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Ultrastructural and morphometrical analyses of the brown adipocyte nucleus in a hibernating dormouse.

The fine morphology, size, and perichromatin granule frequency were analysed in brown adipocyte nuclei from hibernating, arousing, and euthermic dormice, Muscardinus avellanarius. Unusual nuclear structural constituents such as nuclear amorphous bodies, coiled body-like constituents and bundles of nucleoplasmic filaments were described as typical of hibernating nuclei. Morphometrical findings showed significant difference in total nuclear and nucleolar size in the three physiological conditions investigated as well as decreasing frequency of perichromatin granules in nuclei of hibernating to arousing to euthermic animals. A possible involvement of these granules in the intranuclear transport or storage of pre-mRNA is discussed in the context of other experimental evidence.

Adipocytes↗

The effects of hibernation stress on the heart rate and metabolic rate of Citellus lateralis.

1. Heart rates and oxygen consumption of hibernating Citellus (= Spermophilus) lateralis were evaluated at various body temperatures. 2. Hibernation-stress animals had significantly higher heart rates as well as elevated rates of oxygen consumption at all body temperatures than did their less-stressed counterparts. 3. The higher metabolic rates of stressed animals were not due simply to their elevated heart rates. 4. It appears that unstressed animals have an energetic advantage over hibernation-stress animals.

Animals↗

Hibernation-hypothermia and metabolism in hedgehogs. Changes in some organic components.

1. Biochemical levels of certain carbohydrates, lipids and proteins were determined in plasma, liver and brain of the oriental hedgehog and compared in active, hypothermic and awake animals. 2. Lipid reserves exhibited significant increase in autumn before the onset of hibernation. This was bound up with the predisposition of the animal to hibernate. 3. During hypothermia, glucose levels, lipid reserves and tissue protein content significantly declined, in contrast to tissue glycogen which remarkably increased. 4. This indicated that glycogenolysis was impaired while gluconeogenesis from lipids and proteins presented the primary source of energy necessary for tissue requirements. 5. During arousal, the marked elevation in plasma glucose concomitant with the drop in tissue glycogen, lipids and proteins indicated that glycogenolysis as well as gluconeogenesis participated in glucose production necessary for the thermogenesis required during wakefulness. 6. Our data suggested that the accumulation of brain glycogen during winter may directly initiate arousal. 7. The nature of the biochemical changes that occurred throughout the hibernation cycle implies that metabolism in hedgehogs is influenced by dynamically balanced control mechanisms operating within a wide range of temperatures.

Animals↗

Pineal melatonin in hibernating and aroused golden hamsters (Mesocricetus auratus).

Daily changes of pineal melatonin content were determined in warm-adapted nonhibernating and cold-adapted hibernating golden hamsters (Mesocricetus auratus). Pineal melatonin in nonhibernating golden hamsters showed marked daily rhythm with the night values about 20 times higher than the daytime ones. In hamsters hibernating for 2 and 3 days the melatonin rhythm was abolished, since no increase of pineal melatonin over basal levels occurred throughout 24 hr period. After arousal from hibernation melatonin increased rapidly regardless whether the hamsters were provoked to arousal during day or night.

Animals↗

Insulin secretion in the hibernating edible dormouse (Glis glis): in vivo and in vitro studies.

Plasma glucose and insulin have been studied during lethargy and spontaneous arousal of hibernating edible dormouse. During lethargy blood glucose was low while plasma insulin remained at the same level as in other seasons. Plasma glucose and insulin did not fluctuate along the phase of lethargy. During spontaneous arousal plasma insulin rose strongly from the 17 degrees C stage, reaching the higher values at 26 degrees C while blood glucose was only 85 mg/100 ml, then decreased at 37 degrees C. The effect of glucose and temperature on insulin secretion was studied using perfused pancreas preparation from hibernating edible dormice. During the rewarming of the edible dormouse pancreas the insulin release did not occur in response to the absolute extracellular glucose level but occurred in response to a B cell membrane phenomenon which was dependent on the changing rate of glucose level. The effect of glucose and temperature on insulin secretion from perfused pancreas was compared between edible dormouse and homeotherm permanent, the rat. The B cell response to glucose of the dormouse pancreas increased up to 15 degrees C whereas that of the rat only from 25 degrees C. The dormouse insulin secretion reached a peak value at the 30 degrees C of temperature, whereas that of the rat progressively increased until 37 degrees C. These results showed that some biochemical adjustment or process of acclimatization took place in the B cells of the hibernators.

Animals↗

Glucagon secretion in the hibernating edible dormouse (Glis glis).

Plasma glucose and glucagon concentrations were measured in edible dormice during the bout of hibernation, arousal and active periods. During lethargy, plasma glucose and glucagon were low, compared to active values and did not fluctuate throughout the phase. During rewarming, plasma glucose regularly increased from 17 degrees to 37 degrees C while plasma glucagon rose after the 17 degrees C stage and reached the higher values at 26 degrees C, then slightly decreased at 37 degrees C. During arousal, plasma levels of free amino acids progressively increased. The effect of temperature and secretagogue (glucose and arginine) on glucagon secretion was studied using perfused pancreas from hibernating edible dormouse. In vitro rewarming of pancreas induced an increase in glucagon secretion. Glucagon secretion was regulated by glucose (inhibitory effect) and by arginine (stimulating effect) up to 25 degrees C. The effect of temperature and glucagon on oxygen uptake of hibernating edible dormouse brown fat was studied using an in vitro technique. Rewarming strongly increased oxygen consumption from 10 to 37 degrees C. Glucagon enhanced oxygen consumption up to 20 degrees C.

