Palusiak Agata
Department of General Microbiology, Institute of Microbiology, Biotechnology and Immunology, University of Łódź, Banacha 12/16, 90-237, Lodz, Poland.
Med Microbiol Immunol. 2016 Dec;205(6):615-624. doi: 10.1007/s00430-016-0468-8. Epub 2016 Jul 28.
The frequency of P. penneri isolation from hospital patients, mostly from urine and wounds, keeps on growing, and numerous isolates are multi-drug resistant. P. penneri rods produce lipopolysaccharide (LPS), which may lead to the septic shock. Until now, O-specific polysaccharide has been the best structurally and serologically characterized region of P. penneri LPS. It is worth having an insight into the serological specificity of both poly- and oligosaccharide parts of P. penneri LPS. The P. penneri core region is less structurally diverse than OPS, but still, among other enterobacterial LPS core regions, it is characterized by structural variability. In the present study, the serological reactivity of 25 P. penneri LPS core regions was analyzed by ELISA, passive immunohemolysis and Western blot technique using five polyclonal P. penneri antisera after or without their adsorption with the respective LPSs. The results allowed the assignment of the tested strains to five new core serotypes, which together with published serological studies led to the creation of the first serotyping scheme based on LPS core reactivities of 35 P. penneri and three P. mirabilis strains. Together with the O types scheme, it will facilitate assigning Proteus LPSs of clinical isolates into appropriate O and R serotypes.
从医院患者中分离出彭氏变形杆菌的频率持续上升,这些患者大多来自尿液和伤口,而且许多分离株具有多重耐药性。彭氏变形杆菌杆菌产生脂多糖(LPS),这可能导致感染性休克。到目前为止,O-特异性多糖是彭氏变形杆菌LPS在结构和血清学上特征最明确的区域。深入了解彭氏变形杆菌LPS的多糖和寡糖部分的血清学特异性很有必要。彭氏变形杆菌的核心区域在结构上的多样性不如OPS,但在其他肠杆菌LPS核心区域中,它仍以结构多变性为特征。在本研究中,使用5种彭氏变形杆菌多克隆抗血清,在吸附或未吸附各自的LPS后,通过ELISA、被动免疫溶血和蛋白质印迹技术分析了25个彭氏变形杆菌LPS核心区域的血清学反应性。结果将测试菌株分为5种新的核心血清型,结合已发表的血清学研究,首次基于35株彭氏变形杆菌和3株奇异变形杆菌菌株的LPS核心反应性制定了血清分型方案。连同O型方案一起,这将有助于将临床分离株的变形杆菌LPS归入适当的O和R血清型。