共查询到20条相似文献,搜索用时 0 毫秒
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This study tested the hypothesis that changes in photoperiod alter plasma catecholamine concentrations in the rhesus monkey during late gestation. Twelve chronically catheterized pregnant rhesus macaques were acclimated to a 12-h photoperiod (lights-on, 0700-1900 h). Under the control L:D cycle, blood samples were collected at 3-h intervals over 24 h for catecholamine analysis. Plasma concentrations (mean +/- SEM, pg/ml) ranged from 678 +/- 90 to 928 +/- 142 for norepinephrine; 230 +/- 22 to 631 +/- 141 for epinephrine; and 282 +/- 70 to 1090 +/- 362 for dopamine. A diurnal rhythm was observed in epinephrine with peak concentrations during lights-on (0900-1800 h; p less than 0.05, compared to lights-off). After the first sampling protocol, the animals were divided equally between two groups: phase shift, in which lights-on was shifted 11 h (2000-0800 h) and constant light, with lights on continuously. After the phase shift, a parallel shift in the plasma epinephrine rhythm was noted, with peak levels observed between 2200 and 0700 h (p less than 0.05). Constant light abolished the rhythm in epinephrine, with an overall reduction in mean basal levels of all three catecholamines. Daily melatonin infusions (0.2 micrograms/kg/h, 1900-0630 h) under constant light failed to restore the epinephrine rhythm or to return basal catecholamine concentrations to control photoperiod levels. These data suggest that photoperiod entrains the rhythm in epinephrine secretion, but the rhythm is ablated under constant conditions. Further, melatonin does not appear to play a role in the regulation of catecholamine secretion in the pregnant rhesus macaque. 相似文献
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A chronic catheter was inserted into the ventral caudal artery of male Sprague-Dawley rats to allow for sampling of blood and measurement of blood pressure and heart rate in conscious animals without handling. The day after surgery, one group of rats was transferred individually from the home cage to a shock chamber and after 5 min received 60 footshocks (2.5 mA, 0.4 sec in duration, at 5-sec intervals). This procedure was repeated two additional times during the same day. Control animals were handled in an identical manner but were not shocked. Previous experience with footshock had no effect on basal plasma levels of norepinephrine (NE) and epinephrine (EPI) or on resting blood pressure and heart rate as measured 2 days after surgery. When transferred to the shock chamber, previously shocked rats had greater increases in plasma NE and EPI and heart rate. In addition, previously shocked rats were less active and defecated more frequently than did control rats. However, there were no differences in the responses of previously shocked and control rats to 5 min of intermittent footshock. Results of this study demonstrate an activation of the sympatho-adrenal medullary system and attendant changes in the cardiovascular system and behavior of rats during the anticipation of footshocks. This suggests that the functioning of sympathetic nervous system and the adrenal medulla provides a sensitive measure of arousal and fear in rats. 相似文献
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M Lehmann J Keul 《European journal of applied physiology and occupational physiology》1985,54(5):502-505
Levels of free plasma catecholamines were simultaneously determined in 10 cyclists using capillary blood from one ear lobe and venous blood from one cubital vein. Catecholamine concentrations were higher in the ear lobe blood than in the venous blood at rest and during graded exercise. Average differences amounted to 1.7 nmol X 1(-1) (dopamine), 2.1 nmol X 1(-1) (noradrenaline) and 1.9 nmol X 1(-1) (adrenaline) at rest and increased only to 8.8 nmol X 1(-1) for noradrenaline during exercise. We assume that higher concentrations of dopamine and adrenaline in the capillary blood point to a significant neuronal release of these catecholamines, similar to noradrenaline. Catecholamine concentrations in capillary blood may better reflect sympathetic drive and delivery of catecholamines to the circulation than the concentrations in venous blood. 相似文献
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J Klepping J C Guilland B Claveyrolas R Truchot L Dusserre J P Didier 《Comptes rendus des séances de la Société de biologie et de ses filiales》1976,170(5):1042-1046
The plasma dopamine-beta-hydroxylase activity was measured in 10 healthy untrained volunteers during a graded physical exercise on a bicycle ergometer. The authors have shown a good correlation between the DbetaH activity and the noradrenaline content in plasma. It can therefore be concluded that the DbetaH activity could be a true measure of the sympathetic activity. 相似文献
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In chicken blood plasma two bands have been observed in the region of postalbumins. The genetically determined faster migrating band PasA was present in the blood plasma of all tested males in the plasma of a majority of the females. The slower migrating band (PasB) was only observed in the blood plasma of laying females and never in the blood plasma of males and non-laying females. The genotype of individuals of which the faster migrating band was present was determined as AA and Aa and of those lacking this postalbumin as aa. An excess of females over males was found from mating of male Aa x female Aa and male Aa x female aa. At the same time the percentage of hatched eggs was lowered respectively. 相似文献
