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宏基因组学能否揭示口腔细菌组在人类疾病中的影响?

Can metagenomics unravel the impact of oral bacteriome in human diseases?

机构信息

Dept. of Life Sciences, Central University of Tamil Nadu, Thiruvarur, Tamil Nadu, India.

Respiratory Translational Research Group, Department of Laboratory Medicine, School of Health Sciences, University of Tasmania, Launceston, Tasmania, Australia.

出版信息

Biotechnol Genet Eng Rev. 2023 Apr;39(1):85-117. doi: 10.1080/02648725.2022.2102877. Epub 2022 Jul 21.

Abstract

Oral microbial ecosystems are vital in maintaining the health of the oral cavity and the entire body. Oral microbiota is associated with the progression of oral diseases such as dental caries, periodontal diseases, head and neck cancer, and several systemic diseases such as cardiovascular disease, rheumatoid arthritis, adverse pregnancy outcomes, diabetes, lung infection, colorectal cancer, and pancreatic cancer. Buccal mucosa, tongue dorsum, hard palate, saliva, palatine tonsils, throat, keratinized gingiva, supra-gingival plaque, subgingival plaque, dentures, and lips are microbial habitats of the oral cavity. may have a role in the development of periodontal diseases, oral cancer, diabetes, and atherosclerotic disease. showed a higher abundance in periodontal diseases, oral and colon cancer, adverse pregnancy outcomes, diabetes, and rheumatoid arthritis. The higher abundance of is typical in periodontal diseases, rheumatoid arthritis, and adverse pregnancy outcome. displayed higher abundance in both dental caries and OSCC. Oral bacteria may influence systemic diseases through inflammation by releasing pro inflammatory cytokines. Identification of oral bacteria using culture-dependent approaches and next-generation sequencing-based metagenomic approaches is believed to significantly identify the therapeutic targets and non-invasive diagnostic indicators in different human diseases. Oral bacteria in saliva could be exploited as a non-invasive diagnostic indicator for the early detection of oral and systemic disorders. Other therapeutic approaches such as the use of probiotics, green tea polyphenol, cold atmospheric plasma (CAP) therapy, antimicrobial photodynamic therapy, and antimicrobial peptides are used to inhibit the growth of biofilm formation by oral bacteria.

摘要

口腔微生物生态系统对于维护口腔和整个身体的健康至关重要。口腔微生物群与口腔疾病的进展有关,如龋齿、牙周病、头颈部癌症以及一些系统性疾病,如心血管疾病、类风湿性关节炎、不良妊娠结局、糖尿病、肺部感染、结直肠癌和胰腺癌。颊黏膜、舌背、硬腭、唾液、腭扁桃体、喉咙、角化牙龈、龈上菌斑、龈下菌斑、义齿和嘴唇是口腔的微生物栖息地。可能在牙周病、口腔癌、糖尿病和动脉粥样硬化疾病的发展中起作用。在牙周病、口腔和结肠癌、不良妊娠结局、糖尿病和类风湿性关节炎中显示出更高的丰度。在牙周病、类风湿性关节炎和不良妊娠结局中, 的丰度较高。在龋齿和口腔鳞状细胞癌(OSCC)中均显示出较高的丰度。口腔细菌可能通过释放促炎细胞因子引起炎症,从而影响系统性疾病。使用基于培养的方法和基于下一代测序的宏基因组方法来鉴定口腔细菌,被认为可以显著识别不同人类疾病中的治疗靶点和非侵入性诊断指标。唾液中的口腔细菌可以作为口腔和全身疾病早期检测的非侵入性诊断指标。其他治疗方法,如使用益生菌、绿茶多酚、冷等离体血浆(CAP)疗法、抗菌光动力疗法和抗菌肽,用于抑制口腔细菌生物膜形成的生长。

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