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无机微量元素在牙本质磷灰石组织中的功能作用-第三部分:硒、氟、银和硼。

Functional role of inorganic trace elements in dentin apatite tissue-part III: Se, F, Ag, and B.

机构信息

Director, Biomaterial 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;72:126990. doi: 10.1016/j.jtemb.2022.126990. Epub 2022 May 12.

Abstract

Dentin hydroxyapatite possesses a unique versatile structure which allows it to undergo ionic substitutions. Trace elements play pivotal roles within the oral cavity, especially in dentin apatite tissue. Therefore, it is critical to explore the role of these elements in dentin apatite structure. The roles of other inorganic elements in dentin apatite were discussed in part I (Mg, Sr, Zn, and Fe) and part II (Cu, Mn, Si, and Li) of these series. In the last part of the review series, the role of selenium, fluorine, silver, and boron in the regulation of dentin apatite structure and function was discussed. We evaluated how these elements affect the overall size, morphology, and crystallinity of dentin apatite crystals. Moreover, we investigated the importance of these elements in regulating the solubility of dentin apatite. An electronic search was performed on the role of these trace elements in dentin apatite from January 2010 to January 2022. The concentration of selenium in teeth has been explored only recently, particularly its incorporation into dentin apatite. Silver nanomaterials inhibit the growth of cariogenic microorganisms as well as arrest the degradation of collagen. Fluorine was found to have important roles in dentin remineralization and dentinal tubule occlusion, making it widely used for hydroxyapatite doping. Boron is critical for mineralized tissues like bone, dentin, and enamel, but its exact role in dentin apatite is unknown. Therefore, understanding the impact of these elements on dentin apatite is potentially transformative, as it may help to fill a significant knowledge gap in teeth mechanics.

摘要

牙本质羟磷灰石具有独特的多功能结构,使其能够进行离子取代。微量元素在口腔内起着至关重要的作用,尤其是在牙本质磷灰石组织中。因此,探索这些元素在牙本质磷灰石结构中的作用至关重要。本系列的第一部分(Mg、Sr、Zn 和 Fe)和第二部分(Cu、Mn、Si 和 Li)讨论了其他无机元素在牙本质磷灰石中的作用。在综述系列的最后一部分,讨论了硒、氟、银和硼在调节牙本质磷灰石结构和功能中的作用。我们评估了这些元素如何影响牙本质磷灰石晶体的整体大小、形态和结晶度。此外,我们研究了这些元素在调节牙本质磷灰石溶解度中的重要性。从 2010 年 1 月到 2022 年 1 月,对这些痕量元素在牙本质磷灰石中的作用进行了电子检索。最近才探索了牙齿中硒的浓度,特别是其在牙本质磷灰石中的掺入。银纳米材料抑制致龋微生物的生长并阻止胶原蛋白的降解。氟在牙本质再矿化和牙本质小管闭塞中具有重要作用,使其广泛用于羟磷灰石掺杂。硼对骨骼、牙本质和牙釉质等矿化组织至关重要,但它在牙本质磷灰石中的具体作用尚不清楚。因此,了解这些元素对牙本质磷灰石的影响具有潜在的变革性,因为它可能有助于填补牙齿力学方面的一个重大知识空白。

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