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Biomedical subjects

S Cardin

Publications and source records attributed to S Cardin.

At least 37 records · Page 2Linked to original sources

Effect of hepatic vagotomy on plasma catecholamines during exercise-induced hypoglycemia.

The existence of a hepatosympathetic reflex active during insulin-induced hypoglycemia has recently been reported. The purpose of the present investigation was to test the hypothesis that the liver, through the afferent innervation of the vagus nerve, contributes to plasma epinephrine and norepinephrine responses during exercise-induced hypoglycemia. Hepatic vagotomized and sham-operated rats were killed at rest or after 30, 60, and 120 min of running exercise (26 m/min, 0% grade). At the end of the 120-min exercise period, liver glycogen, glucose, and insulin levels measured in the portal and peripheral plasma were all significantly reduced (P < 0.05) while epinephrine and norepinephrine concentrations, beta-hydroxybutyrate, lactate, and portal and peripheral glucagon plasma levels were all significantly increased (P < 0.05). However, no significant differences were observed between hepatic vagotomized and sham-operated rats at rest and after exercise for the metabolic and hormonal responses. These results suggest that if a hepatosympathetic reflex is active during an exercise-induced hypoglycemia situation, then this contribution is probably hidden by more important regulatory mechanisms.

3-Hydroxybutyric Acid↗

Different effects of indomethacin and nabumetone on prostaglandin-mediated gastric responses to central vagal activation in rats.

Intracisternal injection of a stable thyrotropin-releasing hormone (TRH) analog increases gastric prostaglandins release and mucosal resistance to injury through central vagal pathways. The effects of two nonsteroidal anti-inflammatory drugs, indomethacin (INDO) and nabumetone on intracisternal injection of various doses of TRH-induced gastric acid secretion and changes in mucosal resistance were investigated in urethane-anesthetized rats. Doses of INDO (5 mg/kg) and nabumetone (13.75 mg/kg) producing similar acute anti-inflammatory response in the carrageenin-induced paw edema were injected i.p. in all studies. INDO potentiated the acid secretion induced by intracisternal injection of TRH at 25, 50 and 200 ng by 5.1-, 1.9- and 1.4-fold, respectively, whereas nabumetone did not modify the secretory response to TRH. Moderate erosions were observed in 100% of rats treated with the combination of INDO and TRH (200 ng) whereas no erosions were observed when TRH or INDO were given alone or TRH in combination with nabumetone. TRH at 7 ng reduced mucosal damage induced by intragastric administration of ethanol (60%, 1 ml/kg) by 63%. The mucosal protective action of TRH was abolished by INDO but not altered by nabumetone pretreatment. These data indicate that at comparable anti-inflammatory doses, nabumetone, unlike INDO, neither blocks the protection against ethanol injury induced by low doses of TRH injected intracisternally nor potentiates the gastric acid secretion or lesions induced by higher dose of TRH. We speculate that these differences reflect reduced inhibition of gastric prostaglandins by nabumetone.

Animals↗

Effect of inhibition of hepatic fatty acid oxidation on metabolic and hormonal responses to exercise in rats.

The purpose of the present study was to assess the effects of 2-mercaptoacetate (MA), an inhibitor of hepatic fatty acid oxidation, on the metabolic and pancreatic hormone response to a prolonged (3 h) swimming exercise. All rats were first adrenodemedullated and were either submitted for 3 weeks to a normal (5% fat) or a medium-fat diet (MF; 18% fat). After being submitted to an exercise swimming habituation programme for one week, rats under both dietary conditions were either injected with a bolus dose of MA (600 mumol/kg; ip) or with a saline solution. MA and saline injected rats were either sacrificed after a 3-h swimming exercise or after a 3-h resting period. Administration of MA was associated with a lower level of beta-hydroxybutyrate after exercise in rats fed the MF diet, higher resting and exercising blood glucose levels in rats fed the MF diet, and higher resting and exercising levels of hepatic glycogen in rats fed a normal diet. There were, however, no significant effects of MA on free fatty acid, insulin, glucagon, epinephrine, and norepinephrine concentrations in both dietary conditions either at rest or after exercise. Therefore, the present data do not provide any evidence that the administration of MA, an inhibitor of hepatic fatty acid oxidation, influences the pancreatic hormonal response to exercise. There was also no evidence of a lowering effect of MA on blood glucose levels during exercise.

