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E B Messelt

Publications and source records attributed to E B Messelt.

5 recordsLinked to original sources

An in vivo model for the identification of serum proteins in the acquired subgingival pellicle.

The present study describes an in vivo model for the collection of the subgingival pellicle adsorbed to tooth surface, and the identification of some serum proteins within this layer. Clean dentin slabs were prepared from freshly extracted teeth, and then placed subgingivally for 2 h. The dentin slabs with their adsorbed pellicle layer were processed for transmission electron microscopy. Thin sections were made from the specimens, and treated with antisera to human immunoglobulins and albumin. The reactions were visualized by means of protein A-gold complex, which allowed semiquantification of the serum proteins. The indicator proteins were all identified within the pellicle material, but their amounts and distribution varied. Albumin demonstrated higher amounts in the pellicle layer than other proteins, followed by IgA, IgG, and IgM in descending order. The model described seems useful for studying the acquired subgingival pellicle under varying degrees of disease and health.

Adult

Lactate dehydrogenase (LDH) isoenzyme pattern in normal and inflamed human dental pulp.

Enzyme variants may serve an adaptive role in providing the correct vectorial properties for the metabolism of a tissue, or broadening its environmental tolerance range. To determine if the LDH isoenzyme pattern of human dental pulp changes during inflammation, supernatants from normal and inflamed dental pulp homogenates were separated by polyacrylamide gel electrophoresis. Inflamed pulps had a higher M subunit content and a markedly increased enzyme activity. These results might reflect adaptive changes at the enzyme level associated with a partial shift towards anaerobic metabolism during inflammation of the pulp.

Adult

[Enzymes].

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Dental Pulp

Differential effects of temperature on activity of LDH from seal and sheep skin.

The homeothermic seal possesses a heterothermic skin, while the skin of the sheep behaves as a truly homeothermic tissue. A new method for skin homogenization is described. The effect of temperature on the catalytic behaviour of seal and sheep skin LDH has been investigated by fluorimetric activity measurements, with results presented as Arrhenius plots. The seal skin enzyme had ten times higher activity at low temperatures as compared to the sheep skin. The mechanisms responsible for this different behaviour are discussed.

Animals