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利用人类口腔微生物组构建多功能体外培养筛选平台。

Construction of a versatile in vitro cultivation screening platform using human oral microbiota.

机构信息

Bio Palette Co., Ltd, Kobe, Japan.

Department of Oral and Maxillofacial Surgery, Kobe University Graduate School of Medicine, Kobe, Hyogo, Japan.

出版信息

Environ Microbiol Rep. 2024 Apr;16(2):e13243. doi: 10.1111/1758-2229.13243.

Abstract

We developed a simulation model of human oral microbiota using Bio Palette oral medium (BPOM) containing 0.02% glucose and lower bacterial nitrogen sources, derived from saliva and dental plaque. By decreasing the concentration of Gifu anaerobic medium (GAM) from 30 to 10 g L , we observed increased ratios of target pathogenic genera, Porphyromonas and Fusobacterium from 0.5% and 1.7% to 1.2% and 3.5%, respectively, in the biofilm on hydroxyapatite (HA) discs. BPOM exhibited the higher ratios of Porphyromonas and Fusobacterium, and amplicon sequence variant number on HA, compared with GAM, modified GAM and basal medium mucin. Mixing glycerol stocks of BPOM culture solutions from four human subjects resulted in comparable ratios of these bacteria to the original saliva. In this simulation model, sitafloxacin showed higher inhibitory effects on P. gingivalis than minocycline hydrochloride at a low dosage of 0.1 μg mL . Probiotics such as Streptococcus salivarius and Limosilactobacillus fermentum also showed significant decreases in Porphyromonas and Fusobacterium ratios on HA, respectively. Overall, the study suggests that BPOM with low carbon and nutrients could be a versatile platform for assessing the efficacy of antibiotics and live biotherapeutics in treating oral diseases caused by Porphyromonas and Fusobacterium.

摘要

我们使用含有 0.02%葡萄糖和低细菌氮源的 Bio Palette 口腔培养基 (BPOM) 开发了一种人类口腔微生物群的模拟模型,该培养基源自唾液和牙菌斑。通过将吉富厌氧培养基 (GAM) 的浓度从 30 降低到 10 g/L,我们观察到羟基磷灰石 (HA) 盘上生物膜中目标致病属卟啉单胞菌和梭杆菌的比例分别从 0.5%和 1.7%增加到 1.2%和 3.5%。与 GAM、改良 GAM 和基础培养基粘蛋白相比,BPOM 在 HA 上显示出更高的卟啉单胞菌和梭杆菌比例和扩增子序列变异数。将来自四个人类供体的 BPOM 培养液的甘油储备混合,导致这些细菌与原始唾液的比例相当。在这个模拟模型中,司他夫定在低剂量 0.1μg/mL 时对牙龈卟啉单胞菌的抑制作用高于盐酸米诺环素。唾液链球菌和发酵乳杆菌等益生菌也分别显著降低了 HA 上卟啉单胞菌和梭杆菌的比例。总体而言,该研究表明,低碳和低营养的 BPOM 可能是评估抗生素和活生物治疗剂治疗由卟啉单胞菌和梭杆菌引起的口腔疾病疗效的通用平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b32e/10904971/2932081ce11a/EMI4-16-e13243-g001.jpg

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