Helicobacter Pylori Research Group, Biotechnology Research Center, Pasteur Institute of Iran, Tehran, Iran, 13164.
Curr Microbiol. 2010 Apr;60(4):254-62. doi: 10.1007/s00284-009-9534-4. Epub 2009 Dec 1.
Helicobacter pylori, a microaerophilic fastidious bacterium, has been cultured on various plating and broth media since its discovery. Although the agar media can be sufficient for the identification, typing, and antibiotic resistance studies, no secretory antigen of H. pylori can be evaluated in such media. Thus, satisfactory growth of H. pylori in liquid culture which is needed for analysis of secretory proteins without the presence of interfering agents is in demand. We assessed the impact of beta-cyclodextrin, Fetal Bovine Serum (FBS), and charcoal as supplements for H. pylori growth. Furthermore, we aimed to identify the most favorable supplement that supports the secretion of the dominant secretory protein, vacuolating cytotoxin (VacA). Five clinical strains were cultured on broth media and the growth, viability, morphology, and protein content of each strain were determined. Our results revealed that beta-cyclodextrin supports the growth rate, viability, and cell lysate protein content to the extent similar to FBS. Application of beta-cyclodextrin is found to postpone spiral to coccoid conversion up to 72 h of incubation. Although FBS supports a higher VacA protein content, presence of interfering macromolecules in FBS questions its utility particularly for purposes of studying extra cellular proteins such as VacA. This study recommends further application of beta-cyclodextrin as a culture supplement with the potential capacity in neutralizing toxic compounds and flourishing the secretion of H. pylori proteins without addition of interfering proteins.
幽门螺杆菌是一种微需氧的苛养菌,自发现以来已在各种平板和肉汤培养基上进行培养。虽然琼脂培养基足以用于鉴定、分型和抗生素耐药性研究,但无法在这些培养基中评估幽门螺杆菌的分泌抗原。因此,需要在液体培养基中进行满意的幽门螺杆菌生长,以便在没有干扰物的情况下分析分泌蛋白。我们评估了β-环糊精、胎牛血清(FBS)和活性炭作为幽门螺杆菌生长补充剂的影响。此外,我们旨在确定最有利于支持主要分泌蛋白空泡细胞毒素(VacA)分泌的补充剂。将五种临床菌株在肉汤培养基上培养,并确定每种菌株的生长、活力、形态和蛋白含量。我们的结果表明,β-环糊精支持生长速率、活力和细胞裂解物蛋白含量,与 FBS 相似。应用β-环糊精可将螺旋体向球菌的转化延迟长达 72 小时的孵育。虽然 FBS 支持更高的 VacA 蛋白含量,但 FBS 中存在干扰大分子质疑其用于研究细胞外蛋白(如 VacA)的用途。本研究建议进一步应用β-环糊精作为培养补充剂,具有中和有毒化合物的潜力,并促进幽门螺杆菌蛋白的分泌,而无需添加干扰蛋白。