Zafar Muhammad Sohail, Amin Faiza, Fareed Muhmmad Amber, Ghabbani Hani, Riaz Samiya, Khurshid Zohaib, Kumar Naresh
Department of Restorative Dentistry, College of Dentistry, Taibah University, Al Madinah, Al Munawwarah 41311, Saudi Arabia.
Department of Dental Materials, Islamic International Dental College, Riphah International University, Islamabad 44000, Pakistan.
Biomimetics (Basel). 2020 Jul 15;5(3):34. doi: 10.3390/biomimetics5030034.
Biomimetic has emerged as a multi-disciplinary science in several biomedical subjects in recent decades, including biomaterials and dentistry. In restorative dentistry, biomimetic approaches have been applied for a range of applications, such as restoring tooth defects using bioinspired peptides to achieve remineralization, bioactive and biomimetic biomaterials, and tissue engineering for regeneration. Advancements in the modern adhesive restorative materials, understanding of biomaterial-tissue interaction at the nano and microscale further enhanced the restorative materials' properties (such as color, morphology, and strength) to mimic natural teeth. In addition, the tissue-engineering approaches resulted in regeneration of lost or damaged dental tissues mimicking their natural counterpart. The aim of the present article is to review various biomimetic approaches used to replace lost or damaged dental tissues using restorative biomaterials and tissue-engineering techniques. In addition, tooth structure, and various biomimetic properties of dental restorative materials and tissue-engineering scaffold materials, are discussed.
近几十年来,仿生学已成为多个生物医学领域的多学科科学,包括生物材料和牙科。在修复牙科中,仿生方法已被应用于一系列应用,例如使用受生物启发的肽修复牙齿缺陷以实现再矿化、生物活性和仿生生物材料,以及用于再生的组织工程。现代粘结修复材料的进步,对纳米和微观尺度上生物材料与组织相互作用的理解,进一步增强了修复材料模仿天然牙齿的性能(如颜色、形态和强度)。此外,组织工程方法实现了模仿天然对应物的缺失或受损牙齿组织的再生。本文的目的是综述使用修复性生物材料和组织工程技术替代缺失或受损牙齿组织的各种仿生方法。此外,还讨论了牙齿结构以及牙科修复材料和组织工程支架材料的各种仿生特性。