Adelaide Dental School, University of Adelaide, AHMS L10 North Terrace corner George Street, Adelaide, South Australia, 5005, Australia.
School of Engineering, University of South Australia, Adelaide, South Australia, Australia.
Clin Oral Investig. 2021 May;25(5):3305-3313. doi: 10.1007/s00784-020-03663-0. Epub 2020 Nov 2.
Our aim was to assess the anti-biofilm ability of previously unverified individual D-amino acids (DAAs), to produce plasma polymer encapsulated DAAs (PPEDAAs), to measure the shell thickness and subsequent release of DAAs, and to assess the effects of PPEDAAs on Enterococcus faecalis biofilms.
Microtitre tray assays were used to evaluate the effect of individual DAAs (D-leucine, D-methionine, D-tryptophan, and D-tyrosine) on E. faecalis biofilms of different maturity. A mixture and individual DAAs were encapsulated with a plasma polymer for 10, 20, 40, and 60 min. The shell thickness of PPEDAAs was analyzed by ultra-high-resolution scanning electron microscopy. The release of DAAs from the PPEDAAs encapsulated for 60 min was measured over 7 days using high-performance liquid chromatography. Static biofilms were used to assess the effect of PPEDAAs on E. faecalis biofilms.
Individual DAAs reduced biofilm formation to various degrees, according to the DAA and the experimental times. The shell thicknesses of the PPEDAAs ranged between 31 and 76 nm and increased with encapsulation time. Diffusion of DAAs from the PPEDAAs occurred over 60 min for encapsulated D-leucine, D-methionine, and D-tyrosine and up to 7 days for D-tryptophan. PPEDAAs disrupted biofilms at every experimental time.
PPEDAAs of various shell thickness can be produced with the proposed methodology, DAAs are subsequently released, and the anti-biofilm activity remains unaltered.
Individual DAAs and PPEDAAs have anti-biofilm ability and can be considered as part of a biological strategy in endodontics.
评估先前未经证实的个别 D-氨基酸(DAA)的抗生物膜能力,制备等离子体聚合物包裹的 DAA(PPEDAAs),测量壳层厚度和随后的 DAA 释放,并评估 PPEDAAs 对粪肠球菌生物膜的影响。
微量滴定板测定法用于评估不同成熟度的粪肠球菌生物膜中个别 DAA(D-亮氨酸、D-蛋氨酸、D-色氨酸和 D-酪氨酸)的作用。将混合物和个别 DAA 用等离子体聚合物包裹 10、20、40 和 60 分钟。通过超高效分辨率扫描电子显微镜分析 PPEDAAs 的壳层厚度。使用高效液相色谱法在 7 天内测量封装 60 分钟的 PPEDAAs 中 DAA 的释放情况。静态生物膜用于评估 PPEDAAs 对粪肠球菌生物膜的影响。
个别 DAA 根据 DAA 和实验时间的不同,在不同程度上减少生物膜的形成。PPEDAAs 的壳层厚度在 31 和 76nm 之间,且随封装时间增加而增加。封装的 D-亮氨酸、D-蛋氨酸和 D-酪氨酸的 DAA 从 PPEDAAs 中的扩散在 60 分钟内发生,而 D-色氨酸则持续 7 天。PPEDAAs 在每个实验时间都破坏生物膜。
可以用所提出的方法制备不同壳层厚度的 PPEDAAs,随后释放 DAA,并且抗生物膜活性保持不变。
个别 DAA 和 PPEDAAs 具有抗生物膜能力,可被视为牙髓学生物学策略的一部分。