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Biomedical subjects

N C Christopher

Publications and source records attributed to N C Christopher.

21 records · Page 2Linked to original sources

Cefixime compared with amoxicillin for treatment of acute otitis media.

Cefixime was compared with amoxicillin for treatment of acute otitis media in a randomized trial. Results of tympanocentesis on day 3 to 5 of therapy were used as the major outcome. Total daily doses were 8 mg/kg of cefixime and 40 mg/kg of amoxicillin. One hundred twenty-six patients were randomly assigned to receive treatment; 64 cultures grew pathogens. Pathogens were eradicated from the middle ear after 3 to 5 days of therapy in 27 (79.4%) of 34 children given amoxicillin and 26 (86.7%) of 30 children given cefixime (p = 0.47). When Streptococcus pneumoniae cases were analyzed, bacteriologic cure occurred in 14 (93.3%) of 15 children given amoxicillin and 12 (75%) of 16 given cefixime (p = 0.333). When cases of Haemophilus influenzae infection were analyzed, significantly more cures occurred with cefixime (10/10, 100%) than amoxicillin (8/13, 62%) (p = 0.046). Pathogens associated with failure of amoxicillin therapy were H. influenzae (five cases, two beta-lactamase-positive), S. pneumoniae (one case), and Moraxella catarrhalis (one case, beta-lactamase-positive). The four failures with cefixime therapy were all in patients infected with S. pneumoniae. Rates of rash, diarrhea, and vomiting were the same in both groups and did not necessitate stopping therapy. We conclude the following: (1) Cefixime and amoxicillin were equivalent in overall clinical and bacteriologic efficacy for otitis media. (2) Cefixime was more efficacious than amoxicillin in treating H. influenzae otitis media and should be preferred when H. influenzae is the suspected etiologic agent. (3) Side effects of both drugs were mild and equivalent.

Acute Disease↗

Prenatal nicotine exposure and cognitive performance in rats.

In humans and animal models there is evidence that prenatal nicotine exposure causes lasting deficits in cognitive performance. The current study examined the cognitive effects of prenatal exposure of rats to 2 mg/kg/day of nicotine. This dose did not cause significant deficits in maternal weight gain, offspring litter size, or pup weight. The control offspring showed the normal ontogeny of spontaneous alternation from near chance (50%) performance to 80%-85% alternation. In contrast, the nicotine-exposed rats had the opposite progression with abnormally high alternation on days 22-30 and abnormally low alternation on days 35-52. Acquisition of choice accuracy performance on the radial-arm maze (RAM) was not altered in a major way by nicotine exposure. Minor nicotine-induced changes in choice accuracy were seen during the initial trials of acquisition. The nicotine exposed female offspring had a significantly longer response duration. Prenatal nicotine exposure did significantly alter the effects of subsequent drug challenges on choice accuracy performance. The nicotine-exposed male offspring were significantly more responsive to the amnestic effects of the nicotinic antagonist mecamylamine. In a subsequent challenge, the effects of the beta-adrenergic antagonist propranolol were examined. A significant dose-related impairment in choice accuracy was seen in the control rats. In contrast, the nicotine-exposed rats did not show any significant response to propranolol. This decreased responsiveness to adrenergic challenge parallels the reduction in adrenergic response to nicotine challenge we previously found in littermates to the rats of the current study. Prenatal nicotine exposure causes subtle alterations in cognitive performance that can be magnified by challenges of nicotinic and adrenergic systems.

Animals↗

Rapid neurobehavioral analysis of Pfiesteria piscicida effects in juvenile and adult rats.

The estuarine dinoflagellate Pfiesteria piscicida is known to kill fish and has been associated with neurocognitive deficits in humans. We have developed a rat model to demonstrate that exposure to Pfiesteria causes significant learning impairments. This has been repeatedly seen as a choice accuracy impairment during radial-arm maze learning. Pfiesteria-induced effects were also seen in a locomotor activity test in the figure-8 apparatus. The current studies used the short-term radial-arm maze acquisition, the figure-8 activity test, and the functional observational battery (FOB) to assess Pfiesteria-induced neurobehavioral effects in adult and juvenile rats. In study 1, the neurobehavioral potency of three different Pfiesteria cultures (Pf 113, Pf 728, and Pf Vandermere) was assessed. Ninety-six (12 per group) adult female Sprague-Dawley rats were injected subcutaneously with a single dose of Pfiesteria taken from aquarium-cultured Pfiesteria (35,600 or 106,800 Pfiesteria cells per kilogram of rat body weight). One control group (N = 12) was injected with saline and one (N = 12) with aquarium water not containing Pfiesteria. All three of the Pfiesteria samples (p < 0.05) impaired choice accuracy over the first six sessions of training. At the time of the radial-arm maze choice accuracy impairment, no overt Pfiesteria-related effects were seen using an FOB, indicating that the Pfiesteria-induced choice accuracy deficit was not due to generalized debilitation. In the figure-8 apparatus, Pfiesteria treatment caused a significant decrease in mean locomotor activity. In study 2, the neurobehavioral effects of the Pf 728 sample type were assessed in juvenile rats. Twenty-four day-old male and female rats were injected with 35,600 or 106,800 Pf-728 Pfiesteria cells per kilogram of rat body weight. As with adult females, the juvenile rats showed a significant impairment in radial-arm maze choice accuracy. No changes in locomotor activity or the FOB were detected in the juvenile rats. Furthermore, there were no differences between male and female rats in the Pfiesteria-induced choice accuracy impairment. Pfiesteria effects on choice accuracy in the radial-arm maze in rats constitute a critical component of the model of Pfiesteria toxicity, because the hallmark of Pfiesteria toxicity in humans is cognitive dysfunction. Our finding that analysis of the first six sessions of radial-arm maze testing is sufficient for determining the effect means that this test will be useful as a rapid screen for identifying the critical neurotoxin(s) of Pfiesteria in future studies.

Aging↗