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无机微量元素在牙本质磷灰石中的功能作用——第二部分:铜、锰、硅和锂。

Functional role of inorganic trace elements in dentin apatite-Part II: Copper, manganese, silicon, and lithium.

机构信息

Director, Biomaterial and Prosthodontics Laboratory and Assistant Professor, Department of Restorative Dentistry, Rutgers School of Dental Medicine, Newark, NJ, United States; Adjunct Assistant Professor, Department of Endodontics, University of the Pacific, Arthur A. Dugoni School of Dentistry, San Francisco, CA, United States.

Visiting Researcher, Sector of Angiogenesis Regenerative Medicine, Dr. Hajar Afsar Lajevardi Research Cluster (DHAL), Hackensack, NJ, United States; Pre-Dental Student, Rutgers School of Dental Medicine, Newark, NJ, United States.

出版信息

J Trace Elem Med Biol. 2022 Jul;72:126995. doi: 10.1016/j.jtemb.2022.126995. Epub 2022 May 7.

Abstract

Trace elements are recognized as being essential in dentin and bone apatite. The effects of zinc, strontium, magnesium, and iron were discussed in part I. In part II, we evaluated the functional role of copper, manganese, silicon, and lithium on dentin apatite, with critical effects on morphology, crystallinity, and solubility. An electronic search was performed on the role of these trace elements in dentin apatite from January 2000 to January 2022. The recent aspects of the relationship between four different trace elements and their critical role in the structure and mechanics of dentin were assessed. These findings show that elements play a vital role in the human body, especially in the crystalline structure of dentin apatite. Copper presents immense benefits in dental restorative biomaterials because of its importance in enhancing odontogenesis. The biological role of manganese in dentin apatite is still largely unknown, but it has gained attention for many of its broad physiological functions such as modulating osteoblast proliferation, differentiation, and metabolism in bones. The functional role of silicon in dentin apatite is similarly lacking, but findings reveal its importance in mineralization and collagen formation, making it useful for the field of restorative dentistry. Likewise, lithium was found to have important roles in dentin mineralization as well as in the formation of dentin bridges and tissues. Therefore, there is growing importance in studying the aforementioned elements in the context of dentin apatite.

摘要

微量元素被认为是牙本质和骨磷灰石中的必需元素。锌、锶、镁和铁的作用在第一部分进行了讨论。在第二部分中,我们评估了铜、锰、硅和锂对牙本质磷灰石的功能作用,这些元素对形态、结晶度和溶解度有重要影响。从 2000 年 1 月到 2022 年 1 月,我们对这些微量元素在牙本质磷灰石中的作用进行了电子检索。评估了四个不同微量元素之间的近期关系及其在牙本质结构和力学中的关键作用。这些发现表明,这些元素在人体中起着至关重要的作用,尤其是在牙本质磷灰石的晶体结构中。铜在牙科修复生物材料中具有巨大的益处,因为它在增强牙发生方面很重要。锰在牙本质磷灰石中的生物学作用在很大程度上仍然未知,但由于其在骨骼中调节成骨细胞增殖、分化和代谢等广泛的生理功能而受到关注。硅在牙本质磷灰石中的功能作用也同样缺乏,但研究结果表明其在矿化和胶原形成中的重要性,使其在修复牙科领域具有应用价值。同样,锂在牙本质矿化以及牙本质桥和组织的形成中也具有重要作用。因此,研究牙本质磷灰石中上述元素的重要性日益增加。

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