Department of Periodontology, School and Hospital of Stomatology, Jilin University, Changchun 130021, PR China; Jilin Provincial Key Laboratory of Tooth Development and Bone Remodeling, School and Hospital of Stomatology, Jilin University, Changchun 130021, PR China.
Jilin Provincial Key Laboratory of Tooth Development and Bone Remodeling, School and Hospital of Stomatology, Jilin University, Changchun 130021, PR China.
Dent Mater. 2024 Aug;40(8):1282-1295. doi: 10.1016/j.dental.2024.06.013. Epub 2024 Jun 13.
This review elucidates the mechanisms underpinning intrafibrillar mineralization, examines various amorphous calcium phosphate (ACP) stabilizers employed in dentin's intrafibrillar mineralization, and addresses the challenges encountered in clinical applications of ACP-based bioactive materials.
The literature search for this review was conducted using three electronic databases: PubMed, Web of Science, and Google Scholar, with specific keywords. Articles were selected based on inclusion and exclusion criteria, allowing for a detailed examination and summary of current research on dentin remineralization facilitated by ACP under the influence of various types of stabilizers.
This review underscores the latest advancements in the role of ACP in promoting dentin remineralization, particularly intrafibrillar mineralization, under the regulation of various stabilizers. These stabilizers predominantly comprise non-collagenous proteins, their analogs, and polymers. Despite the diversity of stabilizers, the mechanisms they employ to enhance intrafibrillar remineralization are found to be interrelated, indicating multiple driving forces behind this process. However, challenges remain in effectively designing clinically viable products using stabilized ACP and maximizing intrafibrillar mineralization with limited materials in practical applications.
The role of ACP in remineralization has gained significant attention in dental research, with substantial progress made in the study of dentin biomimetic mineralization. Given ACP's instability without additives, the presence of ACP stabilizers is crucial for achieving in vitro intrafibrillar mineralization. However, there is a lack of comprehensive and exhaustive reviews on ACP bioactive materials under the regulation of stabilizers. A detailed summary of these stabilizers is also instrumental in better understanding the complex process of intrafibrillar mineralization. Compared to traditional remineralization methods, bioactive materials capable of regulating ACP stability and controlling release demonstrate immense potential in enhancing clinical treatment standards.
本综述阐明了纤维内矿化的机制,考察了牙本质纤维内矿化中使用的各种无定形磷酸钙(ACP)稳定剂,并讨论了 ACP 基生物活性材料在临床应用中遇到的挑战。
本综述的文献检索使用了三个电子数据库:PubMed、Web of Science 和 Google Scholar,并使用了特定的关键词。根据纳入和排除标准选择文章,以便对在各种稳定剂影响下 ACP 促进牙本质再矿化的最新研究进行详细检查和总结。
本综述强调了 ACP 在促进牙本质再矿化,特别是纤维内矿化方面的最新进展,特别是在各种稳定剂的调节下。这些稳定剂主要包括非胶原蛋白、其类似物和聚合物。尽管稳定剂种类繁多,但它们用于增强纤维内再矿化的机制被发现是相互关联的,表明该过程背后有多种驱动力。然而,在使用稳定的 ACP 有效设计临床可行的产品并在实际应用中用有限的材料最大限度地提高纤维内矿化方面仍然存在挑战。
ACP 在牙齿研究中的再矿化作用引起了广泛关注,牙本质仿生矿化的研究取得了重大进展。鉴于没有添加剂的 ACP 不稳定,ACP 稳定剂的存在对于实现体外纤维内矿化至关重要。然而,关于在稳定剂调节下的 ACP 生物活性材料缺乏全面和详尽的综述。这些稳定剂的详细总结对于更好地理解纤维内矿化的复杂过程也很有帮助。与传统的再矿化方法相比,能够调节 ACP 稳定性和控制释放的生物活性材料在提高临床治疗标准方面具有巨大潜力。