Cox Brandi L, Schiffer Holly, Dagget Gregory, Beierschmitt Amy, Sithole Fortune, Lee Elise, Revan Floyd, Halliday-Simmonds Iona, Beeler-Marfisi Janet, Palmour Roberta, Soto Esteban
Department of Biomedical Sciences, Ross University School of Veterinary Medicine, Saint Kitts and Nevis.
Department of Biomedical Sciences, Ross University School of Veterinary Medicine, Saint Kitts and Nevis; Behavioural Science Foundation, Estridge Estate, Saint Kitts and Nevis.
Vet Microbiol. 2015 Mar 23;176(1-2):134-42. doi: 10.1016/j.vetmic.2015.01.001. Epub 2015 Jan 13.
In recent years, an emergent Klebsiella pneumoniae hypermucoviscosity (HMV) phenotype has been associated with increased invasiveness and pathogenicity in primates. In this project, bacteria recovered from infected African green monkeys (AGM) (Chlorocebus aethiops sabaeus) were screened for HMV phenotype, and were compared to non-HMV isolates in in vitro, serum, and oxidative-mediated killing assays. Complement-mediated killing was assessed utilizing freshly collected serum from healthy AGM. Oxidative-mediated killing was investigated utilizing sodium hypochlorite and hydrogen peroxide. Compared to non-HMV isolates, HMV isolates were more resistant to serum-mediated and oxidative killing (p<0.05). Phagocytosis resistance was evaluated using AGM peripheral blood monocytes (PBMC), and results indicated that non-HMV isolates associated with the AGM PBMC to a greater extent than HMV isolates (p<0.001). Measurement of lactate dehydrogenase release showed that HMV isolates were more cytotoxic to AGM PBMC than non-HMV isolates (p<0.001). Thus, the hypermucoid phenotype appears to be an important virulence factor that promotes evasion of innate immune defenses.
近年来,一种新出现的肺炎克雷伯菌高黏液性(HMV)表型与灵长类动物侵袭性和致病性增加有关。在本项目中,对从感染的非洲绿猴(AGM)(埃塞俄比亚绿猴亚种)中分离出的细菌进行HMV表型筛选,并在体外、血清和氧化介导的杀伤试验中与非HMV分离株进行比较。利用从健康AGM新鲜采集的血清评估补体介导的杀伤作用。利用次氯酸钠和过氧化氢研究氧化介导的杀伤作用。与非HMV分离株相比,HMV分离株对血清介导的杀伤和氧化杀伤更具抗性(p<0.05)。使用AGM外周血单核细胞(PBMC)评估吞噬抗性,结果表明非HMV分离株与AGM PBMC的结合程度大于HMV分离株(p<0.001)。乳酸脱氢酶释放量的测量表明,HMV分离株对AGM PBMC的细胞毒性大于非HMV分离株(p<0.001)。因此,高黏液样表型似乎是促进逃避固有免疫防御的重要毒力因子。