Department of Microbiology and Parasitology, CIBUS-Faculty of Biology, Universidade de Santiago de Compostela, Santiago de Compostela, Spain.
Department of Surgery and Medical-Surgical Specialties, Faculty of Medicine and Odontology, Universidade de Santiago de Compostela, Santiago de Compostela, Spain.
Front Cell Infect Microbiol. 2023 Feb 2;13:1118630. doi: 10.3389/fcimb.2023.1118630. eCollection 2023.
Recent studies have revealed the presence of -acyl-homoserine lactones (AHLs) quorum sensing (QS) signals in the oral environment. Yet, their role in oral biofilm development remains scarcely investigated. The use of quorum quenching (QQ) strategies targeting AHLs has been described as efficient for the control of pathogenic biofilms. Here, we evaluate the use of a highly active AHL-targeting QQ enzyme, Aii20J, to modulate oral biofilm formation .
The effect of the QQ enzyme was studied in multispecies biofilms generated from oral samples taken from healthy donors and patients with periodontal disease. Subgingival samples were used as inocula, aiming to select members of the microbiota of the periodontal pocket niche in the biofilms. Biofilm formation abilities and microbial composition were studied upon treating the biofilms with the QQ enzyme Aii20J.
The addition of the enzyme resulted in significant biofilm mass reductions in 30 - 60% of the subgingival-derived biofilms, although standard AHLs could not be found in the supernatants of the cultured biofilms. Changes in biofilm mass were not accompanied by significant alterations of bacterial relative abundance at the genus level. The investigation of 125 oral supragingival metagenomes and a synthetic subgingival metagenome revealed a surprisingly high abundance and broad distribution of homologous of the AHL synthase HdtS and several protein families of AHL receptors, as well as an enormous presence of QQ enzymes, pointing to the existence of an intricate signaling network in oral biofilms that has been so far unreported, and should be further investigated. Together, our findings support the use of Aii20J to modulate polymicrobial biofilm formation without changing the microbiome structure of the biofilm. Results in this study suggest that AHLs or AHL-like molecules affect oral biofilm formation, encouraging the application of QQ strategies for oral health improvement, and reinforcing the importance of personalized approaches to oral biofilm control.
最近的研究揭示了 -酰基高丝氨酸内酯(AHLs)群体感应(QS)信号存在于口腔环境中。然而,它们在口腔生物膜发育中的作用尚未得到广泛研究。针对 AHLs 的群体感应淬灭(QQ)策略已被证明可有效控制致病性生物膜。在这里,我们评估了一种高活性的 AHL 靶向 QQ 酶 Aii20J 在调节口腔生物膜形成中的作用。
从健康供体和牙周病患者的口腔样本中获得的多物种生物膜中研究了 QQ 酶的作用。龈下样本被用作接种物,旨在选择牙周袋生态位微生物群落成员在生物膜中。用 QQ 酶 Aii20J 处理生物膜后,研究了生物膜形成能力和微生物组成。
该酶的添加导致 30-60%的龈下衍生生物膜的生物膜质量显著减少,尽管在培养生物膜的上清液中未发现标准 AHLs。生物膜质量的变化没有伴随着细菌相对丰度在属水平上的显著改变。对 125 个口腔龈上宏基因组和一个合成龈下宏基因组的研究表明,AHL 合酶 HdtS 的同源物以及 AHL 受体的几个蛋白家族具有惊人的高丰度和广泛分布,以及大量存在的 QQ 酶,这表明在口腔生物膜中存在一个复杂的信号网络,迄今为止尚未报道,应进一步研究。总的来说,我们的发现支持使用 Aii20J 来调节多微生物生物膜形成,而不改变生物膜的微生物组结构。本研究结果表明,AHLs 或 AHL 样分子影响口腔生物膜形成,鼓励应用 QQ 策略改善口腔健康,并加强个性化方法控制口腔生物膜的重要性。