Neely Alice N, Holder Ian A, Wiener-Kronish Jeanine P, Sawa Teiji
Shriners Hospitals for Children, Cincinnati, OH, USA; University of Cincinnati College of Medicine, Cincinnati, OH, USA.
Burns. 2005 Mar;31(2):153-8. doi: 10.1016/j.burns.2004.09.002.
The type III secretion system consists of secreted exoproducts and structural components, such as PcrV, and this system plays an important role in the virulence of Pseudomonas aeruginosa in burned hosts. The purpose of this study was to determine if passive anti-PcrV treatment would protect burned mice from fatal P. aeruginosa challenge, and to determine the type III exoproduct phenotype of the P. aeruginosa used as challenge strains. Antiserum was raised in rabbits. Mice were given a third degree burn, challenged with a lethal dose of P. aeruginosa, and treated with either anti-PcrV or control immunoglobulin intraperitoneally. Protection against three different pseudomonads was tested. Genotyping by PCR and phenotyping by immunoblots showed the P. aeruginosa strains to all be of the invasive type III phenotype: ExoS+ and/or ExoT+, ExoU-, ExoY+. Against all strains, the anti-PcrV treatment yielded significantly better survival (p<0.05) than the control immunoglobulin treatment. Duration of significant protection was improved by giving a second injection of PcrV antisera at 24h postburn. Hence, passive anti-PcrV immunization could protect burned mice against fatal challenge with P. aeruginosa of an invasive type III phenotype. This immunotherapy might be explored further as possible treatment for highly antibiotic resistant P. aeruginosa infections in burned hosts.
III型分泌系统由分泌性外产物和结构成分(如PcrV)组成,该系统在铜绿假单胞菌对烧伤宿主的致病过程中起重要作用。本研究的目的是确定被动抗PcrV治疗是否能保护烧伤小鼠免受致命的铜绿假单胞菌攻击,并确定用作攻击菌株的铜绿假单胞菌的III型外产物表型。在兔体内制备抗血清。小鼠接受三度烧伤,用致死剂量的铜绿假单胞菌攻击,然后腹腔注射抗PcrV或对照免疫球蛋白进行治疗。测试了对三种不同假单胞菌的保护作用。通过PCR进行基因分型和通过免疫印迹进行表型分析表明,铜绿假单胞菌菌株均为侵袭性III型表型:ExoS+和/或ExoT+、ExoU-、ExoY+。对于所有菌株,抗PcrV治疗的存活率显著高于对照免疫球蛋白治疗(p<0.05)。在烧伤后24小时注射第二剂PcrV抗血清可延长显著保护的持续时间。因此,被动抗PcrV免疫可保护烧伤小鼠免受侵袭性III型表型铜绿假单胞菌的致命攻击。这种免疫疗法可能作为烧伤宿主中高度耐抗生素铜绿假单胞菌感染的可能治疗方法进一步探索。