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Larry Dashow August Epple 《Journal of comparative physiology. B, Biochemical, systemic, and environmental physiology》1983,152(1):35-41
Summary The effects of exogenous dopamine (DA), norepinephrine (NE) and epinephrine (E) on endogenous catecholamine (CA) titers and glycemia were studied with a highly specific and sensitive radioenzymatic assay (REA) in cardiac-cannulated, prespawning sea lampreys. Neither DA nor NE had a specific effect on the endogenous titers of the other two CAs, or on glycemia. In contrast, E caused a strong increase of both DA and NE at three different doses, one of which must have been in the physiological ranges. This increase may be due to direct stimulation of E on the NE and DA cells. E also caused hyperglycemia 45 min after the injection; however, this effect occurred only with unphysiologically high doses. An estimation of the disappearance rate of exogenous CAs revealed a mammalian-like speed, ranging from 3–5.5 min.Abbreviations
CA
catecholamines
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DA
dopamine
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E
epinephrine
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NE
norepinephrine
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REA
radioenzymatic assay 相似文献
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L A Stephenson M A Kolka R Francesconi R R Gonzalez 《European journal of applied physiology and occupational physiology》1989,58(7):756-764
Four women were studied at 0400 h and 1600 h to determine if their hormonal and hemodynamic responses to exercise varied with the circadian cycle. Esophageal temperature was measured during rest and exercise (60% peak VO2; 30 min) in a warm room (Ta = 35 degrees C; PH2O = 1.7 kPa). Venous blood samples were drawn during rest and exercise and hemoglobin concentration (Hb), hematocrit (Hct), plasma osmolality (Posm), plasma protein concentration (Pp), colloid osmotic pressure (COP), plasma renin activity (PRA), cortisol, aldosterone, norepinephrine (NE) and epinephrine (E) were determined. Changes in plasma volume (PV) were estimated from changes in Hb and Hct. The relative hemoconcentration (-11.2%) was similar at 0400 h and 1600 h, but the absolute PV was smaller at 1600 h than at 0400 h (p = 0.03). The responses of Posm, Pp and COP to exercise were unaffected by time of day. Although PRA was not different at the two times of day, PRA was 244% greater during exercise at 1600 h, but only 103% greater during exercise at 0400 h. The normal circadian rhythms in plasma aldosterone (p = 0.043) and plasma cortisol (p = 0.004) were observed. Plasma aldosterone was 57% greater during exercise, while plasma cortisol did not change. The change in E and NE was greater at 0400 h, but this was due to the lower resting values of the catecholamines at 0400 h. These data indicate that time of day generally did not affect the hormonal or hemodynamic responses to exercise, with the exception that PRA was markedly higher during exercise at 1600 h compared to 0400 h. 相似文献
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G Bolli M G Cartechini P Compagnucci S Malvicini P De Feo F Santeusanio G Angeletti P Brunetti 《Hormones et métabolisme》1979,11(9):493-497
Urinary excretion and plasma levels of catecholamines were determined in 20 normal and 39 diabetic subjects to evaluate the sympathetic activity. Diabetic patients were divided into 4 groups according to the metabolic control. Sympathetic activity showed no differences between normal and subjects with chemical diabetes (group I, n = 5). In insulin-treated diabetics in good metabolic control (group II, n = 11) only urinary excretion of free norepinephrine was significantly higher than normals (p less than .05). In insulin-treated diabetics in poor metabolic control (group III, n = 16) urinary excretion and plasma levels of norepinephrine showed a marked increase over groups I and II (p less than .001). In insulin-treated diabetics with ketosis (group IV, n = 7) urinary excretion and plasma levels of both norepinephrine and epinephrine showed the highest values (p less than .001 and less than .1). Finally, in groups III and IV, after achieving improved metabolic control, a significant decrease of urinary excretion and plasma levels of catecholamines was observed. The results confirm that there is an increased rate of catecholamine release in poorly controlled diabeties and suggest a close correlation between sympathetic activity and metabolic derangement in diabetes. 相似文献
