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Biomedical subjects

B Brownlee

Publications and source records attributed to B Brownlee.

4 recordsLinked to original sources

Assessment of stormwater impacts on an urban stream with a detention pond.

Impacts of urban development on a small creek with an on-stream stormwater pond, which was built to mitigate the effects of a 13-ha commercial plaza on creek flows, were assessed by investigations of the creek-pond system hydrology, water and sediment chemistry and toxicity, and benthic communities. The hydrology and conventional pollutant loadings of this system were dominated by the creek catchment (4.5 km2), which contributed more than 95% of the total flow; the rest was contributed by the plaza runoff which was less polluted than typical residential runoff. Conventional bioassays (Daphnia magna, Microtox) did not indicate any confirmed acute toxicity in the creek flow, plaza drainage, or pond outflow. However, sediments accumulated in the pond were rather polluted and several sediment bioassays (including Sediment Microtox) indicated their severe toxicity. In benthic community assessments, taxa richness and total counts of benthic organisms did not change much when moving from upstream to downstream of the pond. Thus, the pond accumulates sediments and toxicants and thereby prevents further degradation of the creek condition downstream of the plaza drainage outfall.

Animals↗

Ectopic noradrenergic hyperinnervation does not functionally compensate for neonatal forebrain acetylcholine lesion.

Adult rats who have undergone neonatal 192 IgG-saporin induced lesions of forebrain acetylcholine (ACH) neurons are normal on many behavioral tasks. In this study we determined whether ectopic hippocampal ingrowths, a documented consequence of these neonatal cholinergic lesions, functionally compensate for ACH denervation in these rats. Neonatal rats underwent systemic 6-hydroxydopamine (6-OHDA) injections on postnatal days (PND) 1-3 to prevent the ingrowths, and/or intraventricular 192 IgG-saporin injections on PND 7. The 192 IgG-saporin profoundly reduced basal forebrain p75 neurotrophin receptor (p75(NTR)) immunoreactive (IR) neurons. The 6-OHDA treatment abolished hippocampal and cortical dopamine-beta-hydroxylase (DBH) IR terminals, indicating the absence of normal norepinephrine (NE) innervation. Ectopic DBH IR and p75(NTR) IR varicosities which occurred in the hippocampus of 192 IgG-saporin treated rats were also eliminated by 6-OHDA treatment. Behavioral testing in adulthood indicated no effect of the treatments on the Morris water maze. 192 IgG-saporin treatment caused perseveration during delayed spatial alternation (DSA) and increased working but not reference memory errors on the radial arm maze (RAM). The 6-OHDA plus 192 IgG-saporin treated rats did not differ from the 192 IgG-saporin only rats on any task. These results indicate that ectopic hippocampal NE ingrowths do not functionally compensate for neonatal ACH lesions. Neonatal forebrain ACH lesion impairs working memory on the RAM but the absence of an effect on DSA contraindicates a basic dysfunction of short term memory. Despite severe combined neonatal loss of forebrain ACH and NE innervation, behavior is remarkably intact.

Acetylcholine↗

Excitotoxic lesions of the lateral hypothalamus made by N-methyl-d-aspartate in the rat: behavioural, histological and biochemical analyses.

The purpose of this study was to determine whether the excitotoxin N-methyl-d-aspartate (NMDA) could be used to make lesions within the lateral hypothalamus and what effect they had on regulatory behaviour. Larger doses of NMDA were effective in the lateral hypothalamus but tended to spread into adjacent structures; smaller doses made lesions which were contained within the lateral hypothalamus and zona incerta. Lesions which damaged the lateral hypothalamus and surrounding tissue had no effect on the concentration of dopamine (or its metabolites) in the dorsal or ventral striatum. The large lesions, including extrahypothalamic damage, were associated with long-term deficits in lab chow and water intake, but rats with lesions restricted to the lateral hypothalamus made good recoveries, eating and drinking normally from around the tenth day post-operation. Body weight gain was normal in these rats, though there was a long-term loss of body weight compared to controls. Unoperated rats with food intake yoked to lesioned rats showed identical long-term changes in body weight, suggesting that the changes in body weight of lesioned rats may be a reflection of changes in eating and drinking rather than a disruption of a body weight set-point mechanism. Motor deficits were not found; all rats were able to consume without difficulty saccharin solutions. All lateral hypothalamic lesioned rats failed to respond to dehydrating, dipsogenic or glucoprivic challenges. It is concluded that NMDA is an effective toxin in the rat lateral hypothalamus, sparing ascending dopamine fibres, and that the main effect of such lesions is an impairment in responding to physiological challenges.

3,4-Dihydroxyphenylacetic Acid↗