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Biomedical subjects

W Stiteler

Publications and source records attributed to W Stiteler.

3 recordsLinked to original sources

The identification and testing of interaction patterns.

This paper presents a method for identifying and assessing the significance of interaction patterns among various chemicals and chemical classes of importance to regulatory toxicologists. To this end, efforts were made to assemble and evaluate experimental data on toxicologically significant interactions, to use this information to characterize the consistency of toxicological interactions, and to define classes of compounds that display similar toxicological interactions. The motivation for this effort is to be able to propose hypotheses, which can be validated by experimentation, on how 2 or more chemicals will interact.

Databases, Factual↗

Development of a predictive model for biodegradability based on BIODEG, the evaluated biodegradation data base.

A file of evaluated biodegradation data was used to develop a model for predicting aerobic biodegradability from chemical structure alone. Chemicals were initially divided into three groups: (i) chemicals that degrade rapidly under most environmental conditions without requiring acclimation; (ii) chemicals that degrade slowly or not at all; and (iii) chemicals that are biodegradable, but only after an acclimation period. Chemicals in the first two groups were then used to develop a model for classifying chemicals as rapidly or not rapidly biodegradable. The model is based on linear regression against 34 preselected substructures, and correctly classifies 92% (211 or 229) of the chemicals in the final training set.

Aerobiosis↗

Migratory patterns of different indium-111 labeled leukocyte populations (chiefly lymphocytes) from control and thymectomized rats.

The blood clearance and 24-hr organ distribution of five lymphocyte-rich suspensions harvested from different source organs were compared in the Wistar rat, after labeling with [111In]tropolone and intravenous injection. Peripheral blood lymphocytes (chiefly T cells) had the highest levels in the blood and lymph nodes, a relatively higher level in intestine and a lower level in the spleen than other suspensions. Thymocytes cleared promptly from the blood, accumulated markedly in the liver, moderately in the spleen, but very poorly in other organs, including the thymus. Splenic cells (rich in B cells) sequestered predominantly in the spleen and liver. Splenic cells nonadherent to nylon wool (T-cell enriched) had a relatively high uptake in lymph nodes and marrow. Splenic cells from thymectomized rats (NK cell enriched) localized predominantly in the liver and spleen, and poorly in lymph nodes. We conclude that the source organ for harvesting rat lymphocytes is an important determinant in their localization, as well as other factors such as the techniques of isolation, the toxicity and stability of the radioactive label and the cell radiation dose from internalized radioactivity.

Animals↗