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Biomedical subjects

A W James

Publications and source records attributed to A W James.

7 recordsLinked to original sources

Asthma.

Asthma is an important and increasingly prevalent respiratory disease. Its proper diagnosis and treatment lie at the heart of improving asthma outcome. Unfortunately, asthma has many faces and is affected by many variables, many of them difficult to control. Like many chronic illnesses, asthma tends to affect the poor and less advantaged individuals in society. Heightened awareness among patients and physicians of the serious nature of the disease is needed to reduce the morbidity and mortality of asthma. Treatment clearly requires a multifaceted approach, including behavioral, environmental, social, and medical interventions, in which the National Asthma Education and Prevention Program guidelines provide a logical, step-wise, and effective approach.

Asthma↗

Quantitation of three-month intraindividual variability and influence of sex and menstrual cycle phase on CYP1A2, N-acetyltransferase-2, and xanthine oxidase activity determined with caffeine phenotyping.

OBJECTIVE: To evaluate intraindividual variability and the effects of sex and menstrual cycle phase on the activity of cytochrome P450 1A2 (CYP1A2), N-acetyltransferase 2 (NAT2), and xanthine oxidase. METHODS: Ten white men were given 2 mg/kg caffeine orally every 14 days for 3 months. The same dosage of caffeine was given to 10 premenopausal white women during the midfollicular and midluteal phases of three complete menstrual cycles. Phenotype was determined with urinary caffeine metabolite ratios. RESULTS: For CYP1A2, mean metabolic ratio (+/- SD) was 5.97 +/- 2.78 during the midfollicular phase and 5.32 +/- 1.99 during the midluteal phase (p = 0.2). For extensive and poor metabolizer of NAT2. Mean midfollicular phase metabolite ratios were 0.71 +/- 0.060 and 0.37 +/- 0.030, and mean midluteal phase metabolite ratios were 0.69 +/- 0.076 and 0.39 +/- 0.053 (p = 0.9). For xanthine oxidase, mean midfollicular phase metabolite ratio was 0.63 +/- 0.06 and mean midluteal phase metabolite ratio was 0.63 +/- 0.05 (p = 0.3). Among the men, mean CYP1A2, NAT2 rapid and slow acetylator, and xanthine oxidase indices were 9.42 +/- 10.18, 0.66 +/- 0.021, 0.31 +/- 0.056, and 0.64 +/- 0.03. There were no differences in metabolite ratios between men and women for CYP1A2, NAT2 extensive metabolizers, or xanthine oxidase. A statistically significant sex difference was found for poor metabolizers of NAT2 (p < 0.05). Median coefficients of variation for CYP1A2, NAT2 extensive and poor metabolizers, and xanthine oxidase ratios were 16.8% (range, 4.5% to 49.3%), 2.9% (range, 2.2% to 4.7%), 13.4% (range, 7.5% to 27.2%), and 4.5% (range, 2.3% to 13.0%). CONCLUSION: Stratification by menstrual cycle phase or sex need not be performed for pharmacokinetic or clinical investigations of substrates for CYP1A2, NAT2, or xanthine oxidase in which the subject are adults.

Adult↗

Actinomycosis of the colon.

A 44-year-old woman with severe pain in the right upper quadrant, simulating acute cholecystitis, was found to have a large tumour in the transverse colon. Cultures from the mass grew Actinomyces israelii. Actinomycosis may often be missed; involvement of the large bowel is not confined to the appendiceal and cecal areas and may simulate other intra-abdominal conditions.

Actinomyces↗

Unidirectional replication of a minority of polyoma virus and SV40 DNAs.

Poyoma DNA replication is initiated predominatly at a site which is 29% from the EcoRI cleavage site. Molecules replicating from this site, after digestion with EcoRI appear as linear structures with a double stranded loop centered at the origin of replication. These forms constitute 90% of all replicating intermediates. Approx. 10% of the replicating intermediates of polyoma and SVP40 DNAs occur as Y-forms after treatment with EcoRI. These structures have probably resulted from unidirectional replication initiated at an additional origin of DNA replication which is located near the EcoRI cleavage site on the genomes of these viruses.

Animals↗