首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Antibacterial Efficacy of Silver Nanoparticles on Endometritis Caused by Prevotella melaninogenica and Arcanobacterum pyogenes in Dairy Cattle
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Antibacterial Efficacy of Silver Nanoparticles on Endometritis Caused by Prevotella melaninogenica and Arcanobacterum pyogenes in Dairy Cattle

机译:纳米银对奶牛产黑色素水杆菌和化脓性产弧菌引起的子宫内膜炎的抗菌作用

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摘要

Bovine postpartum diseases remain one of the most significant and highly prevalent illnesses with negative effects on the productivity, survival, and welfare of dairy cows. Antibiotics are generally considered beneficial in the treatment of endometritis; however, frequent usage of each antibiotic drug is reason for the emergence of multidrug resistance (MDR) of the pathogenic microorganisms, representing a major impediment for the successful diagnosis and management of infectious diseases in both humans and animals. We synthesized silver nanoparticles (AgNPs) with an average size of 10 nm using the novel biomolecule apigenin as a reducing and stabilizing agent, and evaluated the efficacy of the AgNPs on the MDR pathogenic bacteria Prevotella melaninogenica and Arcanobacterium pyogenes isolated from uterine secretion samples. AgNPs inhibited cell viability and biofilm formation in a dose- and time-dependent manner. Moreover, the metabolic toxicity of the AgNPs was assessed through various cellular assays. The major toxic effect of cell death was caused by an increase in oxidative stress, as evidenced by the increased generation of reactive oxygen species (ROS), malondialdehyde, protein carbonyl content, and nitric oxide. The formation of ROS is considered to be the primary mechanism of bacterial death. Therefore, the biomolecule-mediated synthesis of AgNPs shows potential as an alternative antimicrobial therapy for bovine metritis and endometritis.
机译:牛产后疾病仍然是最重要和高度流行的疾病之一,对奶牛的生产力,生存和福利产生负面影响。通常认为抗生素对子宫内膜炎的治疗有益。然而,每种抗生素的频繁使用是致病性微生物出现多药耐药性的原因,这是成功诊断和管理人类和动物传染病的主要障碍。我们使用新型生物分子芹菜素作为还原剂和稳定剂,合成了平均粒径为10 nm的银纳米颗粒(AgNPs),并评估了AgNPs对从子宫分泌物样本中分离出的MDR致病细菌黑色素原菌和化脓性产弧菌的功效。 AgNP以剂量和时间依赖性方式抑制细胞活力和生物膜形成。此外,通过各种细胞试验评估了AgNPs的代谢毒性。细胞死亡的主要毒性作用是由氧化应激的增加引起的,活性氧(ROS),丙二醛,蛋白质羰基含量和一氧化氮的产生增加证明了这一点。 ROS的形成被认为是细菌死亡的主要机制。因此,生物分子介导的AgNPs的合成显示出作为牛子宫内膜炎和子宫内膜炎的替代抗菌疗法的潜力。

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