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Biomedical subjects

W C Stern

Publications and source records attributed to W C Stern.

69 records · Page 4Linked to original sources

Effects of growth hormone on brain biogenic amine levels.

The effects of IP administered bovine growth hormone (GH) on regional brain serotonin, 5-hydroxyindoleacetic acid (5-HIAA) and norepinephrine levels in rats were examined. GH decreased the levels of both monoamines and 5-HIAA in the diencephalon and brainstem while not affecting telencephalic concentrations. In hypophysectomized rats, however GH produced significant elevations of monoamine and 5-HIAA levels in all brain regions. In normal rats the decreases in norepinephrine content produced by GH were correlated with a reduction in the stimulatory action of d-amphetamine on general activity levels. These results demonstrate that GH can affect brain biogenic amines and that these effects have behavioral consequences.

Animals↗

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↗

Sleep cycles in cats during chronic electrical stimulation of the area postrema and the anterior raphe.

Sleep-waking profiles were obtained from 130 7 hr stimulation-EEG recording sessions in a series of cats bearing chronically implanted stimulating electrodes in the regions of the area postrema and anterior raphe nuclei. The results indicated that: (a) during electrical stimulation of the region of the area postrema with 0.5 or 10 Hz at 1 and 2 mA there were significant increases in the occurrence of the deeper aspects of slow-wave sleep and in REM sleep. These elevations were significant in comparison to nonstimulation baselines and to sleep profiles obtained during stimulation of points located dorsal and anterior to the area postrema. (b) Stimulation of the medial reticular formation including the anterior raphe using the same parameters employed for the area postrema did not alter the occurrence of any stage of sleep. These findings indicate that the region of the area postrema may be more involved in the generation of sleep than the anterior raphe nuclei.

Animals↗

Power spectral analysis of EEG activity obtained from cortical and subcortical sites during the vigilance states of the cat.

There is considerable evidence that the raphé system and the region of the nucleus tractus solitarious (NTS), including the area postrema, play significant roles in slow-wave sleep mechanisms and in EEG synchronization. Studies of the interactions between these systems and the neocortex are much needed. If neuronal activity in these lower brainstem regions regulates the degree of cortical synchrony then a high degree of correspondence between the EEG of the area postrema or raphé complex with that of the cortex might be expected. In order to quantitate the reequency characteristics of the EEG obtained from these subcortical sites (nucleus raphé dorsalis, area postrema, as well as anatomical controls adjacent to these regions) during the different vigilance states (waking, slow-wave sleep, REM sleep) in the cat, power spectral analyses techniques were employed. Comparison of these subcortical spectral characteristic with those obtained from cortical (frontal and occipital) sites during the same vigilance state, show that the spectral measures elicited from the region of the area postrema closely correspond to that of the cortex, particularly during slow-wave sleep. On the other hand, the EEG of the anterior portion of the raphé region, although exhibiting a substantial low frequency component during slow-wave sleep in comparison to wakefulness does not show a statistically significant shift to low frequencies such as occurs in the area postrema or the cortex. These results suggest that the increases in the low frequency content of the cortical EEG sites during slow-wave sleep results from synchronizing inputs from the area postrema to a greater extent than from the raphé complex.

Animals↗

Influence of electrical stimulation of the substantia nigra on spontaneous activity of raphe neurons in the anesthetized rat.

Recent studies of afferent connections of the anterior raphe using the horseradish peroxidase technique have demonstrated a major projection originating in the substantia nigra (SN). The present acute electrophysiological study examined the influence of stimulation of the afferent on the activity of individual neurons in the raphe of the posterior midbrain and anterior pons (n = 51), and of a control group of cells (n = 15) located 2 mm lateral to the raphe. The predominant effect of SN stimulation at 0.1-1.0 mA, 1 Hz or 10 Hz, was suppression of raphe activity, with 63% of the cells showing cessation of firing following SN pulses and only 8% showing excitation. The average duration of suppression was 200 msec at 1 Hz and 38 msec at 10 Hz. In contrast, 40% of the lateral cells were excited, with 27% of the cells showing suppression. The mean duration of total suppression of lateral cell firing was 61 and 17 msec at 1 and 10 Hz, respectively. The results from the raphe cells are consistent with recent reports of stimulation of other forebrain and brainstem afferents to the raphe in which suppression of raphe activity was the main effect.

Action Potentials↗

The potential use of cyclodextrins in parenteral formulations.

The general use of cyclodextrins in drug formulations is reviewed. The ability of cyclodextrins to form reversible inclusion complexes with many drugs can eliminate various undesirable physicochemical properties. While beta-cyclodextrin is extremely useful in many of these applications, it is toxic when given parenterally, precluding its use in i.v. and other formulations. Chemically modified cyclodextrins such as 2-hydroxypropyl-beta-cyclodextrin are amorphous isomeric mixtures which are potent complexing agents and innocuous when administered i.e., either acutely or subchronically. The use of these modified cyclodextrins in parenteral formulations and to solubilize and stabilize various proteins and peptides is presented.

Chemical Phenomena↗