Shagam N L, Vaneeva N P, Tsvetkova N V, Kuznetsova E M, Klimenko T V
Zh Mikrobiol Epidemiol Immunobiol. 1983 Jul(7):70-3.
Polysaccharide-containing preparations obtained from pneumococci, serovars 3, 6B, 9N, V and 23F, were studied by the methods of immunodiffusion and rocket immunoelectrophoresis (RIE). The tests were carried out with the use of rabbit antisera to formol vaccines prepared from serovars 3, 6, 9, 10, 12, 14, 18, and 23. The highly purified preparations of each of these serovars were shown to possess strict serological specificity. The results of RIE and chemical analysis permitted the selection of the preparations which served as reference antigens for 5 above-mentioned pneumococcal serovars. The calibrating curves plotted with the use of the reference antigens helped calculate the relative quantitative content of specific polysaccharide in preparations of different batches. The antigenic preparations were shown to differ in the content of specific polysaccharide and the degree of their purification. The authors recommend that double immunodiffusion and RIE should be used in combination in the study of the serological specificity of pneumococcal polysaccharide-containing preparations. The latter may be used as a rapid method for the standardization of the above-mentioned pneumococcal preparations and their mixtures. To achieve greater objectivity in the analysis of the mixtures, the use of sectional RIE, a variant of RIE proposed by the authors, is probably expedient. The present work also shows the possibility of using RIE for evaluating the level of the accumulation of specific polysaccharide during the cultivation of pneumococci in a liquid culture medium.
采用免疫扩散法和火箭免疫电泳(RIE)法,对从肺炎球菌血清型3、6B、9N、V和23F中获得的含多糖制剂进行了研究。试验使用了兔抗血清,这些抗血清针对由血清型3、6、9、10、12、14、18和23制备的甲醛疫苗。结果表明,这些血清型中每一种的高度纯化制剂都具有严格的血清学特异性。火箭免疫电泳和化学分析的结果有助于挑选出可作为上述5种肺炎球菌血清型参考抗原的制剂。使用参考抗原绘制的校准曲线有助于计算不同批次制剂中特异性多糖的相对定量含量。抗原制剂在特异性多糖含量及其纯化程度方面存在差异。作者建议,在研究含肺炎球菌多糖制剂的血清学特异性时,应将双向免疫扩散和火箭免疫电泳结合使用。后者可作为一种快速方法,用于上述肺炎球菌制剂及其混合物的标准化。为了在混合物分析中获得更高的客观性,使用作者提出的火箭免疫电泳变体——分段火箭免疫电泳可能是合适的。本研究还表明,火箭免疫电泳可用于评估肺炎球菌在液体培养基中培养期间特异性多糖的积累水平。