Adipose Tissue, Brown↗

Glucose oxidation by adipose tissue of the edible dormouse (Glis glis) during hibernation and arousal: effect of insulin.

1. The effect of insulin on U-14C-glucose oxidation by adipose tissue isolated from hibernating or arousing edible dormouse has been studied. 2. CO2 production derived from radioglucose was analysed point by point during in vitro rewarming (from 6 to 37 degrees C). 3. The rate of temperature increase was 2 degrees/5 min in order to mimic the rate of rewarming during the spontaneous arousal of the dormouse. 4. Insulin did not increase the glucose oxidation by the adipose tissue from hibernating dormouse whereas adipocytes from active animal present high insulin sensitivity. 5. These results suggest that insulin resistance occurs during hibernation.

Adipose Tissue↗

Auditory-evoked brainstem responses in the hibernating woodchuck Marmota monax.

1. This study measured the changes in the auditory-evoked brainstem responses in the woodchuck (Marmota monax) during hibernation and arousal. 2. The auditory brainstem response of the euthermic woodchuck consisted of four waves occurring in a 10 msec time window after stimulation. 3. In the hibernating woodchuck, waves I and II could be traced down to the lowest body temperatures. 4. As temperatures increased all the components of the ABR emerged. The latencies of all the waves showed systematic decrease with temperature increments, the effect being cumulative across the time window. 5. These findings reflect activity in the VIIIth cranial nerve and the cochlear nuclei during hibernation and restoration of the functional integrity of the brainstem auditory pathway during arousal.

Animals↗

Slow wave sleep, shallow torpor and hibernation: homologous states of diminished metabolism and body temperature.

Until recently, sleep and hibernation were not usually considered to be closely related states (e.g. Dement, 1967). However, two current lines of research point toward a system of relations between caloric intake, thermogenesis, metabolic rate and adiposity in the regulation of the energy balance of warm-blooded animals (endotherms). One line indicates that sleep, shallow torpor and hibernation are homologous energy conserving processes, lying on a continuum of decreasing metabolism and body temperature (Tb). The other line indicates that the metabolic reductions brought about by sleep, shallow torpor and hibernation are regulated in accordance with periodic ecological factors affecting energy intake and energy balance.

Adaptation, Physiological↗

A circannual cycle in pinealocyte synaptic ribbons in the hibernating and seasonally reproductive 13-lined ground squirrel (Spermophilus tridecemlineatus).

Pinealocyte synaptic ribbons (SR) in the 13-lined ground squirrel were quantified at monthly intervals over a one-year period spanning the hibernating and reproductive cycles of these animals. SR numbers were high (70-90/20,000 microns2) during periods of activity and reproductive quiescence (May-October). With the onset of hibernation (November-December) there was a rapid 6 to 7-fold reduction in SR frequency. During arousal (January-February) and sexual maturation (March-April) there was a gradual increase in SR frequency. The winter decline in SR frequency is consistent with the decline in pineal melatonin during hibernation and supports the hypothesis that pinealocyte SR play an important role in the neurotransduction of melatonin biosynthesis.

Animals↗

Histamine enhances synaptic transmission in hippocampal slices from hibernating and warm-acclimated Turkish hamsters.

The effects of histamine on synaptic transmission were studied at 37 degrees C and 22 degrees C with extracellular recordings of stimulus-induced population action potentials in area CA1 of hippocampal slices prepared from hibernating (HTH) and warm-acclimated Turkish hamsters (WTH) and rats. In rat slices, application of 50 microM histamine had no effects on population spikes and field excitatory postsynaptic potentials (EPSPs). In HTH as well as WTH slices, 50 microM histamine generally increased the population spike amplitude. The slope of the field EPSP was unchanged. At 37 degrees C, the sensitivity for histamine was significantly higher in HTH slices than in WTH slices. At 22 degrees C, the effects of histamine were less pronounced in HTH as well as WTH slices. Hibernation-related improvement of sensitivity for histamine is interpreted as supporting hippocampal function during arousal from hibernation.

Acclimatization↗

Metabolism of hibernating reptiles. Changes of free amino acids in blood, liver and brain.

1. Glutamic acid showed a significant decrease during hibernation in brain cortex. This is attributed to: (a) Transformation to glutamine to detoxicate ammonia. (b) The synthesis of GABA from glutamic acid. (c) It is suggested that the enzyme GAD is active during hibernation. 2. GABA showed a significant increase in liver and brain cortex. It was absent in the blood serum. (a) The present results show that non-neural tissues contain lower GABA than neural tissues. (b) GABA may be formed locally in tissues by decarboxylation of glutamate as well as from pathways connected with tricarboxylic acid cycle. 3. Aspartic acid showed increased levels in blood serum, liver and brain cortex, the greatest increase was observed in liver. 4. A significant increase was recorded in the level of arginine in brain cortex and liver, whilst a smaller percentage increase was recorded in ornithine level. It is assumed that transformation of arginine to ornithine was depressed during hibernation.

