Department of Microbiology and Immunology, Faculty of Pharmacy, October University for Modern Sciences and Arts (MSA), Giza, Egypt.
Department of Microbiology and Immunology, Faculty of Pharmacy, Ahram Canadian University (ACU), Giza, Egypt.
J Cell Mol Med. 2020 Mar;24(5):2791-2801. doi: 10.1111/jcmm.15031. Epub 2020 Feb 7.
Pathogenic bacteria can enter into a viable but non-culturable (VBNC) state under unfavourable conditions. Proteus mirabilis is responsible for dire clinical consequences including septicaemia, urinary tract infections and pneumonia, but is not a species previously known to enter VBNC state. We suggested that stress-induced P. mirabilis can enter a VBNC state in which it retains virulence. P. mirabilis isolates were incubated in extreme osmotic pressure, starvation, low temperature and low pH to induce a VBNC state. Resuscitation was induced by temperature upshift and inoculation in tryptone soy broth with Tween 20 and brain heart infusion broth. Cellular ultrastructure and gene expression were examined using transmission electron microscopy (TEM) and quantitative real-time polymerase chain reaction (qPCR), respectively. High osmotic pressure and low acidity caused rapid entry into VBNC state. Temperature upshift caused the highest percentage of resuscitation (93%) under different induction conditions. In the VBNC state, cells showed aberrant and dwarf morphology, virulence genes and stress response genes (envZ and rpoS) were expressed (levels varied depending on strain and inducing factors). This is the first-time characterization of VBNC P. mirabilis. The ability of P. mirabilis pathogenic strains to enter a stress-induced VBNC state can be a serious public health threat.
在不利条件下,致病菌可进入存活但非可培养状态(VBNC)。奇异变形杆菌可引起严重的临床后果,包括败血症、尿路感染和肺炎,但以前并未被认为可进入 VBNC 状态。我们推测,应激诱导的奇异变形杆菌可进入保持毒力的 VBNC 状态。将奇异变形杆菌分离株在极端渗透压、饥饿、低温和低 pH 下孵育以诱导 VBNC 状态。通过温度升高和在含吐温 20 的胰蛋白胨大豆肉汤和脑心浸液肉汤中的接种来诱导复苏。使用透射电子显微镜(TEM)和实时定量聚合酶链反应(qPCR)分别检查细胞超微结构和基因表达。高渗透压和低酸度可迅速进入 VBNC 状态。在不同诱导条件下,温度升高导致复苏的百分比最高(93%)。在 VBNC 状态下,细胞表现出异常和矮小的形态,毒力基因和应激反应基因(envZ 和 rpoS)表达(水平取决于菌株和诱导因子而有所不同)。这是首次对 VBNC 奇异变形杆菌进行的特征描述。致病性奇异变形杆菌菌株进入应激诱导的 VBNC 状态的能力可能是一个严重的公共卫生威胁。