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Compositional modification of nascent in vitro dental plaques by human host-defence peptides

机译:人类宿主防御肽对新生体外牙菌斑的成分修饰

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Salivary host-defence peptides include defensins, histatins and cathelicidin. We have investigated the effects of these peptides on the microbial composition of dental plaques. Salivary consortia, established within hydroxyapatite disc models, were exposed during development to physiological levels of human neutrophil proteins (HNP) 1 and 2; human β defensins (hβD) 1, 2 and 3; histatins (His) 5 and 8; and cathelicidin (LL37). Effects on aggregation and microbial composition were determined using fluorescence microscopy; and differential culture with PCR-DGGE, respectively. LIVE/DEAD microscopic analysis indicated that HDPs decreased total bacterial viability, whilst β defensins, paired HNPs, His 5, His 8 and the HDPs combined inhibited bacterial aggregation. According to differential culture, all test HDPs (except His 5) significantly decreased the abundance of Gram-negative anaerobes and lactobacilli (except HNP 2, hβD 1, paired HNPs and His 5). Combined HNPs and paired hβD 1 and 3 inhibited streptococci, whereas HNP 1, hβD 1, hβD 3, His 5 and LL37 increased streptococcal numbers. According to cluster analyses of DGGE profiles, HDP-exposed plaques were compositionally distinct from undosed controls. Thus, whilst HDPs reportedly exhibit variable potency against oral bacteria in endpoint susceptibly tests, exposure of nascent plaques can markedly influence bacterial viability, composition and microbial aggregation.
机译:唾液宿主防御肽包括防御素,组蛋白和cathelicidin。我们已经研究了这些肽对牙菌斑微生物组成的影响。在羟基磷灰石椎间盘模型中建立的唾液联合体在发育过程中暴露于人中性粒细胞蛋白(HNP)1和2的生理水平。人β防御素(hβD)1、2和3;组蛋白(His)5和8;和cathelicidin(LL37)。使用荧光显微镜确定对聚集和微生物组成的影响。和分别用PCR-DGGE进行差异培养。 LIVE / DEAD显微镜分析表明,HDP降低了细菌的总生存力,而β防御素,配对的HNP,His 5,His 8和HDP共同抑制了细菌的聚集。根据差异文化,所有测试的HDP(His 5除外)均显着降低了革兰氏阴性厌氧菌和乳酸杆菌的含量(HNP 2,hβD1,配对的HNP和His 5除外)。结合HNP和配对的hβD1和3抑制链球菌,而HNP 1,hβD1,hβD3,His 5和LL37增加链球菌数。根据DGGE图谱的聚类分析,暴露于HDP的噬菌斑在成分上与未接种的对照不同。因此,尽管据报导HDP在端点敏感性测试中显示出对口腔细菌的可变效力,但新生斑块的暴露会显着影响细菌的生存力,组成和微生物聚集。

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