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C Purdon

Publications and source records attributed to C Purdon.

5 recordsLinked to original sources

Glucose turnover and its regulation during intense exercise and recovery in normal male subjects.

Intense exercise to exhaustion is expected to be associated with rapid and large changes in glucose production (Ra) and utilization (Rd). To quantify these, and to determine their mechanisms and those of the prolonged postexercise hyperglycemia, we measured circulating metabolic regulators and glucose kinetics, the latter by the method of enriched tracer [3-3H] glucose infusion during exercise. Eighteen fit, lean young male subjects exercised to exhaustion at 80% of maximal workload (approximately 100% VO2max) on a cycle ergometer. Plasma glucose was 4.90 +/- 0.08 mM/L at rest, increased during exercise, then abruptly to 6.91 +/- 0.40 mM/L at 4 min recovery then gradually declined. Plasma insulin was constant during exercise, then doubled to 162 +/- 28 pmol/l until 20 min recovery, before declining. Plasma glucagon increased by 71 +/- 11 pg/mL. Plasma norepinephrine increased 18-fold and epinephrine 14-fold, both declining by 20 min recovery. Ra increased 7-fold by exhaustion to 13.0 +/- 1.18 mg/kg/min, then decreased to 2.43 +/- 0.24 mg/kg/min by 9 min, then to about 2 mg/kg/min the rest of recovery. Rd rose 3-fold (6.61 +/- 0.70 mg/kg/min), and remained lower than Ra to 7 min recovery, but thereafter declined more slowly. Thus, the rapid and extremely large increase in Ra was not matched by the increment in Rd during exercise and early recovery. We suggest that unlike in exercise of lesser intensity, the major mediators of both the increase in Ra and the restraint of the increase in Rd are the catecholamines. The post exercise hyperglycemia and hyperinsulinemia are appropriate to muscle glycogen repletion.

Adult

Fluoxetine.

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Depressive Disorder

Glucoregulatory and hormonal responses to repeated bouts of intense exercise in normal male subjects.

Glucose turnover and its regulation were studied during and after two identical bouts of intense exhaustive exercise separated by 1 h to define differences in response. Six lean young postabsorptive male subjects exercised at approximately 100% maximal O2 uptake (3.7 +/- 0.3 l/min) for 13.0 +/- 0.7 min for the first (EX1) and 13.2 +/- 0.8 min for the second (EX2) bout. Plasma glucose increased during EX1 and peaked at 7.0 +/- 0.6 mmol/l in early recovery but to 5.8 +/- 0.5 mmol/l (P less than 0.05) after EX2, and both the hyperglycemic and the hyperinsulinemic responses were less after EX2 (P less than 0.015, analysis of variance). The hyperglycemia was due to lesser increments in glucose utilization (Rd) (3-fold resting) than glucose production (Ra) (7-fold) toward exhaustion and for 7 min of recovery. The rise in Rd was more rapid (P less than 0.05) and metabolic clearance rate was greater during (P = 0.015) and from 9 to 60 min after EX2, and Ra also remained higher during recovery (P less than 0.05). Marked and similar increments in plasma norepinephrine (18-fold) and epinephrine (14-fold) occurred with both bouts. Plasma glucagon increments were small and not different. Therefore, 1) more circulating glucose was used with EX2, 2) greater metabolic clearance rate during and after EX2 suggests local muscle adaptations due to EX1, and 3) significant correlations (P less than 0.002) between plasma norepinephrine and Ra (r = 0.82) and Ra - Rd (r = 0.52) and between epinephrine and Ra (r = 0.71) and Ra - Rd (r = 0.48) suggest a major regulatory role for the catecholamine responses.

Adult

Endocrine-metabolic function in remission-phase IDDM during administration of cyclosporine.

We have studied the endocrine-metabolic status of patients in non-insulin-receiving (NIR) remission of insulin-dependent diabetes mellitus (IDDM) within 6-60 mo of diagnosis during administration of cyclosporine, in comparison with nondiabetic subjects. IDDM patients in NIR remission were recognized when target glycemic control (plasma glucose and mean capillary blood glucose levels less than 7.8 mM before meals) was maintained without administration of insulin for at least 2 wk. In so-called isoglycemic tests, 50 g glucose was administered orally, and the glycemic curve was simulated in a subsequent study by programmed intravenous infusion of glucose. Under these conditions, the subjects with diabetes exhibited obvious glucose intolerance: acute beta-cell responses to intravenous glucose were virtually absent but significant, although subnormal responses were present after oral glucose. The responses of plasma immunoreactive gastric inhibitory polypeptide to oral glucose were normal. After bolus intravenous injections of glucose, the patients with diabetes again exhibited glucose intolerance; acute responses of immunoreactive insulin (IRI) and C-peptide were present, although grossly obtunded. On intravenous infusion of arginine (30 g in 30 min), the patients with diabetes showed substantial but subnormal increases in plasma IRI and C-peptide. Intravenous infusion of arginine elicited increments of plasma immunoreactive glucagon (IRGI) in both groups, and this response was slightly exaggerated in the patients with diabetes. On ingestion of a standard mixed meal (Sustacal) delivering 600 cal, there was a modest but significantly greater increase in plasma glucose levels in the diabetic subjects.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent

Pentamidine.

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Acquired Immunodeficiency Syndrome