Hansen Eva H, Albertsen Line, Schäfer Thomas, Johansen Charlotte, Frisvad Jens C, Molin Søren, Gram Lone
Novozymes A/S, DK-2880 Bagsvaerd, Denmark.
Appl Environ Microbiol. 2003 Aug;69(8):4611-7. doi: 10.1128/AEM.69.8.4611-4617.2003.
A presumed antimicrobial enzyme system, the Curvularia haloperoxidase system, was examined with the aim of evaluating its potential as a sanitizing agent. In the presence of hydrogen peroxide, Curvularia haloperoxidase facilitates the oxidation of halides, such as chloride, bromide, and iodide, to antimicrobial compounds. The Curvularia haloperoxidase system caused several-log-unit reductions in counts of bacteria (Pseudomonas spp., Escherichia coli, Serratia marcescens, Aeromonas salmonicida, Shewanella putrefaciens, Staphylococcus epidermidis, and Listeria monocytogenes), yeasts (Candida sp. and Rhodotorula sp.), and filamentous fungi (Aspergillus niger, Aspergillus tubigensis, Aspergillus versicolor, Fusarium oxysporum, Penicillium chrysogenum, and Penicillium paxilli) cultured in suspension. Also, bacteria adhering to the surfaces of contact lenses were killed. The numbers of S. marcescens and S. epidermidis cells adhering to contact lenses were reduced from 4.0 and 4.9 log CFU to 1.2 and 2.7 log CFU, respectively, after treatment with the Curvularia haloperoxidase system. The killing effect of the Curvularia haloperoxidase system was rapid, and 10(6) CFU of E. coli cells/ml were eliminated within 10 min of treatment. Furthermore, the antimicrobial effect was short lived, causing no antibacterial effect against E. coli 10 min after the system was mixed. Bovine serum albumin (1%) and alginate (1%) inhibited the antimicrobial activity of the Curvularia haloperoxidase system, whereas glucose and Tween 20 did not affect its activity. In conclusion, the Curvularia haloperoxidase system is an effective sanitizing system and has the potential for a vast range of applications, for instance, for disinfection of contact lenses or medical devices.
一种假定的抗菌酶系统——弯孢霉卤过氧化物酶系统,为评估其作为消毒剂的潜力而进行了研究。在过氧化氢存在的情况下,弯孢霉卤过氧化物酶可促进卤化物(如氯化物、溴化物和碘化物)氧化为抗菌化合物。弯孢霉卤过氧化物酶系统使悬浮培养的细菌(假单胞菌属、大肠杆菌、粘质沙雷氏菌、杀鲑气单胞菌、腐败希瓦氏菌、表皮葡萄球菌和单核细胞增生李斯特菌)、酵母(念珠菌属和红酵母属)以及丝状真菌(黑曲霉、管囊曲霉、杂色曲霉、尖孢镰刀菌、产黄青霉和帕氏青霉)的数量减少了几个对数单位。此外,附着在隐形眼镜表面的细菌也被杀死。用弯孢霉卤过氧化物酶系统处理后,粘质沙雷氏菌和表皮葡萄球菌附着在隐形眼镜上的细胞数量分别从4.0和4.9 log CFU降至1.2和2.7 log CFU。弯孢霉卤过氧化物酶系统的杀菌效果迅速,在处理10分钟内可消除10(6) CFU/ml的大肠杆菌细胞。此外,抗菌效果持续时间短,系统混合10分钟后对大肠杆菌不再有抗菌作用。牛血清白蛋白(1%)和藻酸盐(1%)可抑制弯孢霉卤过氧化物酶系统的抗菌活性,而葡萄糖和吐温20不影响其活性。总之,弯孢霉卤过氧化物酶系统是一种有效的消毒系统,具有广泛的应用潜力,例如用于隐形眼镜或医疗器械的消毒。