3-Hydroxybutyric Acid↗

Effect of hepatic portal infusion of pyruvate on pancreatic hormone response during exercise.

The purpose of the present investigation was to evaluate the effects of a small infusion of pyruvate into the hepatic portal vein on the pancreatic hormone response during exercise (30-min treadmill run; 26 m/min, 0% grade) in adrenodemedullated rats. Resting and exercising rats were infused with either pyruvate (5% solution; 0.016 ml/min) into the portal vein, pyruvate into the jugular vein, or saline into the portal vein. Peripheral and portal blood glucose concentrations were decreased (P < 0.01) similarly in all groups after the exercise period. Peripheral insulin, glucagon, and norepinephrine levels, either at rest or after exercise, were not significantly affected by the infusions. The response of portal pancreatic hormone concentrations to exercise was, however, reduced by the pyruvate infused into the portal and jugular veins for insulin and into the portal vein only for glucagon. The normal increase in peripheral glucagon-insulin molar ratio during exercise was shut down by the infusion of pyruvate into the portal vein but not by the infusion of pyruvate into the jugular vein or by the infusion of saline. These results indicate that a small blood infusion of pyruvate, even in the presence of a decreasing blood glucose level, can attenuate substantially the pancreatic hormone response during exercise in adrenodemedullated rats.

Animals↗

Increased insulin suppression of plasma free fatty acid concentration in exercise-trained rats.

The effect of exercise training on the insulin suppression of plasma free fatty acid (FFA) concentrations was studied in unanesthetized rats with the hyperinsulinemic-euglycemic clamp technique. Seven rats trained (TR) for 3 h/day by continuous swimming during 8 wk were compared with 6 untrained (UT) body weight-matched rats. Both TR and UT rats were submitted to an exercise swimming session 18 h before the clamp. A smaller mean diameter of adipocytes sampled from the epididymal fat depot was measured in TR animals. The total quantity of glucose infused to maintain euglycemia was 2.2 times higher in TR than in UT animals. No significant differences in plasma insulin concentrations were found between the two groups throughout the experiment. Insulin infusions resulted in a 60% decrease of plasma FFA in TR rats (mean value: from 0.46 to 0.18 mM) compared with 27% in UT animals (mean value: from 0.45 to 0.33 mM). The data indicate a greater ability of insulin to suppress plasma FFA levels with exercise training, which suggests an increased antilipolytic action of insulin in adipocytes under this condition.

Adipose Tissue↗

Special needs of adult critical care units.

This article has highlighted some of the specific needs of adult critical care units and the role that both the nurse manager and materiel manager play in today's changing health care system and environment. The key to success in meeting the specific needs of critical care patients lies in open communication and collaboration between the materiel management department and the department of nursing. The challenges are many, yet cooperation and an understanding of one another's needs can do much to create successful relationships within critical care settings and ensure optimal patient safety.

Adult↗

Hepatic vagotomy does not alter plasma insulin response to a low dose injection of glucose.

It has been reported that insulin concentration is altered by a hepatic vagotomy following intraperitoneal glucose injection (0.3 g/kg) resulting in supraphysiological blood glucose concentrations. On the other hand, neural activity of the hepatic vagus nerve has been shown to be substantially reduced by lower doses (0.05 g/kg intraportal; 0.1 g/kg intravenous). The present study was conducted in order to examine the role of the hepatic vagus nerve in insulin response after intraperitoneal injections of 0.1 and 0.3 g/kg of glucose. Measurements were made 5 days after section of this branch. In a first experiment, arterial glucose and insulin concentrations were not affected by the hepatic vagotomy following injections of either 0.1 or 0.3 g/kg of glucose. The same finding was also found in a second experiment in which portal glucose and insulin levels were measured after injection of 0.1 g/kg of glucose. These results suggest that large changes in neural activity are needed for the hepatic vagus nerve to influence the insulin response.

