Effect of α7 nAChR-autophagy axis of deciduous tooth pulp stem cells in regulating IL-1β in the process of physiological root resorption of deciduous teeth.

IF 4.8 3区 医学 Q1 GENETICS & HEREDITY
Journal of Molecular Medicine-Jmm Pub Date : 2024-09-01 Epub Date: 2024-07-13 DOI:10.1007/s00109-024-02466-0
Tiankai Di, Yujiang Chen, Zhifei Zhou, Jiajia Liu, Yang Du, Chao Feng, Bin Zhu, Lulu Wang
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引用次数: 0

Abstract

Physiological root resorption of deciduous teeth is a normal phenomenon occurring during the developmental stages of children. Previous research has indicated the pivotal role of the inflammatory microenvironment in this process, although the specific mechanisms remain unclear. This study is aimed at elucidating the involvement of the alpha7 nicotinic acetylcholine receptors (α7 nAChR)-autophagy axis in the regulation of the inflammatory microenvironment during physiological root resorption in deciduous teeth. Samples were collected from deciduous teeth at various stages of physiological root resorption, and deciduous dental pulp stem cells (DDPSCs) were isolated and cultured during the mid-phase of root resorption. The findings revealed a substantial infiltration of the pulp of deciduous teeth at the mid-phase of root resorption, characterized by elevated expression levels of α7 nAChR and IL-1β. Significantly increased IL-1β and α7 nAChR expressions were observed in DDPSCs during the mid-phase of root resorption, with α7 nAChR demonstrating a regulatory effect on IL-1β. Moreover, evidence suggested that mechanical stress may act as a trigger, regulating autophagy and IL-1 expression via α7 nAChR. In conclusion, mechanical stress was identified as a regulator of autophagy in DDPSCs through α7 nAChR, influencing the expression of IL-1β and contributing to the formation of the inflammatory microenvironment. This mechanism plays a crucial role in the physiological root resorption of deciduous teeth. KEY MESSAGES: The pulp of deciduous teeth at mid-phase of root resorption was heavily infiltrated with high expression of α7nAChR and IL-1β. α7 nAChR acts as an initiating factor to regulate IL-1β through autophagy in DDPSCs. Mechanical stress can regulate autophagy of DDPSCs through α7 nAChR and thus affect IL-1β expression and inflammatory microenvironment formation in physiological root resorption in deciduous teeth.

Abstract Image

乳牙牙髓干细胞α7 nAChR-自噬轴在乳牙生理性牙根吸收过程中调节IL-1β的作用
乳牙生理性牙根吸收是儿童发育阶段的正常现象。以往的研究表明,炎症微环境在这一过程中起着关键作用,但具体机制仍不清楚。本研究旨在阐明α7烟碱乙酰胆碱受体(α7 nAChR)-自噬轴在乳牙生理性牙根吸收过程中参与调节炎症微环境。研究人员采集了处于不同生理性牙根吸收阶段的乳牙样本,并分离和培养了处于牙根吸收中期的乳牙牙髓干细胞(DDPSCs)。研究结果表明,在牙根吸收的中期阶段,α7 nAChR和IL-1β的表达水平升高,这表明乳牙牙髓有大量浸润。在牙根吸收的中期阶段,观察到DDPSCs中IL-1β和α7 nAChR的表达显著增加,其中α7 nAChR对IL-1β有调节作用。此外,有证据表明,机械应力可能是一个触发器,通过α7 nAChR调节自噬和IL-1的表达。总之,研究发现机械应激可通过α7 nAChR调节DDPSCs中的自噬,从而影响IL-1β的表达并促进炎症微环境的形成。这一机制在乳牙的生理性牙根吸收中起着至关重要的作用。关键信息:α7nAChR是通过DDPSCs自噬调节IL-1β的启动因子。机械应力可通过α7 nAChR调节DDPSCs的自噬,从而影响IL-1β的表达和乳牙生理性牙根吸收过程中炎性微环境的形成。
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来源期刊
Journal of Molecular Medicine-Jmm
Journal of Molecular Medicine-Jmm 医学-医学:研究与实验
CiteScore
9.30
自引率
0.00%
发文量
100
审稿时长
1.3 months
期刊介绍: The Journal of Molecular Medicine publishes original research articles and review articles that range from basic findings in mechanisms of disease pathogenesis to therapy. The focus includes all human diseases, including but not limited to: Aging, angiogenesis, autoimmune diseases as well as other inflammatory diseases, cancer, cardiovascular diseases, development and differentiation, endocrinology, gastrointestinal diseases and hepatology, genetics and epigenetics, hematology, hypoxia research, immunology, infectious diseases, metabolic disorders, neuroscience of diseases, -omics based disease research, regenerative medicine, and stem cell research. Studies solely based on cell lines will not be considered. Studies that are based on model organisms will be considered as long as they are directly relevant to human disease.
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