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Biomedical subjects

V Hurst

Publications and source records attributed to V Hurst.

12 recordsLinked to original sources

Pregnancy outcome following exposure to permethrin and use of teratogen information.

NIX is a 1% permethrin creme rinse used for the treatment of head lice. There are no studies regarding human exposure during pregnancy. The primary objective of this study was to examine the safety of permethrin exposure during pregnancy. The secondary objective was to examine how teratogen information is perceived and used by women who requested information regarding this product. Women who had called the Motherisk and MotherSafe Programs to inquire about exposure to permethrin during pregnancy were followed-up to ascertain the outcome of their pregnancies. These women were compared with another group who had not been exposed to any known teratogenic drugs. Women who decided not to use permethrin were administered an additional questionnaire. We enrolled 147 women and completed outcomes on 113 pregnancies of women who had used permethrin some time during their pregnancy. There were 106 live births, six spontaneous abortions, one therapeutic abortion, and one major malformation in the women who used permethrin in the first trimester. The mean birthweight was 3540 +/- 492 g and the mean gestational age was 40 +/- 1 weeks. There were no statistically significant differences between the exposed and comparison groups in any of the pregnancy outcomes. Of the 34 women who chose not to use permethrin and who completed the additional questionnaire, 18 (52%) did not use permethrin because they did not feel the information was sufficiently reassuring. The results of this study suggest that the use of permethrin products during pregnancy appears to be relatively safe because there was no increase in the rates of major malformations. We also found that some women will not use a product during pregnancy unless they can receive a 100% guarantee that it will not harm their baby.

Abnormalities, Drug-Induced↗

Release of ED1 fibronectin from matrix of perfused lungs after vascular injury is independent of protein synthesis.

Fibronectin (Fn) is an adhesive protein found in the plasma and extracellular tissue matrix. Locally synthesized tissue or cellular Fn (cFn) has extra domains (ED1 and ED2) not present in liver synthesized plasma Fn (pFn). In the lung, Fn is found in the endothelial and epithelial basement membranes, as well as in the interstitial matrix. Utilizing murine monoclonal antibodies to ED1 of cFn, we studied the release of total Fn as well as ED1-Fn into the plasma-free perfusate of the isolated perfused rabbit lung in relation to changes in lung weight due to fluid accumulation after oxidant (H2O2) challenge. Both parameters were also studied after addition of cycloheximide (20 micrograms/ml perfusate) to the perfusion medium to inhibit lung protein synthesis. After continuous H2O2 challenge (11 nmol.ml buffer-1.min-1), there was a 2.25 +/- 0.62 g increase in lung weight over 60 min. Measurement of 125I-labeled albumin clearance at 20 min after the start of H2O2 infusion confirmed an increase in lung endothelial protein permeability after H2O2 treatment. Fn antigen was released into the perfusate as early as 15 min after oxidant challenge. By 60 min, total perfusate Fn increased in H2O2-treated lungs (n = 6) to 2.10 +/- 0.48 micrograms/ml compared with only 0.35 +/- 0.09 micrograms/ml in normal control lungs (n = 5). Sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE) of nonreduced samples revealed that the Fn released consisted of primarily intact (440 kDa) Fn as well as Fn fragments. A rapid release of ED1-Fn paralleled the increased release of total Fn.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Inhibition of corrosion during autoclave sterilization of carbon steel dental instruments.

Comparisons were made of several dip-applied corrosion inhibitors for protection of carbon steel dental instruments during autoclaving. Although none were totally effective, several provided significant corrosion inhibition. Sodium nitrite and one proprietary inhibitor were about equally effective and notably superior to the other inhibitors investigated. Because sodium nitrite is a food preservative that is relatively harmless when ingested in small quantities, whereas commercial inhibitors are of proprietary composition and unspecified toxicity, we prefer to use sodium nitrite for corrosion inhibition during autoclaving. Sodium nitritie is readily available from chemical suppliers and is generally much less expensive than most commercial inhibitors. Although the autoclave used in this investigation is typical of many used in clinical situations, minor variations in design, steam impurities, and other unknown factors might effect the results. Further research is needed to determine the corrosive effects of impurities in the steam supply, residual detergents, method of postautoclave drying, steam supply deoxygenation, pH, and possibly the use of oxygen scavengers within the autoclave.

Alloys↗