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Biomedical subjects

B Cannon

Publications and source records attributed to B Cannon.

At least 127 records · Page 7Linked to original sources

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Hand Injuries↗

Brown fat thermoregulation in developing hamsters (mesocricetus auratus): a GDP-binding study.

The thermogenic capacity of brown fat from neonatal and developing hamsters was investigated. The method used was to measure the capacity of brown fat mitochondria to bind externally added guanosine diphosphate (GDP). This gives an estimate of the number of proton-conducting channels and hence the capacity of heat production in the mitochondria. At an age of 12 days post-partum the GDP-binding capacity is low: 0.14 nmol GDP/mg mitochondrial protein. Thereafter the capacity shows a steady increase up to 0.54 nmol/mg at 20 days. The peak is followed by a slow decrease down to the level of the adult hamster: 0.32 nmol/mg. this pattern of brown fat development is strikingly similar to reports on the development of oxygen consumption measured on whole animals or on the ability to maintain a constant body temperature when the ambient temperature is lowered. The calorigenic response to injected noradrenaline also follows this pattern. It is therefore justified to suggest that brown fat is a major effector of regulative metabolic heat production in the developing hamster.

Adipose Tissue, Brown↗

Cold adaptation in the rat: increased brown fat peroxisomal beta-oxidation relative to maximal mitochondrial oxidative capacity.

Brown fat hypertrophy in the rat resulting from cold adaptation is shown here to involve increased mitochondrial, peroxisomal, and lysosomal enzyme activities. Mitochondrial activity in homogenates of brown fat was estimated as cytochrome c oxidase. After 4 wk in the cold (+5 C), the total activity was 3-fold higher than in control rats, although the specific activity was somewhat lower. Peroxisomal activity was followed as cyanide-insensitive palmitoyl-CoA-dependent NAD+ reduction (palmitoyl-CoA oxidase) and as catalase. The total activity of both palmitoyl-CoA oxidase and catalase was more than 10-fold higher than in controls and the specific activity about 3-fold higher. Acid phosphatase, used as a lysosomal marker, showed a 6-fold higher total activity and almost twice as high specific activity. The relatively greater increase in peroxisomes and lysosomes compared with mitochondria indicates an involvement in thermogenesis also for these organelles.

Acid Phosphatase↗

Sodium-induced calcium release from mitochondria in brown adipose tissue.

Coupled mitochondria of brown adipose tissue can accumulate Ca2+ if a substrate is present. The Ca2+ is released by addition of 20 mM Na+, but not by addition of K+ or choline +. Energy-dissipating Na+-induced Ca2+ cycling occurs maximally with 20 mM Na+ and 10 microM Ca2+. In brown adipocytes, the Ca2+ ionophore A23187 and the Na+ ionophore monensin increase respiration if substrate is added, and incubation in a low-Na+ buffer decreases norepinephrine-induced respiration. Thus Na+-induced Ca2+ release takes place in brown adipose tissue; released Ca2+ could have a regulatory or thermogenic role or both.

Adipose Tissue, Brown↗

High number of high-affinity binding sites for (-)-[3H]dihydroalprenolol on isolated hamster brown-fat cells. A study of the beta-adrenergic receptors.

The beta-adrenergic receptors of hamster brown adipocytes have been characterised by binding of the radioactive ligand (-)-[3H]dihydroalprenolol, directly to isolated intact cells in suspension. The brown fat cell contains 57,000 specific and saturable binding sites which have a dissociation constant (Kd) for [3H]dihydroalprenolol of 1.4 nM as determined by Scatchard analysis. The kinetically derived Kd, determined from forward and reverse rate constants, is 5 nM. Both of these values are in agreement with the dissociation constant (Kd = 2.2 nM) for alprenolol, determined from competition studies with [3H]dihydroalprenolol in these cells. Beta-adrenergic agonists competed for the specific binding sites with a typical beta 1-adrenergic specificity. The order of potency of agonists agrees well with the ability of these agents to stimulate respiration in isolated brown adipocytes: 50% stimulation of respiration occurs with apparently less than 10% occupancy of binding sites. Both the high affinity and high number of specific binding sites of [3H]dihydroalprenolol in brown fat cells presumably reflect the generally accepted dominating role of catecholamines in the regulation of brown fat metabolism and non-shivering thermogenesis.

Adipose Tissue, Brown↗

The physiological role of pyruvate carboxylation in hamster brown adipose tissue.

1. Pyruvate carboxylase is present in brown adipose tissue mitochondria. 2. In isolated mitochondria, pyruvate, bicarbonate and ATP, the substrates for pyruvate carboxylase, are able to replace added malate in supplying a condensing partner for acetyl-CoA formed from beta-oxidation of fatty acids. 3. In brown adipocytes, pyruvate and CO2 increase the rate of norepinephrine-stimulated respiration synergistically. 4. The norepinephrine-stimulated respiration in brown adipocytes is diminished when pyruvate transport into the mitochondria is inhibited. 5. Pyruvate carboxylation increases the intramitochondrial level of citric acid cycle intermediates, as shown by titrations of malonate inhibition of respiration. 6. Pyruvate carboxylation can continuously supply the mitochondria with citric acid cycle intermediates, as evidenced by its ability to maintain respiration when oxoglutarate conversion to glutamate is stimulated. 7. Pyruvate carboxylation is necessary for maximal oxygen consumption even when drainage of the citric acid cycle for amino acid synthesis is eliminated. 8. Pyruvate carboxylation explains observed effects of CO2 on respiration in brown adipocytes, and may also explain the increased glucose uptake by brown adipose tissue during thermogenesis in vivo.

Adipose Tissue, Brown↗

Energy dissipation in brown fat.

Heat evolution in isolated brown fat cells has been measured by microcalorimetry. Thermogenesis (= oxygen consumption) is enhanced in the presence of CO2. This effect is probably due to pyruvate carboxylase activity which will increase the mitochondrial concentration of oxaloacetate. Oxaloacetate serves as condensing partner for acetyl-CoA coming from fatty acid oxidation. The high rate of oxygen consumption is impossible in cells when mitochondrial respiration is coupled to ATP synthesis, due to low amounts of ATP synthetase enzyme. A loosening of coupling is therefore required. This is possibly facilitated by acyl-CoA.

Adenosine Triphosphate↗

Use of the leukocyte migration inhibition assay to evaluate antigenic differences in human breast cancers and melanomas.

The leukocyte migration inhibition assay was used to compare the antigenic reactivity of 3 M KCl extracts of human tumors. Many extracts demonstrated strong reactivity with patient leukocytes, whereas others demonstrated weak or no reactivity, Extracts prepared from primary tumors or local recurrent tumors were more antigenic than extracts from involved lymph nodes or pleural effusions. The least reactive preparations were extracts made from specimens of liver metastases obtained at autopsy. A large standard extract tested at a standard concentration was useful for the evaluation of antigenic reactivity of human tumor extracts. It served as a point of reference in simultaneous tests with one blood sample from each individual, thus eliminating the influence of patient variation on extract reactivity.

Antigens, Neoplasm↗