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Inhibition of the Metabolism of Streptococci and Salmonella by Specific Antisera

机译:特异性抗血清对链球菌和沙门氏菌代谢的抑制作用

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Streptococcal and salmonella antisera inhibited carbohydrate metabolism for groups A, B, C, and D streptococci and group E salmonella, as measured by the formation of [14C]dioxide from [14C]glucose metabolism. For salmonella, the inhibition was type specific since group E salmonella were inhibited only by salmonella E antisera and not by anti-salmonella A or C1. For streptococci, quantitative differences were demonstrated, but major cross-reactivity was observed. At high concentrations, the antisera were bactericidal; at more dilute concentrations, for both salmonella and streptococci, carbohydrate metabolism was suppressed, but subculture on chocolate agar showed abundant growth. Cross-reacting antibodies could be absorbed by incubation with either antigen, e.g., streptococcal antisera versus heat-killed salmonella. The results suggest that the radiometric technique can be more sensitive than either capillary flocculation or visual detection of bacterial growth for detecting the inhibition of streptococci and salmonella by specific antibodies. The use of specific antisera may prove useful for bacterial species identification in an automated system for detection of bacterial growth.
机译:链球菌和沙门氏菌抗血清抑制了A,B,C和D组链球菌和E组沙门氏菌的碳水化合物代谢,这是由[14C]葡萄糖代谢中形成的[14C]二氧化物所测定的。对于沙门氏菌,抑制作用具有类型特异性,因为E组沙门氏菌仅受沙门氏菌E抗血清抑制,而不受沙门氏菌A或C1抑制。对于链球菌,定量存在差异,但观察到主要的交叉反应性。高浓度时,抗血清具有杀菌作用。在更稀的浓度下,沙门氏菌和链球菌均抑制了碳水化合物的代谢,但巧克力琼脂上的继代培养却显示出丰富的生长。交叉反应抗体可通过与任一种抗原(如链球菌抗血清与热灭活的沙门氏菌)一起孵育来吸收。结果表明,放射技术比毛细管絮凝或肉眼观察细菌生长对检测特异性抗体对链球菌和沙门氏菌的抑制作用更为灵敏。在检测细菌生长的自动化系统中,特定抗血清的使用可能对细菌种类鉴定很有用。

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