay in serial blood samples taken before and at 15, 30 and 60 min after injection of 0, 5, 50 or 500 ng of LHRH. Serum LH also was assayed in similar groups of rats acutely pretreated with either 20 mug of estradiol benzoate (EB) or 5 mg of progesterone. Aged rats showed a smaller increase in serum LH following LHRH injection than the young groups. Within the young groups, the magnitude of response was greater in proestrous and estrous rats than in the diestrous animals. Pretreatment with EB resulted in increased serum LH after LHRH injection in young estrous and diestrous rats and in aged constant estrous rats, but did not alter serum LH levels in the aged pseudopregnant rats. Although the inccrease in serum LH after LHRH injection was greater in all young groups given progesterone pretreatment, progesterone pretreatment did not affect LHRH responsiveness in either of the aged groups. These results suggest that with aging, the pituitary becomes less capable of relasing LH in response to acute LHRH stimulation, and that the pituitaries of aged rats are less responsive to gonadal steroid sensitization to LHRH stimulation.

Aging↗

Effects of castration and gonadal steroids on serum luteinizing hormone and prolactin in old and young rats.

Changes in serum LH and prolactin concentrations in response to bilateral gonadectomy and gonadal steroid replacement were measured in mature young (4-6 months) and old (23-30 months) female and male Long-Evans rats. On day 13 after gonadectomy, female rats were injected with oestradiol benzoate (OB) and male rats with testosterone propionate (TP) for a period of 12 days. They were then permitted a recovery period of 6 weeks. Serum prolactin and LH concentrations were measured by radioimmunassay in single blood samples taken at various intervals before and after gonadectomy and during and after steroid treatment. Serum LH levels were about the same in intact young old female rats, but after ovariectomy LH rose several fold higher in young than in old remale rats. In male rats, after orchidetomy the increase in serum LH was greater in young than in old rats. Oestradiol benzoate and TP injections into female and male young and old rats produced variable effects on LH release. Serum prolactin concentrations were approximately six times higher in old intact than in young intact female rats, and after ovariectomy showed a much greater percentage reduction in old than in young female rats. Administration OB produced a greater absolute increase in serum prolactin in old than in young female rats. Serum prolactin values were about the same in old and young male rats, and the effects of castration and TP administration on serum prolactin were not markedly different in the two age groups. These results indicate that old female and male rats are less capable of releasing LH than young rats of both sexes, but old females release more prolactin than young females.

Aging↗