Gene expression profiles identify key factors in inflammatory odontoblastic dental pulp stem cell differentiation via TNFα/C5L2.

IF 2.8 3区 生物学 Q2 GENETICS & HEREDITY
Frontiers in Genetics Pub Date : 2025-06-04 eCollection Date: 2025-01-01 DOI:10.3389/fgene.2025.1592599
Muhammad Irfan, Ji Hyun Kim, Sreelekshmi Sreekumar, Seung Chung
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引用次数: 0

Abstract

Introduction: Inflammation is a complex host response to harmful infections or injuries, playing beneficial and detrimental roles in tissue regeneration. Notably, clinical dentinogenesis associated with caries development occurs within an inflammatory environment. Reparative dentinogenesis is closely linked to intense inflammation, which triggers the recruitment and differentiation of dental pulp stem cells (DPSCs) into the dentin lineage. Understanding how inflammatory responses influence DPSCs is essential for elucidating the mechanisms underlying dentin and pulp regeneration.

Methods: Given the limited data on this process, a broad approach is employed here to understand better the complex mechanisms involved and identify downstream signaling targets. This study investigates the role of inflammation and the complement receptor C5L2 in the odontoblastic differentiation of DPSCs and the associated transcriptomic changes using poly-A RNA sequencing (RNA-seq). RNA-seq techniques provide insight into the transcriptome of a cell, offering higher coverage and greater resolution of its dynamic nature.

Results: Following inflammatory stimulation, DPSCs exhibit significantly altered gene profiles, including marked up-regulation of key odontogenic genes, highlighting the critical role of inflammation in dentinogenesis. We demonstrate that TNFα-treated, odontoblast-like differentiating DPSCs, under C5L2 modulation, show differentially expressed gene profiles and transcriptomic changes.

Conclusion: Beyond quantifying gene expression, RNA-seq data also enable the discovery of novel transcripts, the identification of alternatively spliced genes, and the detection of allele-specific expression. The data presented may offer new avenues for experimental approaches to uncovering pathways in dentinogenesis by identifying specific transcription factors and gene profiles.

基因表达谱通过TNFα/C5L2鉴定炎性成牙髓干细胞分化的关键因素。
炎症是宿主对有害感染或损伤的复杂反应,在组织再生中起着有益和有害的作用。值得注意的是,与龋齿发展相关的临床牙本质发生在炎症环境中。修复性牙本质形成与强烈的炎症密切相关,炎症会触发牙髓干细胞(DPSCs)向牙本质谱系的募集和分化。了解炎症反应如何影响DPSCs对于阐明牙本质和牙髓再生的机制至关重要。方法:鉴于这一过程的数据有限,本文采用了一种广泛的方法来更好地理解所涉及的复杂机制并确定下游信号靶点。本研究利用多聚a RNA测序(RNA-seq)研究炎症和补体受体C5L2在DPSCs成牙细胞分化中的作用以及相关的转录组学变化。RNA-seq技术提供了对细胞转录组的深入了解,为其动态特性提供了更高的覆盖率和更高的分辨率。结果:在炎症刺激后,DPSCs表现出显著的基因谱改变,包括关键牙形成基因的显著上调,突出了炎症在牙本质形成中的关键作用。我们证明,在C5L2调节下,tnf α处理的成牙细胞样分化的DPSCs表现出差异表达的基因谱和转录组变化。结论:除了量化基因表达外,RNA-seq数据还可以发现新的转录本,鉴定选择性剪接基因,检测等位基因特异性表达。所提出的数据可能为通过鉴定特定的转录因子和基因谱来揭示牙本质形成途径的实验方法提供新的途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Frontiers in Genetics
Frontiers in Genetics Biochemistry, Genetics and Molecular Biology-Molecular Medicine
CiteScore
5.50
自引率
8.10%
发文量
3491
审稿时长
14 weeks
期刊介绍: Frontiers in Genetics publishes rigorously peer-reviewed research on genes and genomes relating to all the domains of life, from humans to plants to livestock and other model organisms. Led by an outstanding Editorial Board of the world’s leading experts, this multidisciplinary, open-access journal is at the forefront of communicating cutting-edge research to researchers, academics, clinicians, policy makers and the public. The study of inheritance and the impact of the genome on various biological processes is well documented. However, the majority of discoveries are still to come. A new era is seeing major developments in the function and variability of the genome, the use of genetic and genomic tools and the analysis of the genetic basis of various biological phenomena.
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