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O Resnick

Publications and source records attributed to O Resnick.

At least 37 records · Page 2Linked to original sources

Distribution of 125I-labeled rat growth hormone in regional brain areas and peripheral tissue of the rat.

The uptake of intraperitoneally injected 125I-labeled rat growth hormone into brain and peripheral tissues was measured in normal and hypophysectomized adult rats. A significant level of radioactivity was observed in the seven brain regions examined -- the telencephalon, diencephalon, midbrain, pons-medulla, cerebellum, pineal and pituitary glands. The pineal and pituitary glands, which are outside the blood-brain barrier, contained three to four times the concentration of radioactivity of the other brain regions. Compared to brain, the level of radioactivity was much higher in peripheral tissues (the diaphragm, kidney, serum and liver). For example, the serum contained ten times the level of radioactivity of most brain regions. For a given tissue, however, the normal and hypophysectomized rats showed a comparable amount of 125I-growth hormone. Trichloroacetic acid precipitates from each tissue sample showed that peripheral tissues had a higher proportion of radioactivity (35-48% of total tissue radioactivity) than the brain samples (13-26%). The data support the view that growth hormone, or a metabolite can enter the central nervous system and may directly affect on-going metabolic processes.

Animals

The effect of chronic protein malnutrition on trans-callosal evoked responses in the rat.

Studies were carried out on the trans-callosal evoked response in rats born of dams fed either a low (8%) or normal (25%) protein diet beginning 5 weeks prior to mating and throughout gestation and lactation. After weaning, pups were fed the same diets as their mothers. Bipolar (surface vs depth) stainless steel stimulating and recording electrodes were positioned at corresponding loci in the right and left sensorimotor cortices. Trans-callosal evoked responses were measured under urethane anesthesia using twice-threshold bipolar pulses of .1 msec duration at ages 13, 21, and 60-66 days. Evoked response latency was significantly greater in malnourished animals at 13 days of age, whereas at adulthood no latency differences were seen. Poststimulation excitability (15-100 msec range) was not significantly affected by the dietary treatment. These results are interpreted as corroborating previous reports on rats undernourished during development using sensory evoked potentials. By avoiding the use of extrinsic sensory stimulation, the present study demonstrates a dietary effect upon ontogeny of cortical evoked potentials independent of any possible effect on sensory receptor mechanisms.

Age Factors

Effects of protein malnutrition during development on protein synthesis in brain and peripheral tissues.

Rats born of mothers fed a low protein diet (8% casein versus a normal 25% casein diet) starting 5 weeks prior to mating showed a 50-100% increase in protein synthesis in the brain and kidney on the day of birth. This effect was due to a 50-100% increase in the uptake of IP injected 14C-leucine in the malnourished rats. The proportion of total tissue radioactivity in the trichloroacetic acid-protein precipitates was the same in the 8% and 25% casein groups. For the most part, there were no significant diet related changes in uptake or incorporation of 14C-leucine in the brain, liver or kidney in the 8% and 25% casein groups on Days 5, 10-11 and 21. While the physiological basis of the diet related changes seen on the day of birth is unknown, the present data represent a previously undescribed effect of prenatal protein malnutrition.

Animals

Effects of maternal dietary protein restriction on growth of the brain and body in the rat.

We studied the growth of the brain and body in rats born of dams fed a low-protein (8% casein) diet ad lib beginning 5 weeks prior to mating and continuing throughout gestation and lactation. Control dams were fed an isocaloric 25% casein diet. Litters were culled at birth to 8 pups. At birth, brain weights and body weights of pups of protein restricted dams were similar to those of control pups. During the period of lactation, pups of restricted exhibited severely retarded body growth but only mildly retarded brain growth resulting in an elevated brain/body weight ratio. This relative macrocephaly was maximal at 10-20 days of age, declining completely by 35 days of age. The relative macrocephaly could not be accounted for by increased retention of water in the brain of the malnourished rats. Following weaning, pups were maintained ad lib on the diets fed their mothers. At adulthood brain/body weight ratios were normal in the protein restricted group.

Animals