Development of a Postbiotic-Based Orodispersible Film to Prevent Dysbiosis in the Oral Cavity.

Mariana B Rebelo, Cláudia S Oliveira, Freni K Tavaria
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Abstract

Background: Oral diseases affect over three billion peopleand are among the most commonly observed infections worldwide. Recent studies have shown that controlling the ecology of the oralome is more effective in reducing the risk of caries than the complete removal of both harmful and beneficial microorganisms. This work aimed to develop a strategy for preventing dysbiosis in the oral cavity by applying a postbiotic-based orodispersible film.

Methods: Lactiplantibacillus plantarum 226V and Lacticaseibacillus paracasei L26 were cultured in De Man-Rogosa-Sharpe (MRS) broth for 48 hours, followed by centrifugation and filtration. Then, the resultant postbiotics were then subjected to various dilutions (10% (v/v), 20% (v/v), 40% (v/v), 60% (v/v) and 100% (v/v)) and co-incubated with Streptococcus mutans. Antimicrobial efficacy, minimal inhibitory concentration, the time required to inhibit S. mutans growth, and antibiofilm properties of the postbiotics were assessed. Subsequently, an orodispersible film comprising polymers and plasticizers, namely Xanthan gum, maltodextrin, and glycerol, was developed as a vehicle for postbiotic delivery. Formulation optimization, physical property evaluation, and cytotoxicity against the TR146 human oral cell line (TR146 cell line) were conducted.

Results: Postbiotics demonstrated antimicrobial and antibiofilm activity against S. mutans following 24-hour co-incubation. The minimal inhibitory concentration for combined postbiotics administration was 20% (v/v). Remarkably, 79.6 ± 8.15% inhibition of biofilm formation was achieved using 100% (v/v) of the postbiotic derived from L. plantarum 226V. Incorporating postbiotics did not compromise the dissolution time of orodispersible films, all exceeding 20 minutes. Furthermore, solubility improved following postbiotic addition, facilitating ease of handling. Importantly, postbiotic-impregnated orodispersible films were non-cytotoxic when exposed to the TR146 cell line.

Conclusions: These findings underscore the potential of orodispersible films loaded with postbiotics as a promising potential intervention for oral dysbiosis.

预防口腔生态失调的后生物基口分散膜的研制。
背景:口腔疾病影响着超过30亿人,是世界上最常见的感染之一。最近的研究表明,控制口腔的生态比完全清除有害和有益的微生物更有效地降低龋齿的风险。这项工作旨在通过应用后生物基或可分散膜来开发一种预防口腔生态失调的策略。方法:植物乳杆菌226V和副干酪乳杆菌L26在MRS (De Man-Rogosa-Sharpe)肉汤中培养48 h,离心过滤。然后,将得到的后生物制剂进行不同的稀释(10% (v/v), 20% (v/v), 40% (v/v), 60% (v/v)和100% (v/v)),并与变形链球菌共孵育。评估了抗菌效果、最低抑菌浓度、抑制变形链球菌生长所需的时间和后生物制剂的抗菌膜特性。随后,一种由聚合物和增塑剂(即黄原胶、麦芽糖糊精和甘油)组成的可分散薄膜被开发为生物后递送的载体。进行配方优化、物性评价及对TR146人口腔细胞系(TR146细胞系)的细胞毒性研究。结果:经24小时共孵育后,益生菌对变形链球菌具有抗菌和抗生物膜活性。复合给药后的最低抑菌浓度为20% (v/v)。使用100% (v/v)的植物乳杆菌226V后生菌对生物膜形成的抑制效果为79.6±8.15%。添加后生物制剂不影响非分散膜的溶解时间,均超过20分钟。此外,添加后的溶解度提高,便于处理。重要的是,当暴露于TR146细胞系时,生物后浸渍或分散膜是非细胞毒性的。结论:这些发现强调了装载后生物制剂的可分散膜作为口腔生态失调的潜在干预手段的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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