Islam Md Aminul, Hossain Nayem, Hossain Sumaya, Khan Fardin, Hossain Saniya, Arup Md Mostafizur Rahman, Chowdhury Mohammad Asaduzzaman, Rahman Md Majibur
Department of Mechanical Engineering, International University of Business Agriculture and Technology, Dhaka, Dhaka, Bangladesh.
Department of Mechanical Engineering, International University of Business Agriculture and Technology, Dhaka, Dhaka, Bangladesh.
Int Dent J. 2025 Jun;75(3):2272-2313. doi: 10.1016/j.identj.2024.11.020. Epub 2025 Jan 10.
Hydroxyapatite nanoparticles (HANPs) are becoming increasingly crucial in dental implant applications as they are highly compatible with biological systems, actively support biological processes, and closely resemble bone minerals. This review covers the latest progress in how HANPs are made, studied, and used in dentistry. It looks at critical methods for creating HANPs, such as sol-gel, microwave hydrothermal synthesis, and biomimetic approaches, and how they affect the particles' size, structure, and activity. The green synthesis method illustrated a new door to synthesize HAp for maintaining biocompatibilityand increasing antibacterial properties. The review also explores how HANPs improve the integration of implants with bone, support bone growth, and help treat sensitive teeth based on various laboratory and clinical studies. The usage of HAp in dentin and enamel shows higher potentiality through FTIR, XPS, XRD, EDS, etc., for mechanical stability and biological balance compared to natural teeth. Additionally, the use of HANPs in dental products like toothpaste and mouthwash is discussed, highlighting its potential to help rebuild tooth enamel and fight bacteria. There are some challenges for long-term usage against oral bacteria, but doping with inorganic materials, like Zn, has already solved this periodontal problem. Much more research is still essential to estimate the fabrication variation based on patient problems and characteristics. Still, it has favorable outcomes regarding its bioactive nature and antimicrobial properties. Due to their compatibility with biological tissues and ability to support bone growth, HANPs hold great promise for advancing dental materials and implant technology, potentially leading to better dental care and patient outcomes.
羟基磷灰石纳米颗粒(HANPs)在牙科植入应用中变得越来越重要,因为它们与生物系统具有高度兼容性,能积极支持生物过程,且与骨矿物质极为相似。本综述涵盖了HANPs在牙科领域的制备、研究和应用方面的最新进展。它探讨了制备HANPs的关键方法,如溶胶 - 凝胶法、微波水热合成法和仿生方法,以及这些方法如何影响颗粒的尺寸、结构和活性。绿色合成方法为合成具有生物相容性并增强抗菌性能的羟基磷灰石开辟了一条新途径。该综述还基于各种实验室和临床研究,探讨了HANPs如何改善植入物与骨的整合、支持骨生长以及帮助治疗敏感牙齿。与天然牙齿相比,通过傅里叶变换红外光谱(FTIR)、X射线光电子能谱(XPS)、X射线衍射(XRD)、能谱仪(EDS)等手段,羟基磷灰石在牙本质和牙釉质中的应用在机械稳定性和生物平衡方面显示出更高的潜力。此外,还讨论了HANPs在牙膏和漱口水等牙科产品中的应用,突出了其有助于重建牙釉质和对抗细菌的潜力。长期对抗口腔细菌存在一些挑战,但用锌等无机材料进行掺杂已经解决了这个牙周问题。根据患者的问题和特征来评估制造差异仍需要更多的研究。不过,就其生物活性和抗菌性能而言,它具有良好的效果。由于它们与生物组织的兼容性以及支持骨生长的能力,HANPs在推进牙科材料和植入技术方面具有巨大潜力,可能会带来更好的牙科护理和患者治疗效果。