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P G QUIE

Publications and source records attributed to P G QUIE.

14 recordsLinked to original sources

ANTISERUM TO LEUCOCYTE LYSOSOMES. ITS CYTOTOXIC, GRANULOLYTIC, AND HEMOLYTIC ACTIVITIES.

Antisera to rabbit polymorph granules and to rabbit erythrocytes have been prepared in guinea pigs. Both antigranule and antierythrocyte sera are hemolytic and both exhibit striking cytotoxicity on leucocytes. The sequence of toxic events, as observed by phase contrast cinemicrophotography and electron microscopy, consists of explosive granule lysis, cell swelling, cytoplasmic liquifaction, and nuclear fusion. Other rabbit cells are also susceptible to these cytotoxic effects, but cells, including polymorphs, of other mammals are not. Cytotoxic action of the antisera requires, in addition to the antibody, heat-labile serum factors and divalent cations, suggesting that the action is a combined one of antibody and complement. The morphologic observations have been supported by biochemical studies demonstrating release into the medium of granule-bound hydrolases following exposure of polymorphs or of isolated granules to the antigranule or antierythrocyte sera. Granulolytic activity of the antisera can be reduced or removed by absorption with either rabbit leucocyte granules or with erythrocytes, indicating that leucocyte granules and erythrocytes have an identical or similar membrane constituent. The observations lend support to the notion that lysosomal hydrolases may exert autolytic effects in some situations.

Animals↗

Staphylococcal Muller phenomenon: relationship to the plasminogen-plasmin system.

Quie, Paul G. (University of Minnesota, Minneapolis) and Lewis W. Wannamaker. Staphylococcal Muller phenomenon: relationship to the plasminogen-plasmin system. J. Bacteriol. 82:770-783. 1961.-The staphylococcal factor that produces particulate proteolysis (Muller phenomenon) in whole blood or hemoglobinserum agar plates has been obtained in supernatants from broth cultures. This has facilitated study of the phenomenon in a sterile system. The bacterial factor has been partially separated from other extracellular products by starch zone electrophoresis. Staphylococcal Muller factor and staphylokinase are similar in heat stability, in electrophoretic mobility, and in activation of a serum proteolytic system. A relationship of the Muller phenomenon to the plasminogen-plasmin system is also suggested by the observation that purified plasminogen may be substituted for serum in the sterile system, and by the finding that inhibitors of the plasminogen-plasmin system also inhibit the Muller phenomenon. Although growing colonies of streptococci fail to exhibit the Muller phenomenon, particulate proteolysis can be demonstrated with streptokinase, using a double-diffusion technique. A similar phenomenon can be produced with urine, suggesting that urokinase may substitute for the bacterial activators in the Muller phenomenon. Although evidence from other sources suggests that the serum Muller factor is particulate, the serum factor appears to be freely diffusible in agar and is not readily sedimented in the ultracentrifuge.

Fibrinolysin↗