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Biomedical subjects

D Hull

Publications and source records attributed to D Hull.

At least 217 records · Page 12Linked to original sources

The effect of prolonged cold exposure on heat production in new-born rabbits.

1. The rates of oxygen consumption and the colonic temperatures were monitored from birth in rabbits delivered by Caesarean section at term. The rates of oxygen consumption at 25 and 36 degrees C rose over the first 12 hr of life.2. Thirty rabbits were kept unfed in an environment of 25 degrees C from birth. Extra oxygen consumption, in response to cold exposure, failed 24-34 hr later. Twenty-four of these rabbits were allowed to recover in an environment of 36 degrees C. The metabolic response to cold exposure did not return in those kept unfed or given glucose but those fed with rabbit's milk showed significant recovery when re-exposed to cold 4 or 18 hr later.3. The tissue glyceride content of brown and white adipose tissue and the liver were greatly reduced once the animals failed to respond to cold exposure and no significant rise was detected during the recovery period after a milk feed.4. Another twelve rabbits were kept unfed in an environment of 36 degrees C. These animals showed a poor metabolic response to cold exposure after 48 hr, although their brown adipose tissue was still replete with fat and the blood glucose rose to normal values during cold exposure.5. These results suggest that an increase in oxygen consumption in response to cold exposure can occur even though brown adipose tissue is largely depleted of glyceride provided that an alternative supply of fuel is available. Glucose alone is not an adequate source of energy.

Adipose Tissue↗

Fat metabolism and heat production in young rabbits.

1. The rates of oxygen consumption were measured in 6-8-day-old rabbits at 34 and 15 degrees C after varying periods of starvation and cold exposure. At the start of the experiment the rabbits had been fasted for 24 hr. Eight rabbits were studied immediately, six after 24 and six after 48 hr in a cold environment (20 degrees C), and twelve after a further 48 hr in a warm environment (34 degrees C). All the animals had a similar increase in oxygen consumption during the final hour of cold exposure (15 degrees C).2. The rabbits kept at 20 degrees C lost 83% of the fat stored in their brown adipose tissue within 24 hr and a further 11% in the next 24 hr. The fat content of white adipose tissue had fallen by 75% at 48 hr. In contrast rabbits kept unfed at 34 degrees C had lost 47% of the fat in brown adipose tissue and 44% of the fat in white adipose tissue after 48 hr.3. In six rabbits subcutaneous thermocouples demonstrated that local heat production continued in brown adipose tissue after 48 hr cold exposure.4. In the rabbits kept at 34 degrees C the final cold exposure caused a large increase in the serum free fatty acid and glycerol concentrations. Much lower concentrations were found in rabbits kept at 20 degrees C.5. The results show that the fat stored in the brown adipose tissue of young rabbits exposed to cold is preferentially used for heat production. When this store of fat is exhausted, brown adipose tissue still produces heat presumably by oxidizing fat and glucose taken from the circulation.

Adipose Tissue↗

The blood flow and oxygen consumption of brown adipose tissue in the new-born rabbit.

1. A direct method for measuring venous outflow from brown adipose tissue in anaesthetized new-born rabbits is described.2. During noradrenaline infusion the mean blood flow through brown adipose tissue increased from 87 to 360 ml./100 g tissue (wet wt.).min, and the mean rate of oxygen consumption of brown adipose tissue rose from 9.3 to 60 ml. O(2)/100 g tissue.min.3. During cold exposure the mean blood flow through brown adipose tissue increased from 90 to 304 ml./100 g tissue.min.4. The mean cardiac output was 266 ml./kg body weight.min; during noradrenaline infusion it was 405 ml./kg body weight.min. At rest about one tenth, and during noradrenaline infusion about one quarter of the cardiac output went to brown adipose tissue.5. It was calculated that most of the extra oxygen consumed during the metabolic response of the anaesthetized new-born rabbit to noradrenaline infusion or cold exposure was consumed by brown adipose tissue.6. Hypoxia (breathing 10% O(2) in N(2)) greatly reduced the increase in oxygen consumption but not the increase in blood flow in brown adipose tissue caused by noradrenaline infusion.

Adipose Tissue↗

The effect of propranalol on the calorigenic response in brown adipose tissue of new-born rabbits to catecholamines, glucagon, corticotrophin and cold exposure.

1. Experiments measuring the rate of oxygen consumption of unanaesthetized new-born rabbits and the blood flow in brown adipose tissue of anaesthetized new-born rabbits are described.2. The increase in rate of oxygen consumption caused by I.V. infusion of noradrenaline, adrenaline and isoprenaline (2 mug/kg.min for 10 min) was blocked by propranalol (I.V. 1 mg/kg) but the increase caused by cold exposure was not. A larger dose of propranalol (5 mg) blocked the calorigenic response to cold exposure as well.3. Infusion of glucagon (I.V. 4 mug/kg.min for 10 min) caused a large increase in the rate of the rabbit's oxygen consumption and in blood flow through its brown adipose tissue. These responses, which reached a maximum within 10 min from the start of the infusion, were not blocked by propranalol (1 or 5 mg/kg).4. Infusion of corticotrophin (I.V. 1 i.u./kg.min for 10 min) also caused a large increase in the rate of oxygen consumption of new-born rabbits. The response reached a maximum about 20 min from the start of the infusion and it was not blocked by propranalol (5 mg/kg).5. These results support the conclusion that noradrenaline is released at sympathetic endings in brown adipose tissue and that the increase in blood flow caused by noradrenaline is secondary to its metabolic action on the tissue. They also suggest the possibility that glucagon and corticotrophin may act directly on brown adipose tissue and stimulate heat production during cold exposure.

Adipose Tissue↗