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ROS 介导体细胞增生与成釉细胞 RhoA/ROCK 下调所致釉质形成障碍的颈环细胞替代现象。

ROS-Mediated Enamel Formation Disturbance Characterized by Alternative Cervical Loop Cell Proliferation and Downregulation of RhoA/ROCK in Ameloblasts.

机构信息

State Key Laboratory of Oral Diseases, West China Hospital of Stomatology, Sichuan University, 610041 Chengdu, China.

National Clinical Research Center for Oral Diseases, West China Hospital of Stomatology, Sichuan University, 610041 Chengdu, China.

出版信息

Oxid Med Cell Longev. 2022 Oct 17;2022:5769679. doi: 10.1155/2022/5769679. eCollection 2022.

Abstract

Reactive oxygen stress (ROS) is generally accepted as a signal transducer for coordinating the growth and differentiation of tissues and organs in the oral and maxillofacial region. Although ROS has been confirmed to affect the development of enamel, it is not yet known that the specific mechanism of ROS accumulation induced enamel defects. Given the lack of knowledge of the role of ROS in enamel, the aim of the study is to determine how oxidative stress affects cervical cells and ameloblast cells. Using SOD1 knockout mice, we identified a relationship between ROS fluctuations and abnormal enamel structure with HE staining, micro-CT, and scanning electron microscope. Increased ROS induced by HO, certified by the DCFH probe, has resulted in a dual effect on the proliferation and differentiation of cervical cells, indicating a higher tendency to proliferate at low ROS concentrations. Ameloblasts transfected with SOD1 siRNA showed a significant reduction of RhoA and ROCK. This study investigates for the first time that SOD1-mediated ROS accumulation disrupted normal enamel structure through alternative cervical loop cell proliferation and downregulation of RhoA and ROCK in ameloblasts, demonstrating the convoluted role of ROS in monitoring the progress of enamel defects.

摘要

活性氧应激(ROS)通常被认为是协调口腔颌面部组织和器官生长和分化的信号转导物。虽然 ROS 已被证实会影响釉质的发育,但目前尚不清楚 ROS 积累诱导釉质缺陷的具体机制。鉴于对 ROS 在釉质中作用的认识不足,本研究旨在确定氧化应激如何影响颈细胞和成釉细胞。使用 SOD1 敲除小鼠,我们通过 HE 染色、微 CT 和扫描电子显微镜鉴定了 ROS 波动与异常釉质结构之间的关系。HO 诱导的 ROS 增加,通过 DCFH 探针证实,对颈细胞的增殖和分化产生了双重影响,表明在低 ROS 浓度下具有更高的增殖趋势。转染 SOD1 siRNA 的成釉细胞显示 RhoA 和 ROCK 的表达显著降低。本研究首次发现,SOD1 介导的 ROS 积累通过颈细胞的替代性增殖环破坏了正常的釉质结构,并下调了成釉细胞中的 RhoA 和 ROCK,这表明 ROS 在监测釉质缺陷进展中的作用非常复杂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f400/9592207/54d431a42675/OMCL2022-5769679.001.jpg

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