Department of Periodontology and Implant Dentistry, New York University College of Dentistry, New York, New York, USA.
Private Practice, Beirut, Lebanon.
Oral Dis. 2024 Jul;30(5):2771-2783. doi: 10.1111/odi.14761. Epub 2023 Oct 4.
This narrative review illuminates on the application of single-cell RNA sequencing (scRNA-seq) and spatial transcriptomics (ST) in periodontitis and highlights the probability of relating cell population and gene signatures to the pathogenesis of the disease for a better diagnosis.
An electronic search of the literature in the PubMed database for the keywords, "single cell sequencing" OR "spatial transcriptomics" and "periodontitis" OR "gingiva" OR "oral mucosa" yielded 486 research articles and reviews. After filtering duplicates and careful curation, 22 papers conducted in humans were retained.
The molecular mechanisms underlying periodontitis are complex and involve the interaction of multiple cells and various gene expressions. Most residing cells in periodontal tissues participate in maintaining homeostasis and health, while in addition to infiltrating immune cells contribute to the fight against the bacterial insult.
scRNA-seq and ST have provided new insights into the cellular and molecular changes associated with periodontitis for a better diagnosis and clinical outcome. New functions of cells and genes are revealed with these techniques; however, no cells or gene signatures are attributed to periodontitis so far.
本叙述性综述阐明了单细胞 RNA 测序 (scRNA-seq) 和空间转录组学 (ST) 在牙周炎中的应用,并强调了将细胞群体和基因特征与疾病发病机制相关联以实现更好诊断的可能性。
在 PubMed 数据库中使用“单细胞测序”或“空间转录组学”和“牙周炎”或“牙龈”或“口腔黏膜”等关键词进行电子文献检索,共获得 486 篇研究文章和综述。经过重复数据过滤和仔细筛选,保留了 22 篇在人类中进行的研究。
牙周炎的分子机制复杂,涉及多种细胞的相互作用和多种基因表达。牙周组织中大多数常驻细胞参与维持内稳态和健康,除了浸润的免疫细胞外,还有助于对抗细菌侵袭。
scRNA-seq 和 ST 为更好的诊断和临床结果提供了与牙周炎相关的细胞和分子变化的新见解。这些技术揭示了细胞和基因的新功能;然而,迄今为止,还没有发现与牙周炎相关的特定细胞或基因特征。