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首页> 外文期刊>Frontiers in Microbiology >Antibacterial Effect of Copaifera duckei Dwyer Oleoresin and Its Main Diterpenes against Oral Pathogens and Their Cytotoxic Effect
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Antibacterial Effect of Copaifera duckei Dwyer Oleoresin and Its Main Diterpenes against Oral Pathogens and Their Cytotoxic Effect

机译:杜比乳脂及其主要二萜对口腔病原菌的抗菌作用及其细胞毒作用

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This study evaluates the antibacterial activity of the Copaifera duckei Dwyer oleoresin and two isolated compounds [eperu-8(20)-15,18-dioic acid and polyalthic acid] against bacteria involved in primary endodontic infections and dental caries and assesses the cytotoxic effect of these substances against a normal cell line. MIC and MBC assays pointed out the most promising metabolites for further studies on bactericidal kinetics, antibiofilm activity, and synergistic antibacterial action. The oleoresin and polyalthic acid but not eperu-8(20)-15,18-dioic provided encouraging MIC and MBC results at concentrations lower than 100 μg mL~(?1). The oleoresin and polyalthic acid activities depended on the evaluated strain. A bactericidal effect on Lactobacillus casei (ATCC 11578 and clinical isolate) emerged before 8 h of incubation. For all the tested bacteria, the oleoresin and polyalthic acid inhibited biofilm formation by at least 50%. The oleoresin and polyalthic acid gave the best activity against Actinomyces naeslundii (ATCC 19039) and L. casei (ATCC 11578), respectively. The synergistic assays combining the oleoresin or polyalthic acid with chlorhexidine did not afford interesting results. We examined the cytotoxicity of C. duckei oleoresin, eperu-8(20)-15,18-dioic acid, and polyalthic acid against Chinese hamster lung fibroblasts. The oleoresin and polyalthic acid were cytotoxic at concentrations above 78.1 μg mL~(?1), whereas eperu-8(20)-15,18-dioic displayed cytotoxicity at concentrations above 312.5 μg mL~(?1). In conclusion, the oleoresin and polyalthic acid are potential sources of antibacterial agents against bacteria involved in primary endodontic infections and dental caries in both the sessile and the planktonic modes at concentrations that do not cause cytotoxicity.
机译:这项研究评估了Copaifera duckei Dwyer油树脂和两种分离的化合物[eperu-8(20)-15,18-二酸和聚丙氨酸]对原发性牙髓感染和龋齿中涉及的细菌的抗菌活性,并评估了其的细胞毒性作用。这些物质对抗正常细胞系。 MIC和MBC分析指出了最有前途的代谢物,可用于进一步研究杀菌动力学,抗生物膜活性和协同抗菌作用。当浓度低于100μgmL〜(?1)时,油树脂和聚丙烯酸,而不是eperu-8(20)-15,18-二甲酸提供了令人鼓舞的MIC和MBC结果。油树脂和聚丙烯酸的活性取决于所评估的菌株。孵育8小时前,对干酪乳杆菌(ATCC 11578和临床分离株)产生了杀菌作用。对于所有测试的细菌,油树脂和聚丙烯酸抑制生物膜的形成至少50%。油树脂和聚丙烯酸分别对内生放线菌(ATCC 19039)和干酪乳杆菌(ATCC 11578)具有最好的活性。将油性树脂或聚异丁酸与洗必泰相结合的协同测定没有得出有趣的结果。我们检查了杜氏油树脂,eperu-8(20)-15,18-二酸和聚丙烯酸对中国仓鼠肺成纤维细胞的细胞毒性。在高于78.1μgmL〜(?1)的浓度下,油树脂和聚海藻酸具有细胞毒性,而在312.5μgmL〜(?1)的浓度下,eperu-8(20)-15,18-二甲酸显示出细胞毒性。总之,油性树脂和聚丙烯酸是无柄和浮游模式下针对原发性牙髓感染和龋齿中涉及细菌的潜在抗菌剂来源,其浓度不引起细胞毒性。

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