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E G Bendeich

Publications and source records attributed to E G Bendeich.

6 recordsLinked to original sources

Hemophilus influenzae meningitis in the rat: behavioral, electrophysiological, and biochemical consequences.

Hemophilus influenzae is the most common cause of bacterial meningitis in children, and a high percentage of survivors are at risk for long-term sequelae. To explore the mechanisms responsible for these sequelae, a neonatal rat model was used to define the behavioral, electrophysiological, and biochemical changes following meningitis. Three days after inoculation of 6-day-old rats with a minimum of 1 X 10(7) colony-forming units of a virulent Hemophilus influenzae, type b, cerebrospinal fluid and blood were cultured to confirm the presence of meningitis and bacteremia, respectively. At this time, forebrain norepinephrine and dopamine levels were significantly elevated in meningitic rats when standardized on a wet-weight basis. No changes in brain serotonin or heart norepinephrine levels could be found in the 9-day-old rats. No residual changes were found in steady-state concentrations of norepinephrine or dopamine in surviving adult rats. However, survivors that had had meningitis as neonates showed significant impairment in active and passive avoidance learning tasks and demonstrated a significantly higher level of activity during a habituation period in circular photocell activity cages. No change in the flinch-jump threshold was detected. Brainstem auditory evoked potentials showed delays of various waves in 3 of 10 Hemophilus influenzae type b-treated adult rats tested. These rats also exhibited markedly augmented locomotory responses to d-amphetamine (1 mg/kg), suggesting a long-lasting perturbation of central monoamine neuronal transmission.

Age Factors↗

Evaluation of the effects of nerve growth factor and anti-nerve growth factor on the development of central catecholamine-containing neurons.

Intracisternal NGF or anti-NGF has been found to produce no long-term major alterations in central norepinephrine (NE) or dopamine levels when administered to neonatal rats. While NGF and anti-NGF were found to produce significant changes in brain NE content within one week of treatment, changes in central NE were no longer detectable at 30 days of age. Modification of the growth response of the central adrenergic neurons following 6-OHDA treatment was also not affected by NGF or anti-NGF when evaluated 3 weeks after treatment. However, centrally administered anti-NGF did induce a loss of peripheral NE terminals, which was attributed to leakage of the anti-NGF from the central injection site.

Adrenergic Fibers↗

A biochemical and morphological study of the altered growth pattern of central catecholamine neurons following 6-hydroxydopamine.

In this study the effect of administering 6-hydroxydopamine (6-OHDA) intracisternally on brain catecholamine content and fluorescence patterns of cerebellar processes was examined. It was found that intracisternal injection of 6-OHDA resulted in widely diverging effects depending upon the dose of 6-OHDA, age of the animal upon injection and the length of the post injection interval. Small doses of 6-OHDA (3 and 10 microgram) selectively depleted telencephalic and upper brain stem NE while larger doses of 6-OHDA (30 and 100 microgram) infringed on dopaminergic as well as noradrenergic neurons. In addition, the lower doses of 6-OHDA, but not the higher ones, led to an approximately two-fold accumulation of NE in the lower brain stem and cerebellum. Morphological observations suggested that the cerebellar norepinephrine accumulation after 10 microgram 6-OHDA was attributable primarily to an invasion of noradrenergic processes into the cerebellum.

Age Factors↗