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Novel approach for controlling resistant Listeria monocytogenes to antimicrobials using different disinfectants types loaded on silver nanoparticles (AgNPs)

机译:用纳米粒子(AgNPS)的不同消毒剂类型控制抗性李斯特菌单核细胞增生抗微生物的新方法(AGNPS)

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A combined use of silver nanoparticles (AgNPs) with different types of disinfectants as antimicrobial might be useful in mitigating the problem of development of bacterial resistance with a strong enhancement of the biocidal effect of disinfectants. To evaluate the biocidal activity of silver nanoparticles and its loaded forms, five commercial disinfectants (quaternary ammonium compounds (benzalkonium chloride (BC) and TH4+), Virkon (R) S, sodium hypochlorite, and hydrogen peroxide (H2O2)) were used against Listeria monocytogenes (L. monocytogenes) isolates at different concentrations and exposure times to reveal intra-species variability and the percentage of resistance to antimicrobial agents used. Therefore, a total of 260 specimens from animal and human stool as well as environmental samples from dairy cattle farms were cultured for isolation of L. monocytogenes. Thereafter, bacterial isolates were identified using PCR. Silver nanoparticle was synthesized using chemical reduction. Both silver nanoparticles and its loaded forms were characterized by transmission electron microscopy (TEM). The sensitivity test of 60 strains of L. monocytogenes bacteria to AgNPs and its loaded forms was evaluated using broth macrodilution method. Virkon (R) S/AgNPs 2.0% exhibited the highest bactericidal effect (100%) against L. monocytogenes strains followed by H2O2/AgNPs 5.0% and TH4+/AgNPs 1.0% (90% each). Furthermore, the percentage of resistance of L. monocytogenes was 0.0% to both H2O2/AgNPs 5.0% and Virkon (R) S/AgNPs 2.0%. In conclusion, monitoring the main source of contamination with Listeria monocytogenes in dairy cattle farms is an essential factor to achieve an efficient control. Moreover, the use of the disinfectants, Virkon (R) S 2.0%, H2O2 5.0%, and TH(4+)1.0%, loaded on silver nanoparticles composite had the strong bactericidal effect against L. monocytogenes.
机译:使用不同类型消毒剂的银纳米颗粒(AgNP)的组合使用作为抗微生物可能可用于缓解细菌抗性的发展问题,并强大提高消毒剂的生物杀菌效果。为了评估银纳米颗粒的杀生物活性及其负载形式,用于对李斯特菌(Silkon(R),次氯酸钠和过氧化氢(H2O2))使用过五种商业消毒剂(季铵化合物(季铵化合物(苯并氯化铵(Bc)和Th4 +),virckon(R),次氯酸钠)单核细胞增生(L.单核细胞元)在不同浓度下分离出不同浓度和曝光时间,以揭示物种内的可变性和使用的抗性药剂的含量。因此,培养了来自动物和人类粪便的260个标本以及来自乳制力养殖场的环境样品被培养以分离L.单核细胞增生。此后,使用PCR鉴定细菌分离物。使用化学还原合成银纳米粒子。通过透射电子显微镜(TEM)表征银纳米颗粒及其负载形式。使用肉汤造粒法评价60株L.单核细胞增生细菌对agnps及其负载形式的敏感性试验及其负载形式。 virkon(r)s / agnps 2.0%表现出对L.单核细胞增生菌株的最高杀菌效果(100%),然后是H 2 O 2 / AgNPS 5.0%和Th4 + / AgNPS 1.0%(每种90%)。此外,L.单核细胞元的抗性百分比为H 2 O 2 / AgNPS 5.0%和Virkon(R)S / AgNPS 2.0%。总之,监测乳制品牛农场中李斯特菌单核细胞元素的主要污染来源是实现有效控制的必要因素。此外,在银纳米粒子复合物上使用消毒剂,Virkon(R)的2.0%,H 2 O 2 5.0%和Th(4 +)1.0%对L.单核细胞生成的强烈杀菌作用具有强烈的杀菌作用。

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