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Journal of Zhejiang University SCIENCE B
ISSN 1673-1581(Print), 1862-1783(Online), Monthly
2026 Vol.27 No.3 P.207-224
Roles of Wnt signaling pathway in cementum formation, cementum regeneration, and cementocyte function
Abstract: Cementum, a mineralized connective tissue that covers the tooth root, is crucial in protecting the root from resorption, maintaining occlusal relationships, and supporting tooth function. Cementocytes are embedded within the cementum matrix and extend dendritic processes through the canaliculi. They are thought to be mechanosensitive, responding to changes in mechanical loading, and are physiologically responsive cells associated with the formation of cellular cementum in response to variations in functional demands on the tooth. The wingless and int (Wnt) signaling pathway, which controls cell fate and regulates growth, development, and homeostasis in the body, plays a pivotal regulatory role in normal biological development and disease progression. Currently, the mechanisms by which the Wnt signaling pathway influences cementogenesis and regeneration remain controversial. Research findings on the roles of Wnt/β-catenin signaling in cementoblast differentiation and function have been mixed. Some studies indicate that activating this pathway enhances cementoblast differentiation, while others suggest that Wnt signaling may inhibit it, favoring cell proliferation instead. This paper reviews the structure and physiological roles of cementum, focusing on how Wnt signaling influences the growth and differentiation of cementoblasts. We emphasize the pivotal role of the Wnt pathway in cementum formation and development, as well as in root resorption and repair, and hypothesize that maintaining low Wnt/β-catenin levels is crucial to achieving an optimal balance between cementoblast proliferation and differentiation. Finally, we propose periodontal regeneration treatment strategies based on the Wnt signaling pathway and suggest future research directions.
Key words: Dental cementum; Odontogenesis; Wingless and int (Wnt) signaling pathway; Cell differentiation; Biomineralization
1口腔疾病防治全国重点实验室 / 国家口腔医学中心 / 口腔疾病国家临床医学研究中心 / 四川大学华西口腔医院正畸科, 中国成都市, 610041
2上海交通大学医学院附属第九人民医院口腔正畸科, 上海交通大学口腔医学院, 国家口腔医学中心, 国家口腔疾病临床医学研究中心, 上海市口腔医学重点实验室, 中国上海市, 200011
3印第安纳大学医学院肌肉骨骼健康中心, 解剖学、细胞生物学与生理学和骨科外科学系, 美国印第安纳波利斯, 46202
摘要:牙骨质作为覆盖在牙根表面的一层矿化结缔组织,是保护牙根不被吸收,维持咬合关系和牙齿支持功能的组织基础。牙骨质细胞嵌于牙骨质基质内,通过小管结构延伸出树突状突起。该细胞具有机械敏感性,能够响应机械负荷变化,是参与形成细胞性牙骨质的生理性响应细胞,可根据牙齿功能需求的变化进行适应性调整。Wnt信号通路作为调控机体细胞命运、生长发育及稳态的重要通路,在生物发育与疾病进程中均发挥着关键调控作用。目前,Wnt信号通路对牙骨质生成及再生的影响机制仍存争议,且关于Wnt/β-catenin信号在牙骨质细胞分化及功能中的作用,研究结果不一。部分研究表明该通路的激活可促进成牙骨质细胞分化,而另一些研究则认为Wnt信号可能通过抑制分化促进其增殖。本文对牙骨质的结构特征与生理功能进行系统综述;重点探讨了Wnt信号对成牙骨质细胞生长分化的影响机制,明确其在牙骨质形成、发育及牙根吸收修复中的关键作用;并推测低水平Wnt/β-catenin活性的维持对实现成牙骨质细胞增殖与分化的动态平衡至关重要;最后,提出了基于Wnt信号通路的牙周再生治疗策略,并对未来研究方向进行展望。
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DOI:
10.1631/jzus.B2400637
CLC number:
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On-line Access:
2026-03-18
Received:
2024-12-17
Revision Accepted:
2025-03-26
Crosschecked:
2026-03-18