当前牙科用陶瓷生物材料化学结构和生物安全性的生物力学考虑因素:技术现状回顾与展望。

IF 1.1 Q3 DENTISTRY, ORAL SURGERY & MEDICINE
Gennaro Musella, Andrea Ballini, Michele DI Cosola, Alessandro Motta, Tommaso Dai Prà, Fariba Esperouz, Mario Dioguardi, Lorenzo Lo Muzio, Gaetano Illuzzi, Maria E Bizzoca
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引用次数: 0

摘要

生物材料是指任何材料、非药物或合成或天然来源的物质组合,可在任何时期单独使用或作为一个系统的一部分使用,以达到治疗、辅助生长或替代人体组织、器官或功能的目的。它是一种与生物系统相互作用的不可持续材料。生物材料在生产之前需要经过一系列步骤,其中包括1)确定该材料要解决的问题(治疗、替代器械、美学原因);2)设计装置、材料的组成和控制(机械性能、毒性、生物反应、耐腐蚀性、与蛋白质、细胞和组织的相互作用)、制造、消毒和标准化;3)控制装置(在实验动物、体外)的临床研究;4)监测其在体内、体外和病人体内的长期使用情况。对陶瓷材料的研究正在不断发展,由于陶瓷材料可以是多孔的或玻璃状的,它们在医学和生物技术领域都有应用,因为它们可以用作填充物、覆盖材料和支架。因此,陶瓷生物材料不仅被广泛应用于整形外科和颌面外科领域,还被广泛应用于牙科领域的义齿修复。通过材料监测技术,我们可以监测空间的三维发展,以及陶瓷中的缺陷或微裂缝。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Biomechanical considerations of chemical structure and biosafety of current ceramic biomaterials for dentistry: review and outlook of the current state of the art.

Biomaterial refers to any material, non-pharmaceutical or combination of substances of synthetic or natural origin used for any period independently or as part of a system for the purpose of healing, assisting the growth or replacement of tissues, organs or functions of the body. It is an unsustainable material that interacts with biological systems. Before being produced a biomaterial goes through a sequence of steps, which includes: 1) the definition of the problem that the material will be called to solve (treatment, replacement of the instrument, aesthetic reasons); 2) design of the device, composition and control of materials (mechanical properties, toxicity, biological response, corrosion resistance, interaction with proteins, cells and tissues), manufacture, sterilization and standardization; 3) control of the device (in experimental animals, in vitro) clinical studies, studies; and 4) monitor its long-term use in vivo, in vitro and in patients. Research for ceramic materials is evolving and because they can be porous or glassy, they find applications in medicine and biotechnology, as they can be used as fillers, covering materials and scaffolds. Therefore, ceramic biomaterials are widely used not only in the field of orthopedic and maxillofacial surgery but also in dentistry as for dental prostheses. Materials monitoring technologies allow us to monitor the three-dimensional development in space, as well as imperfections or micro-cracks in the ceramic.

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来源期刊
Minerva dental and oral science
Minerva dental and oral science DENTISTRY, ORAL SURGERY & MEDICINE-
CiteScore
2.50
自引率
5.00%
发文量
61
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