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Antagonism of Bacteria from Dog Dental Plaque against Human Cariogenic Bacteria

机译:狗牙菌斑中细菌对人致癌细菌的拮抗作用

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摘要

Dental caries are a process of demineralization and destruction of human teeth. They originate through many factors and are associated with biofilm formation, which consists of bacteria adhered to the teeth that form a structurally and functionally organized mass called dental plaque. Both the presence of Streptococcus mutans and the frequent consumption of sucrose correlate with a higher prevalence of caries in humans. In dogs, however, the incidence of this disease is low, due to factors such as differences in dental microbiota and/or their low consumption of sucrose. This work evaluated the antagonism of bacteria from dog's dental plaque against S. mutans, for the identification of producing strains of biotechnological products for use in preventing caries. This study used 95 bacterial isolates of canine dental plaque from the Veterinary Department at the Federal University of Viçosa, Minas Gerais, Brazil. A spot-on-the-lawn method was performed using Brain Heart Infusion agar with catalase for an initial identification of the antagonistic activity. Additional tests were conducted on the isolates classified as antagonists for confirmation of the activity, using modified Mann-Rogosa-Sharpe medium containing low dextrose concentration. These isolates were incubated at 37°C for 24 hours in anaerobiosis. The peptide nature of inhibition was evaluated using the following proteinases: proteinase K from Tritirachium album, bovine pancreatic trypsin, and type XII-A α-amylase from Bacillus licheniformis. In the initial identification of those strains exhibiting antimicrobial activity, 14 were classified as antagonists. One of the isolates (Bacillus sp.) indicated bacteriocinogenic activity, with a deformed inhibition halo on S. mutans by the addition of trypsin. These results suggest that this bacterial isolate may be applicable to biotechnological use to combat the main etiological agent of caries in humans. Further studies are needed to evaluate the bacteriocinogenic nature of the antimicrobial activities of the other 13 antagonistic bacterial isolates.
机译:龋齿是人牙齿脱矿质和破坏的过程。它们是由许多因素引起的,并与生物膜形成有关,生物膜由粘附在牙齿上的细菌组成,这些细菌形成结构上和功能上有组织的块,称为牙菌斑。变形链球菌的存在和蔗糖的频繁食用都与人类龋齿的患病率较高相关。然而,在狗中,由于诸如牙齿微生物群差异和/或其蔗糖消耗量低等因素,该疾病的发生率较低。这项工作评估了狗牙菌斑中细菌对变形链球菌的拮抗作用,以鉴定用于预防龋齿的生物技术产品的生产菌株。这项研究使用了来自巴西米纳斯吉拉斯州维索萨联邦大学兽医系的95种细菌性犬牙菌斑分离株。用脑过盈琼脂和过氧化氢酶进行草坪上斑点法以初步鉴定拮抗活性。使用含有低葡萄糖浓度的改良Mann-Rogosa-Sharpe培养基,对分类为拮抗剂的分离物进行了其他测试,以确认其活性。这些分离株在厌氧条件下于37°C孵育24小时。使用以下蛋白酶评估抑制作用的肽性质:来自曲霉属的蛋白酶K,牛胰胰蛋白酶和地衣芽孢杆菌的XII-A型α-淀粉酶。在最初鉴定出具有抗菌活性的菌株中,有14种被归类为拮抗剂。分离株之一(芽孢杆菌属)显示出细菌致癌活性,通过添加胰蛋白酶对变形链球菌具有抑制变形的光环。这些结果表明,该细菌分离株可能适用于生物技术以对抗人类龋齿的主要病原体。需要进一步的研究来评估其他13种拮抗细菌分离株的抗菌活性的致细菌性。

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