Amino Acids↗

Biochemical and morphometric studies of heart, liver and skeletal muscle from the hibernating, arousing and aroused big brown bat, Eptesicus fuscus.

Heart, liver, pectoralis major, and plasma of hibernating, arousing and aroused bats were studied. The activities of four mitochondrial enzymes and three morphometric parameters of mitochondria did not change in the heart. Mitochondrial enzyme activities in the liver and pectoralis major did not change. Lactate dehydrogenase activity and isoenzyme content in heart, liver and pectoralis major did not change. Heart lipid content determined morphometrically decreased transiently after 30 min arousal from hibernation. Plasma free fatty acid concentration increased significantly by 7.5 min and peaked at 15 min after arousal from hibernation. Concentrations of heart free fatty acids, triglycerides, glycerol, and cholesterol and liver triglycerides did not change.

Animals↗

Amino acid content in several brain regions of the active and hibernating frog, Rana esculenta.

1. Total free amino acid contents in the optic lobe and diencephalon increased significantly during hibernation. 2. Free glutamate + glutamine showed significant increases in the cerebral hemisphere, optic lobe, medulla oblongata and diencephalon. 3. Free aspartate + asparagine showed significant increases in the cerebral hemisphere, optic lobe, diencephalon and olfactory lobe. 4. GABA showed a significant change only in the medulla oblongata. 5. Total protein amino acid level in the cerebellum and olfactory lobe decreased significantly during hibernation and most of the amino acids decreased significantly in these regions. 6. The amino acid metabolism during amphibian hibernation differs from that of the mammal.

Amino Acids↗

Comparison of muscle phosphofructokinase from euthermic and hibernating Jaculus orientalis. Purification and determination of the quaternary structure.

1. The structural properties of skeletal muscle phosphofructokinase from euthermic and hibernating jerboa were compared. 2. The enzyme was purified by a rapid procedure; suspended in ammonium sulfate in the presence of ATP, it was found to be stable for three weeks. 3. A specific activity of 76 U/mg and at most 65 U/mg was obtained for the enzyme from the euthermic and hibernating jerboa, respectively. 4. The molecular weight was estimated to be 320 kDa for the oligomer and 80 kDa for the subunit. 5. A unique alanine residue was found at the C-terminal end, suggesting that the enzyme is a tetramer made of four identical subunits. 6. The tetrameric structure of phosphofructokinase was confirmed by using crosslinking with disuccinimidyl esters. 7. The kinetics of formation of the different crosslinked species were found to be in agreement with a model of the tetramer corresponding to a dihedral symmetry with isologuous contacts between protomers. 8. The same molecular characteristics and immunochemical properties were found for the enzyme extracted from the euthermic and hibernating animals.

Animals↗

The mechanism of calcium-dependent activation of respiration of liver mitochondria from hibernating ground squirrels, Citellus undulatus.

1. It is shown that Ca(2+)-dependent activation of respiration of liver mitochondria from hibernating ground squirrels is accompanied by mitochondrial swelling. 2. The swelling of mitochondria from hibernating ground squirrels, as well as the activation of mitochondrial respiration, is precluded by cyclosporin A, p-bromphenacylbromide and oligomycin. Carboxyatractiloside, on the contrary, under these conditions favors the swelling and the acceleration of respiration. 3. It was concluded that Ca(2+)-dependent activation of hibernating ground squirrel liver mitochondrial respiration resulted from the appearance of a non-specific permeability pathway and from swelling of mitochondria.

Animals↗

Effect of 7,12-dimethylbenz(a)anthracene on the integument of the hibernating and nonhibernating 13-lined ground squirrel.

1. DMBA, a chemical carcinogen, was topically applied to skin patches of hibernating and nonhibernating ground squirrels (Spermophilus tridecemlineatus). 2. Macroscopically, hyperpigmentation, hair loss and excessive skin sloughing were evident in all treated nonhibernator skin patches. 3. Histological sections of skin revealed hyperkeratosis, epidermal vesicles, acanthosis, an indistinct basal layer and increased vascularization in nonhibernators. 4. Skin patches on hibernators were unaffected by treatment showing hibernation confers protection from the pathological effects of DMBA.

9,10-Dimethyl-1,2-benzanthracene↗

Repeated changes of dendritic morphology in the hippocampus of ground squirrels in the course of hibernation.

Quantitative Golgi study of hippocampal pyramidal neurons of ground squirrels showed rapid and profound transformation of their apical dendrites in the course of hibernation. The dendrites were significantly shorter, less branched and had fewer dendritic spines in the middle of hibernation bout than in the active euthermic ground squirrels between bouts. After arousal from torpor, within 2 h dendrites completely restored their structure. During hibernation, season remodelling of the hippocampal dendrites occurs repeatedly during each torpor-activity cycle.

Animals↗