Department of Stomatology, Renji Hospital, School of Medicine, Shanghai Jiao Tong University, Shanghai, China.
College of Stomatology, Shanghai Jiao Tong University, Shanghai, China.
J Periodontal Res. 2022 Jun;57(3):594-614. doi: 10.1111/jre.12989. Epub 2022 Apr 6.
Periodontitis is a multifactorial chronic inflammatory disease that can lead to the irreversible destruction of dental support tissues. As an epigenetic factor, the expression of circRNA is tissue-dependent and disease-dependent. This study aimed to identify novel periodontitis-associated circRNAs and predict relevant circRNA-periodontitis regulatory network by using recently developed bioinformatic tools and integrating sequencing profiling with clinical information for getting a better and more thorough image of periodontitis pathogenesis, from gene to clinic.
High-throughput sequencing and RT-qPCR were conducted to identify differentially expressed circRNAs in gingival tissues from periodontitis patients. The relationship between upregulated circRNAs expression and probing depth (PD) was performed using Spearman's correlation analysis. Bioinformatic analyses including GO analysis, circRNA-disease association prediction, and circRNA-miRNA-mRNA network prediction were performed to clarify potential regulatory functions of identified circRNAs in periodontitis. A receiver-operating characteristic (ROC) curve was established to assess the diagnostic significance of identified circRNAs.
High-throughput sequencing identified 70 differentially expressed circRNAs (68 upregulated and 2 downregulated circRNAs) in human periodontitis (fold change >2.0 and p < .05). The top five upregulated circRNAs were validated by RT-qPCR that had strong associations with multiple human diseases, including periodontitis. The upregulation of circRNAs were positively correlated with PD (R = .40-.69, p < .05, moderate). A circRNA-miRNA-mRNA network with the top five upregulated circRNAs, differentially expressed mRNAs, and overlapped predicted miRNAs indicated potential roles of circRNAs in immune response, cell apoptosis, migration, adhesion, and reaction to oxidative stress. The ROC curve showed that circRNAs had potential value in periodontitis diagnosis (AUC = 0.7321-0.8667, p < .05).
CircRNA-disease associations were predicted by online bioinformatic tools. Positive correlation between upregulated circRNAs, circPTP4A2, chr22:23101560-23135351+, circARHGEF28, circBARD1 and circRASA2, and PD suggested function of circRNAs in periodontitis. Network prediction further focused on downstream targets regulated by circRNAs during periodontitis pathogenesis.
牙周炎是一种多因素的慢性炎症性疾病,可导致牙齿支持组织的不可逆转破坏。作为一种表观遗传因素,circRNA 的表达具有组织依赖性和疾病依赖性。本研究旨在通过使用最近开发的生物信息学工具,并将测序分析与临床信息相结合,识别新型牙周炎相关 circRNA,并预测相关的 circRNA-牙周炎调控网络,从而更好、更全面地了解牙周炎的发病机制,从基因到临床。
通过高通量测序和 RT-qPCR 鉴定牙周炎患者牙龈组织中差异表达的 circRNA。采用 Spearman 相关分析研究上调 circRNA 表达与探诊深度(PD)之间的关系。通过 GO 分析、circRNA-疾病关联预测和 circRNA-miRNA-mRNA 网络预测等生物信息学分析,阐明鉴定出的 circRNA 在牙周炎中的潜在调控功能。通过绘制受试者工作特征(ROC)曲线评估鉴定出的 circRNA 的诊断意义。
高通量测序鉴定出 70 个差异表达的 circRNA(68 个上调和 2 个下调 circRNA)在人类牙周炎中(倍数变化>2.0,p<.05)。通过 RT-qPCR 验证了前 5 个上调的 circRNA,它们与包括牙周炎在内的多种人类疾病具有强烈关联。circRNA 的上调与 PD 呈正相关(R=.40-.69,p<.05,中度)。包含前 5 个上调 circRNA、差异表达 mRNA 和重叠预测 miRNA 的 circRNA-miRNA-mRNA 网络表明 circRNA 可能在免疫反应、细胞凋亡、迁移、黏附和对氧化应激的反应中发挥作用。ROC 曲线表明,circRNA 对牙周炎诊断具有潜在价值(AUC=0.7321-0.8667,p<.05)。
通过在线生物信息学工具预测 circRNA-疾病关联。上调的 circRNA、circPTP4A2、chr22:23101560-23135351+、circARHGEF28、circBARD1 和 circRASA2 与 PD 之间呈正相关,提示 circRNA 在牙周炎中的作用。网络预测进一步关注牙周炎发病过程中 circRNA 调控的下游靶标。