Ibsen P, Schou C, Au-Jensen M, Heron I
Vaccine Department, State Serum Institute, Copenhagen S, Denmark.
J Biol Stand. 1989 Oct;17(4):321-30. doi: 10.1016/s0092-1157(89)80003-4.
The effect of adding 500 micrograms of (2,6-0-dimethyl) beta-cyclodextrin (Me-beta-CD) per ml of Stainer-Scholte (SS) medium in two-day shaker flask cultures of Bordetella pertussis on the production of lipopolysaccharide (LPS) was investigated. The amount of LPS per 10(9) cells found in the supernatants of these cultures was either somewhat reduced or unaffected by comparison with the amounts in cultures grown in SS-medium alone. In addition, the time course of LPS release from cultures of B. pertussis strain 3843 cells during a 96-h growth period in normal and Me-beta-CD-enriched SS medium is described. By using the enriched medium bacterial growth, the production of filamentous haemagglutinin (FHA) and of pertussis toxin (Pt) and the levels of haemagglutination and lymphocytosis-promoting activity were enhanced to various degrees. Measurements made on sedimented whole and on sonicated B. pertussis cells grown in the two media showed no differences in LPS content. The reasons for the reduced/unaffected LPS production are discussed. It has been suggested that an interaction between hydrophobic cavities of the Me-beta-CD molecules and the 'lipid A' part of LPS reduces the reactivity of LPS in the Limulus Amoebocyte Lysate (LAL) assay. This possibility, however, was rejected as the reactivity of Me-beta-CD-spiked purified B. pertussis strain 3803 LPS, compared with unspiked samples, remained unchanged.
研究了在百日咳博德特氏菌的两日摇瓶培养中,每毫升施泰纳-肖尔特(SS)培养基添加500微克(2,6-0-二甲基)β-环糊精(Me-β-CD)对脂多糖(LPS)产生的影响。与仅在SS培养基中生长的培养物相比,这些培养物上清液中每10⁹个细胞的LPS量有所减少或未受影响。此外,还描述了百日咳博德特氏菌3843株细胞在正常和富含Me-β-CD的SS培养基中96小时生长期间LPS释放的时间进程。使用富含Me-β-CD的培养基,细菌生长、丝状血凝素(FHA)和百日咳毒素(Pt)的产生以及血凝和促淋巴细胞增多活性的水平均有不同程度的提高。对在两种培养基中生长的沉淀完整细胞和超声处理的百日咳博德特氏菌细胞进行的测量显示,LPS含量没有差异。讨论了LPS产量降低/未受影响的原因。有人提出,Me-β-CD分子的疏水腔与LPS的“脂质A”部分之间的相互作用降低了LPS在鲎试剂(LAL)测定中的反应性。然而,这种可能性被排除,因为与未添加Me-β-CD的样品相比,添加了Me-β-CD的纯化百日咳博德特氏菌3803株LPS的反应性保持不变。