Animals↗

Effects of exercise training on insulin response to intravenous glucose in pubertal rats.

This study was undertaken to evaluate the effects of exercise training on glucose tolerance and glucose-stimulated insulin response (GSIR) in 55- and 90-day-old peripubertal female rats. Intravenous glucose tolerance tests (0.5 g/kg) were done in: 1) 90-day-old rats exercised in swimming sessions for either 5 or 10 weeks and evaluated 48 h after the last exercise bout; 2) 55-day-old rats exercised for 5 weeks and evaluated either 24 h or 48 h after the last exercise bout and; 3) unexercised 55- and 90-day-old rats. The total area under the GSIR curve was suppressed in 55- and 90-day-old rats exercised since the age of 21 days. However, this decrease was observed 48 and only 24 h after the last exercise bout in the 90- and 55-day-old rats respectively. Exercise did not affect the GSIR curve for the 90-day-old rats subjected to 5 weeks of exercise training (started at 55 days of age) when evaluated 48 h after the last exercise bout. Nor did one single bout of swimming exercise (2 h) in the last 24 h affect the GSIR in unexercised 55-day-old rats. These results suggest that the shorter duration of the residual effects of exercise in the younger rats (55 days) was related to the shorter length of the training programme. Body weight was not significantly reduced with exercise in 55-day-old rats, whereas the same amount of exercise in 90-day-old rats caused body weight reduction of approximately 35 g (p less than 0.05).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Combined effect of 2-deoxy-D-glucose and exercise on plasma catecholamine response.

2-Deoxy-D-glucose (2-DG) is a nonmetabolizable analogue of glucose that, by competitive inhibition of glucose utilization, produces a central neuroglucopenia and a peripheral hyperglycemia. This glucopenic agent was used to gain more insight into the combined effects of central glucopenia and exercise on plasma catecholamine response. This was carried out by comparing one group of exercising (26 m/min, 0% grade) rats injected with 2-DG (2-DG-EX; 250 mg/kg iv) with two control groups: one group of exercising rats injected with a saline solution (SAL-EX) and one group of resting rats injected with 2-DG (2-DG-RE). Significant (P less than 0.05) increases in blood glucose levels were observed 10 min after administration of 2-DG (7.2-13.8 and 7.3-12.4 mmol/l in 2-DG-EX and 2-DG-RE groups, respectively). These elevated blood glucose levels were maintained throughout the experiment in the 2-DG-RE condition but decreased in 2-DG-EX rats to levels observed in the SAL-EX group after 45 min of running (13.8-8.0 mmol/l). The combination of 2-DG-induced neuroglucopenia and exercise resulted in an additive response of norepinephrine (0.59 vs. 0.34 and 0.34 ng/ml; t = 12 min) and an amplified epinephrine response (1.4 vs. 0.37 and 0.31 ng/ml; t = 12 min) compared with the responses to each stimulus alone (2-DG-EX vs. 2-DG-RE and SAL-EX, respectively).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Effect of physical training on insulin response to intravenous glucose in male peripubertal rats.

