Magok R&D Center, LG Household & Health Care, Gangseo-gu, Seoul, 07795, Republic of Korea.
Sci Rep. 2018 Nov 1;8(1):16154. doi: 10.1038/s41598-018-34366-y.
Mature biofilms are highly resistant to antimicrobial agents due to the presence of extracellular polymeric substances (EPS), which inhibit the penetration of external molecules. In this study, we developed a coordination compound consisting of zinc chloride and erythritol that exhibits penetrating and bactericidal activity against Streptococcus mutans biofilms. An in vitro biofilm model was established in microplates, and bactericidal activity against biofilms was evaluated using an Alamar blue assay. The cause of the antimicrobial activity of the zinc-erythritol mixture on mature biofilms was demonstrated using fast atom bombardment-mass spectrometry, confocal laser scanning microscopy and atomic force microscopy. We demonstrated that zinc chloride spontaneously formed cationic complexes with erythritol in water. The zinc-erythritol complexes reduced intra- and inter-molecular interactions between bacterial exopolysaccharides, a major component of EPS. This activity was confirmed by measuring the attenuation of the hardness of dried polysaccharides isolated from S. mutans biofilms. The reduction in the interactions between polysaccharides allowed the complexes to penetrate into biofilms and kill the embedded bacteria. While approximately 13% of biofilm-associated microbes were killed by a 10 min treatment with 6.6 mM zinc chloride, 45% were killed when a solution containing 19.8 mM erythritol and 6.6 mM zinc chloride was used. This strategy of leveraging the coordination properties of metal ions with sugar alcohols provides a simple way to effectively remove mature biofilms using only conventional substances without the need for intricate chemical synthesis processes.
成熟的生物膜由于存在细胞外聚合物(EPS)而具有很强的抗抗菌药物的能力,这些物质会抑制外部分子的渗透。在这项研究中,我们开发了一种由氯化锌和赤藓糖醇组成的配合物,该配合物对变形链球菌生物膜具有穿透和杀菌活性。我们在微孔板中建立了体外生物膜模型,并使用 Alamar blue 测定法评估了对生物膜的杀菌活性。使用快原子轰击-质谱,共聚焦激光扫描显微镜和原子力显微镜证明了锌-赤藓糖醇混合物对成熟生物膜的抗菌活性的原因。我们证明,氯化锌在水中自发地与赤藓糖醇形成阳离子配合物。锌-赤藓糖醇配合物减少了细菌胞外多糖(EPS 的主要成分)之间的分子内和分子间相互作用。通过测量从 S. mutans 生物膜中分离出的干燥多糖的硬度衰减来证实了这种活性。多糖之间相互作用的减少使配合物能够渗透到生物膜中并杀死嵌入的细菌。当用 6.6mM 氯化锌处理 10 分钟时,大约有 13%的生物膜相关微生物被杀死,而当使用含有 19.8mM 赤藓糖醇和 6.6mM 氯化锌的溶液时,则有 45%的微生物被杀死。这种利用金属离子与糖醇的配位性质的策略提供了一种简单的方法,仅使用常规物质即可有效地去除成熟的生物膜,而无需复杂的化学合成过程。