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首页> 外文期刊>Journal of Dental Research: Official Publication of the International Association for Dental Research >Second Era of OMICS in Caries Research: Moving Past the Phase of Disillusionment
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Second Era of OMICS in Caries Research: Moving Past the Phase of Disillusionment

机译:龋病研究中的第二个时代:迁移过幻灭的阶段

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Novel approaches using OMICS techniques enable a collective assessment of multiple related biological units, including genes, gene expression, proteins, and metabolites. In the past decade, next-generation sequencing (NGS) technologies were improved by longer sequence reads and the development of genome databases and user-friendly pipelines for data analysis, all accessible at lower cost. This has generated an outburst of high-throughput data. The application of OMICS has provided more depth to existing hypotheses as well as new insights in the etiology of dental caries. For example, the determination of complete bacterial microbiomes of oral samples rather than selected species, together with oral metatranscriptome and metabolome analyses, supports the viewpoint of dysbiosis of the supragingival biofilms. In addition, metabolome studies have been instrumental in disclosing the contributions of major pathways for central carbon and amino acid metabolisms to biofilm pH homeostasis. New, often noncultured, oral streptococci have been identified, and their phenotypic characterization has revealed candidates for probiotic therapy. Although findings from OMICS research have been greatly informative, problems related to study design, data quality, integration, and reproducibility still need to be addressed. Also, the emergence and continuous updates of these computationally demanding technologies require expertise in advanced bioinformatics for reliable interpretation of data. Despite the obstacles cited above, OMICS research is expected to encourage the discovery of novel caries biomarkers and the development of next-generation diagnostics and therapies for caries control. These observations apply equally to the study of other oral diseases.
机译:使用OMICS技术的新方法使得具有多种相关的生物单位的集体评估,包括基因,基因表达,蛋白质和代谢物。在过去的十年中,通过更长的序列读取和基因组数据库的开发来改善下一代测序(NGS)技术,以及用于数据分析的基因组数据库和用户友好的流水线,可以以较低的成本访问。这已产生高吞吐量数据的爆发。 OMIC的应用已经为现有假设提供了更多深度以及龋齿病因的新见解。例如,测定口腔样品的完全细菌微生物,而不是选定的物种以及口服甲状腺肿瘤和代谢分析,支持对Suprictival生物膜的消化不良的观点。此外,代谢物研究已经有助于揭示中央碳和氨基酸代谢对生物膜pHoosoSisis的主要途径的贡献。已经确定了新的,通常是非培养的口服链球菌,其表型表征已经揭示了益生菌治疗的候选者。虽然OMICS研究的发现已经过分了解,但需要解决与学习设计,数据质量,集成和再现性有关的问题。此外,这些计算要求苛刻技术的出现和持续更新需要高级生物信息学的专业知识,以便可靠地解释数据。尽管上面引用了障碍,但预计OMICS研究会鼓励发现新型龋病生物标志物和开发龋齿控制的下一代诊断和疗法。这些观察结果同样适用于对其他口服疾病的研究。

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