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The responsiveness of the sympathoadrenal system to stress was assessed in spontaneously hypertensive (SHR) and Wistar-Kyoto normotensive (WKY) rats at 6, 18, and 48 weeks of age. Two days after insertion of a tail arterial catheter, each rat was transferred from its home cage to a shock chamber, and after 5 min received 60 footshocks over a 5 min interval. Blood samples were taken from undisturbed rats when in the home cage, 3–5 min after transfer to the shock chamber, and at the end of shock. An additional group of naive SHR and WKY rats was exposed to footshock and behavioral responses were recorded. There were no strain differences in levels of norepinephrine (NE) or epinephrine (EPI) while rats were undisturbed in their home cages. Transfer to the shock chamber resulted in a greater increase in plasma levels of both catecholamines in SHRs of each age. A similar pattern was evident after footshock; SHR rats had significantly higher post-shock levels of plasma NE and EPI than age-matched WKY rats. During shock, SHR rats were more active and jumped and reared more frequently than WKYs. These results demonstrate that the sympathoadrenal system of SHR rats is more responsive than normotensive rats to stressful stimuli and that this hyper-responsitivity is independent of increases in blood pressure. The excessive discharge of NE and EPI into plasma during stress may contribute to the development and maintenance of high blood pressure in SHR rats. 相似文献
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This review summarizes the evidence suggesting a role for second messengers in the thymus dependent differentiation of lymphocytes. Special emphasis will be placed on the potential for such studies to indicate differences and similarities not only between thymosin and other thumus factors but between the various peptides which are present in thymosin fraction 5. 相似文献
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Ten dogs anesthetized with α-chloralose were prepared with platinum monopolar electrodes in the antrum, duodenum and jejunum to record myoelectrical activity and bipolar stimulating electrodes placed on distal cut end of both cervical vagi to apply electric stimulation. Blood samples were obtained from both portal and femoral veins before and after bilateral vagal stimulation was initiated while the myoelectric activity was recorded continuously. The stimulation parameters used were low frequency (9V, 5 cps, 0.5 ms) and high frequency stimulus (9V, 30 cps, 10 ms) for 10 min. During the stimulation, plasma motilin concentrations increased significantly in both portal and femoral veins with simultaneous increases in the spike activity. The increment in the motilin level of portal venous blood was more marked. In 7 dogs, high frequency stimulation was repeated while the animals received i.v. atropine, 100 μg/kg-hr. Atropinization completely blocked the increase in the motilin concentration in response to high frequency stimulus with a simultaneous inhibition of the spike activity. The study suggests strongly that the vagus nerve plays an important role on endogenous release of motilin through its cholinergic pathway. 相似文献
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A Stancák M Kuna P Novák M A Srinivasan C Dostálek S Vishnudevananda 《Physiological research / Academia Scientiarum Bohemoslovaca》1991,40(3):345-354
Yogic high-frequency respiration--kapalabhati (KB)--was studied in 24 subjects from a point of rhythmicity. Respiratory movements, blood pressure and R-R intervals of ECG were recorded in parallel and evaluated by spectral analysis of time series. Respiratory signals during KB were modulated by 0.1 Hz rhythm in 82% of experiments. This component was also present in R-R intervals and blood pressure during KB. Frequency (0.2-0.3 Hz) was observed in 67% of respiratory records. The presence of the component 0.2-0.3 Hz in respiration was dependent on resting respiratory frequency. This frequency component was reduced in R-R intervals but increased in blood pressure during kapalabhati as compared to that at rest. The occurrence of both frequency components in respiration during KB supports the hypothesis about the integrative role of cardiovascular and respiratory rhythms in physiological states characterized by altered respiratory frequency. 相似文献
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Several recent reports indicate that exercise elevates the plasma interleukin 6 levels; however, the precise regulation of such an elevation still remains to be clarified. In this study, in order to clarify the requirements of central and peripheral catecholaminergic system for this exercise-induced interleukin 6 elevation, rats were either intraperitoneally or intracerebroventricularly injected with 6-hydroxydopamine which depletes the catecholamine in the central or peripheral tissues. As a result, our exercise protocol elevated the plasma interleukin 6, ACTH, and corticosterone levels in response to exercise. All such exercise-induced increases in the interleukin 6, ACTH, and corticosterone levels were significantly inhibited by pretreatment with an intracerebroventricular injection of 6-hydroxydopamine. In the intraperitoneal 6-hydroxydopamine-treated animals, the exercise-induced interleukin 6 elevation was significantly suppressed compared with the vehicle-treated animals, although no significant difference was found in either the ACTH level or the corticosterone level between both groups of animals. These results thus suggest that central and peripheral catecholamines are involved in the regulation of the exercise-induced interleukin 6 elevation. 相似文献