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Prolongation of hibernation bout duration by continuous intracerebroventricular infusion of melatonin in hibernating ground squirrels.

Melatonin was infused intracerebroventricularly into hibernating golden-mantled ground squirrels (Citellus lateralis) maintained at 5 degrees C in darkness. Continuous infusion at a rate of 0.5 microliter/h was accomplished using an osmotic minipump. The effect of melatonin on hibernation bout duration was determined with reference to the natural trend in bout duration for each animal. At doses of 200 and 400 ng/h, melatonin produced a dose-related increase in bout duration. No effect was observed following control infusions of artificial cerebrospinal fluid or lower doses of melatonin.

Animals↗

Respiratory function of blood in hibernating and non-hibernating hedgehogs.

The oxygen affinity of the blood of hibernating hedgehogs has been investigated previously by Clausen and Ersland (1968) and Bartels et al. (1969). The results of these studies were conflicting in so far as Bartels et al. (1969) found an increase of the O2 affinity during hibernation resulting in a P50 of 23 mm Hg at pH 7.4 37 degrees C, while Clausen and Ersland reported a P50 of 33.6 mm Hg under the same conditions, a value which was only slightly different from the one found in nonhibernating animals (Bartels et al., 1969).

Animals↗

Role of the pineal gland in hibernators: a concept proposed to clarify why hibernators have to leave torpor and sleep.

The contention that torpor during hibernation might not be a kind of sleep but a kind of sleep deprivation may be correct, as it can be conceptually explained. Sleep is part of life and cannot be part of the torpor state, which has no reactions. The state of torpor has a time limit and, if this is not observed, death follows by freezing. The evolutional differences particularly in pineal gland physiology may explain the differences between the blueprints governing vital reflexes in humans and hibernators.

Animals↗

Comparative studies of blood coagulation in hibernating and non-hibernating frogs (Rana tigrina).

1. During hibernation in frogs (Rana tigrina) there occurs prolongation of several clotting tests, viz, whole blood clotting time, plasma recalcification time, cephalin time and prothrombin time. 2. The ambient body temperature of the frog during winter hibernation is low and the retarded blood clotting at lower temperature may play an important protective role against intravascular thrombosis. 3. Shorter plasma recalcification time in low-spun plasma as compared to high-spun plasma indicated the presence of procoagulant activity in platelets/leucocytes of frogs.

Animals↗

In vivo effects of a single dose of norepinephrine and epinephrine on tissue respiration of hibernating and non-hibernating species of frogs.

In vivo effects of a single dose of norepinephrine (NE) and epinephrine (EP) were studied on the rate of tissue (liver and skeletal muscle) respiration in Rana limnocharis (hibernating Sp.) and Rana cyanophlyctis (non-hibernating Sp.) during winter and summer months after 10 and 30 min, 1, 6, 12 and 24 hr of administration. During winter both NE and EP induced significant increase in the rate of tissues respiration only after 30 min after their administration in both the species and the stimulatory effect lasted up to 6 hr. During summer, however, NE and EP stimulated respiratory rate of tissues comparatively after a shorter lag period (10 to 30 min) in R. limnocharis than that of R. cyanophlyctis (30 min to 6 hr). These findings seem to suggest that NE and EP can stimulate tissue respiration very quickly, and, therefore, might be suitable as emergency hormones for instant/faster stimulation of energy metabolism in amphibians.

Animals↗

Functional and structural alterations with 24-hour myocardial hibernation and recovery after reperfusion. A pig model of myocardial hibernation.

BACKGROUND: Short-term myocardial hibernation of 3 hours resulting from a moderate resting coronary flow reduction has been reproduced in pigs. This study was designed to determine whether any structural changes accompany short-term hibernation caused by a moderate flow reduction maintained for 24 hours and whether any such structural alterations are reversible after reperfusion. METHODS AND RESULTS: A severe left anterior descending coronary artery (LAD) stenosis was created with a reduction of resting flow to approximately 60% of baseline and maintained for 24 hours. Regional coronary flow was measured by a flowmeter; wall thickening was determined by echocardiography, and local metabolic changes were measured. Of 17 pigs, 11 completed the study protocol of 24 hours. The LAD flow was reduced from 0.91 +/- 0.11 to 0.52 +/- 0.13 mL.min-1.g-1, a 43% mean decrease, at 15 minutes after the LAD stenosis and was maintained at 0.56 +/- 0.11 mL.min-1.g-1 at 24 hours. The reduction of regional coronary flow initially produced acute myocardial ischemia, as evidenced by reduced regional wall thickening (from 37.2 +/- 6.9% at baseline to 11.5 +/- 6.8%), regional lactate production (-0.34 +/- 0.28 mumol.g-1.min-1), and a decrease in regional coronary venous pH (from 7.41 +/- 0.035 at baseline to 7.30 +/- 0.030). At 24 hours, the reductions in coronary flow and wall thickening were maintained relatively constant and the rate-pressure product was relatively unchanged, but lactate production ceased and regional H+ concentration normalized, with a tendency toward a further reduction in regional oxygen consumption, from 3.10 +/- 0.90 mL.min-1.100 g-1 at 15 minutes after stenosis to 2.52 +/- 0.95 mL.min-1.100 g-1 at 24 hours (P = .06), indicating metabolic adaptation of the hypoperfused regions. Of 11 pigs, 6 were free of myocardial infarction; 3 had patchy necrosis involving 4%, 5%, and 6% of the area at risk; and 2 other pigs had a few scattered myocytes with necrosis, detected only by light and electron microscopy. Ultrastructural changes consisted of a partial loss of myofibrils and an increase in mitochondria and glycogen deposition. Regional wall thickening recovered 1 week after reperfusion in most pigs, and the ultrastructural changes reverted to normal. CONCLUSIONS: In this pig model, moderately ischemic myocardium undergoes metabolic and structural adaptations but preserves the capacity to recover both functionally and ultrastructurally after reperfusion.

Actin Cytoskeleton↗

A comparison of the effects of prior cold incubation on cerebral cortex function in a hibernator (Cricetus auratus) and a non-hibernator (Cavia porcellus)--II. High energy phosphate levels in cerebral cortex slices after in vitro cold incubation.

1. ATP and CP levels were measured in brain slices from golden hamster and guinea pig after varying periods of cold storage and subsequent incubation at 37 degrees C in the presence and absence of K+ salts. 2. ATP and CP levels were maintained at higher levels in hamster tissue. 3. The results are discussed in relation to the ability of a hibernator to transform and transport chemical energy at low temperatures.

Adenosine Triphosphate↗

[The hypometabolic effect of the blood plasma from a hibernating suslik Citellus undulatus. Neokyotorphin activates cardiac and respiratory activities in the suslik during arousal from hibernation].

The effect of intraabdominal injection of the blood serum from ground squirrels Citellus undulatus obtained at various stages of the baut has been studied on the level of oxygen consumption in albino mice. The strongest hypometabolic effect exhibited the blood plasma from animals at the beginning of the baut. The onset of baut was used in further experiments on C. undulatus for investigation of activating effects of neokiotorphin (Thr-Ser-Lys-Tyr-Arg) which was earlier found in the brain of the ground squirrel. It was shown that intraabdominal injection of this peptide to hibernating animals facilitates their arousal stimulating both the cardiac activity and respiration. The strongest effect was noted with neokiotorphin of [D-Ser] 2-modification which is more stable to proteolysis.

Animals↗