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BACTERIOSTATIC EFFECT OF HUMAN SERA ON GROUP A STREPTOCOCCI : III. INTERFERENCE WITH BACTERIOSTATIC ACTIVITY BY
1Hospital of The Rockefeller Institute for Medical Research.
Abstract:
1. Type-specific M extracts and group-specific C carbohydrate of group A streptococci inhibited bacteriostasis of these microorganisms in the presence of normal whole blood and of sera from patients convalescent from streptococcal infections. The inhibition was not specific with respect to streptococcal types and depended merely on the formation of precipitates in the system. The extracts had no antagonistic action in themselves. 2. Preformed precipitates derived from the interaction of an antigen and its homologous antibody or from finely divided coagulated particles of human plasma or ascitic fluid also interfered with the bacteriostasis. The supernatant fluid in which one of these precipitates was formed did not inhibit bacteriostatic activity; therefore, it seems that other possible products of the antigen-antibody reaction were not inhibitory. The relative size of the precipitate particles was a conditioning factor since small particles of one precipitate inhibited bacteriostasis, but large ones of the same precipitate failed to do so. 3. Stained films of blood cells treated with antigen-antibody mixtures which formed a precipitate revealed large cytoplasmic vacuoles containing precipitates in the polymorphonuclear leukocytes and monocytes; such engorged cells subsequently failed to phagocytize streptococci in homologous serum. Blood cells treated in the same manner, except that the antigen-antibody mixtures formed no precipitate, contained no vacuoles, and these cells were able to phagocytize the streptococci. 4. Leukocytes studied in the living state in the presence of colored precipitate and streptococci sensitized by convalescent human serum showed unselective phagocytosis of both precipitate and bacteria. The capacity of these leukocytes to ingest material however was limited. 5. As a result of non-selective saturation of their phagocytic capacity in the bacteriostatic systems containing both streptococci and precipitate, the limited number of leukocytes phagocytized only a fraction of the streptococci; consequently the remainder were able to multiply.
Insights
Precipitates formed from streptococcal extracts or antigen-antibody reactions interfere with normal blood
Area of Science:
- Immunology
- Microbiology
- Cell Biology
Background:
- Group A streptococci possess type-specific M extracts and group-specific C carbohydrates.
- Bacteriostasis in normal blood and convalescent sera normally inhibits streptococcal growth.
- Antigen-antibody reactions are crucial in immune responses.
Purpose of the Study:
- To investigate the mechanism by which streptococcal components and antigen-antibody precipitates affect bacteriostasis.
- To determine if precipitates interfere with the phagocytic activity of leukocytes.
- To elucidate the role of precipitate particle size in inhibiting bacteriostasis.
Main Methods:
- Incubation of group A streptococci with type-specific M extracts and group-specific C carbohydrates in normal blood and convalescent sera.
- Formation of precipitates using antigen-antibody mixtures, human plasma, or ascitic fluid.
- Microscopic examination of blood cells (leukocytes) treated with precipitates.
- Observation of leukocyte phagocytosis in the presence of precipitates and sensitized streptococci.
Main Results:
- Streptococcal extracts and preformed precipitates inhibited bacteriostasis, independent of specificity, but dependent on precipitate formation.
- The size of precipitate particles influenced the inhibition of bacteriostasis; smaller particles were more inhibitory.
- Leukocytes exposed to precipitates developed cytoplasmic vacuoles and showed reduced phagocytic capacity for streptococci.
- Leukocytes exhibited non-selective phagocytosis of both precipitates and bacteria, leading to saturation and reduced bacterial clearance.
Conclusions:
- Precipitate formation, rather than specific molecular interactions, is key to inhibiting streptococcal bacteriostasis.
- Interference with leukocyte phagocytosis by precipitates is a significant mechanism of immune evasion by streptococci.
- Particle size and saturation of phagocytic capacity play critical roles in the interaction between leukocytes, precipitates, and bacteria.
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