This study was undertaken to evaluate the effects of regular endurance-type exercise (i.e., swimming) on glucose tolerance and glucose-stimulated insulin response (GSIR) in 55- and 90-day-old peripubertal male rats. Intravenous glucose tolerance tests (0.5 g/kg) were done in four groups of male Sprague-Dawley rats: two groups of trained (TR; 55- and 90-day-old) and two groups of age- and weight-matched untrained (UNTR) rats. The UNTR rats were subjected to a continuous food restriction to maintain body weights equal to those of the TR rats. Rats were received in our laboratory after weaning at 21 days of age and were evaluated 48 h after the last exercise bout. No significant differences in body weights were found between TR and UNTR rats, at the age of either 55 or 90 days. A significant (P < 0.01) decrease in the mean integrated area under the glucose and insulin curves was observed in TR compared with UNTR groups in 55- as well as 90-day-old rats. These results indicate that exercise training in male rats improves the glucose tolerance and GSIR before and during puberty (21-90 days) independently of a reduction in body weight gain.

Animals↗

Use of patient care extenders in critical care nursing.

This article explores the implementation and use of patient care extenders in two critical care units. Experimentation and diversity in changing the care-delivery system were the forces motivating the management team to redesign the existing nursing care-delivery system. The impetuses for the change process were the use of the role of the registered nurse and cost containment. Two case studies will illustrate from a practical perspective how the change occurred. Although the same nurse manager was responsible administratively for the two units, the patient care extender models were implemented differently. This was based on the conviction that each unit is unique with regard to patients and staff needs. The first case study occurred in an 18-bed cardiac telemetry unit in which the patient extender care model was integrated with direct patient care activities of the unit. In the second case study, which occurred in a ten-bed cardiac care unit, the patient care extender was integrated with indirect patient care activities. The approach to this article is practical, and it is intended for units that may be dealing with these issues in these changing times in health care.

Humans↗

Need for information. Interventions for practice.

Information is an important need of families of critically ill patients. Meeting this need requires a multidisciplinary approach and an environment that values the delivery of humanistic care. Critical care nurses require special skills in assessment, planning, intervention, and evaluation to effectively meet the information needs of families. Research is available to guide nurses in meeting the family's need for information.

Critical Illness↗

Effects of supramaximal exercise on blood glucose levels during a subsequent exercise.

The purpose of the present investigation was to examine the effects of hyperglycemia induced by supramaximal exercise on blood glucose homeostasis during submaximal exercise following immediately after. Six men were subjected to three experimental situations; in two of these situations, 3 min of high-intensity exercise (corresponding to 112, SD 1% VO2max) was immediately followed by either a 60-min period of submaximal exercise (68, SD 2% VO2max) or a 60-min resting period. In the third situation, subjects performed a 63-min period of submaximal exercise only. There were no significant differences between the heart rates, oxygen uptakes, and respiratory exchange ratios during the two submaximal exercise bouts (greater than 15 min) whether or not preceded by supramaximal exercise. The supramaximal exercise was associated within 10 min of the start increases (P less than 0.05) in blood glucose, insulin, and lactate concentrations. This hyperglycemia was more pronounced when subjects continued to exercise submaximally than when they rested (at 7.5 min; P less than 0.05). There was a more rapid return to normal exercise blood glucose and insulin values during submaximal exercise compared with rest. The data show that the hyperinsulinemia following supramaximal exercise is corrected in between 10-30 min during submaximal exercise following immediately, suggesting that this exercise combination does not lead to premature hypoglycemia.

Adult↗

Effect of prolonged exercise on insulin level in the portal and peripheral venous circulation in rats.

The purpose of the present study was to compare the plasma insulin levels in portal and peripheral veins in rats submitted to a prolonged exercise to exhaustion (mean +/- SE: 67 +/- 7 min). Plasma insulin levels were reduced significantly (p less than 0.01) during exercise in both the portal and peripheral venous circulation. The reduction was, however, more pronounced in the portal than in the peripheral vein (mean: -113 vs -64 and -162 vs -88 pmol.l-1 after 30 and 45 min of exercise, respectively), indicating that exercise reduced not only insulin secretion but also its removal. Accordingly, no significant differences were found for the portal/peripheral ratio of insulin at rest and during the first 45 min of exercise (1.86 +/- 0.2, 1.76 +/- 0.1, and 1.57 +/- 0.2 at rest, and after 30 and 45 min of exercise, respectively). This suggests that insulin removal during exercise is regulated in proportion to portal insulin concentrations.

