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牙齿和骨骼中的脱矿质-再矿质化动态过程。

Demineralization-remineralization dynamics in teeth and bone.

作者信息

Abou Neel Ensanya Ali, Aljabo Anas, Strange Adam, Ibrahim Salwa, Coathup Melanie, Young Anne M, Bozec Laurent, Mudera Vivek

机构信息

Division of Biomaterials, Operative Dentistry Department, Faculty of Dentistry, King Abdulaziz University, Jeddah, Saudi Arabia; Biomaterials Department, Faculty of Dentistry, Tanta University, Tanta, Egypt; Department of Biomaterials and Tissue Engineering, UCL Eastman Dental Institute, London, UK.

Department of Biomaterials and Tissue Engineering, UCL Eastman Dental Institute, London, UK.

出版信息

Int J Nanomedicine. 2016 Sep 19;11:4743-4763. doi: 10.2147/IJN.S107624. eCollection 2016.

Abstract

Biomineralization is a dynamic, complex, lifelong process by which living organisms control precipitations of inorganic nanocrystals within organic matrices to form unique hybrid biological tissues, for example, enamel, dentin, cementum, and bone. Understanding the process of mineral deposition is important for the development of treatments for mineralization-related diseases and also for the innovation and development of scaffolds. This review provides a thorough overview of the up-to-date information on the theories describing the possible mechanisms and the factors implicated as agonists and antagonists of mineralization. Then, the role of calcium and phosphate ions in the maintenance of teeth and bone health is described. Throughout the life, teeth and bone are at risk of demineralization, with particular emphasis on teeth, due to their anatomical arrangement and location. Teeth are exposed to food, drink, and the microbiota of the mouth; therefore, they have developed a high resistance to localized demineralization that is unmatched by bone. The mechanisms by which demineralization-remineralization process occurs in both teeth and bone and the new therapies/technologies that reverse demineralization or boost remineralization are also scrupulously discussed. Technologies discussed include composites with nano- and micron-sized inorganic minerals that can mimic mechanical properties of the tooth and bone in addition to promoting more natural repair of surrounding tissues. Turning these new technologies to products and practices would improve health care worldwide.

摘要

生物矿化是一个动态、复杂且贯穿终生的过程,通过这个过程,生物体控制无机纳米晶体在有机基质中的沉淀,以形成独特的混合生物组织,例如牙釉质、牙本质、牙骨质和骨骼。了解矿物质沉积过程对于开发与矿化相关疾病的治疗方法以及支架的创新和开发都很重要。这篇综述全面概述了有关描述矿化可能机制的理论以及作为矿化激动剂和拮抗剂的相关因素的最新信息。然后,描述了钙和磷酸根离子在维持牙齿和骨骼健康中的作用。在整个生命过程中,牙齿和骨骼都有脱矿的风险,由于牙齿特殊的解剖结构和位置,牙齿脱矿问题尤为突出。牙齿暴露于食物、饮料和口腔微生物群中;因此,它们对局部脱矿形成了高度抗性,这是骨骼所无法比拟的。本文还认真讨论了牙齿和骨骼中脱矿 - 再矿化过程发生的机制以及逆转脱矿或促进再矿化的新疗法/技术。所讨论的技术包括含有纳米和微米级无机矿物质的复合材料,这些复合材料除了能促进周围组织更自然的修复外,还能模拟牙齿和骨骼的力学性能。将这些新技术转化为产品和实践将改善全球的医疗保健状况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c207/5034904/f15129510757/ijn-11-4743Fig1.jpg

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