Analysis of Variance↗

Effect of hepatic vagotomy on hormonal response to exercise in gluconeogenesis-inhibited rats.

The liver, through the afferent pathway of the hepatic vagus nerve, has been reported to influence the hormonal response to exercise in adrenodemedullated rats. The present investigation was designed to evaluate the role played by gluconeogenesis in this hepatic influence. To this end, we studied the effects of a selective hepatic vagotomy on the hormonal response to a 30-min treadmill run (26 m/min, 0% grade) in adrenodemedullated rats injected with 3-mercaptopicolinic acid, a gluconeogenic inhibitor. Hepatic vagotomy was associated with small but significant higher (P less than 0.05) elevations of peripheral blood glucose levels at rest and after exercise. No significant differences were observed between hepatic-vagotomized and sham-operated rats in either resting or exercising levels of liver glycogen, portal glucose, portal and peripheral insulin and glucagon, and peripheral epinephrine and norepinephrine. All hormonal responses, with the exception of epinephrine, were either decreased or increased similarly in the two experimental conditions after exercise. These data indicate that contrary to what has been reported in rats with an intact capacity for gluconeogenesis, hepatic-vagotomized and sham-operated rats with an inhibited gluconeogenesis had similar hormonal responses to exercise. It is concluded that gluconeogenesis plays a role in the afferent neural influence exerted by the liver via the hepatic vagus nerve in the regulation of hormonal response to exercise.

3-Mercaptopropionic Acid↗

Effects of selective hepatic vagotomy on running endurance in rats.

The liver, through the afferent ways of the vagus hepatic nerve, may influence metabolic adaptations during exercise. This study assesses the functional significance of this hepatic innervation by determining the effect of a selective hepatic vagotomy (HV) on running endurance time during submaximal activity in rats subjected to an overnight 50% food restriction. The time to exhaustion was similar for the groups of HV and sham-operated (SHM) rats [66 +/- 15 vs. 64 +/- 21 (SD) min]. The HV group was associated with higher resting levels (P less than 0.05) of hepatic glycogen and plasma glucose. No significant differences were observed between HV and SHM rats at rest and after exercise for muscle glycogen, free fatty acids, insulin, glucagon, and lactate concentrations. These data indicate that if hepatic glucoreceptors do exist and contribute to the metabolic regulation of exercise, their functional significance is secondary to more important regulatory mechanisms.

Animals↗

Influence of hepatic vagus nerve on pancreatic hormone secretion during exercise.

There has been recent evidence that the liver through the hepatic vagus nerve may influence the resting levels of plasma insulin in adrenalectomized rats. The present investigation was designed to evaluate whether such a relationship exists during physical exercise. To this end, the effects of a selective hepatic vagotomy on portal and peripheral insulin and on peripheral glucagon concentrations were studied after a 30-min treadmill run (26 m/min, 0% grade) in adrenodemelludated rats. Hepatic vagotomy was associated with small but significantly higher (P less than 0.05) levels of liver glycogen and blood glucose at rest and after exercise. No significant differences were observed between hepatic-vagotomized and sham-operated rats in resting insulin, glucagon, and plasma norepinephrine concentrations. Peripheral plasma insulin levels after exercise were significantly higher (P less than 0.01) in hepatic-vagotomized than in sham-operated rats [172 +/- 20 vs. 108 +/- 10 (SE) pmol/l]. Exercise was also associated with a significantly lower peripheral glucagon (P less than 0.01) and norepinephrine (P less than 0.05) levels in hepatic-vagotomized compared with sham-operated rats. These results indicate a role for the hepatic vagus nerve in the regulation of pancreatic islet secretion during exercise, possibly by contributing to the increase in sympathetic activity.

Animals↗