Microfabrication approaches for oral research and clinical dentistry

IF 1.5 Q3 DENTISTRY, ORAL SURGERY & MEDICINE
Paola Tiozzo-Lyon, Matías Andrade, C. Leiva-Sabadini, José Morales, Antonia Olivares, A. Ravasio, S. Aguayo
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引用次数: 1

Abstract

Currently, there is a variety of laboratory tools and strategies that have been developed to investigate in-vivo processes using in-vitro models. Amongst these, microfabrication represents a disruptive technology that is currently enabling next-generation biomedical research through the development of complex laboratory approaches (e.g., microfluidics), engineering of micrometer scale sensors and actuators (micropillars for traction force microscopy), and the creation of environments mimicking cell, tissue, and organ-specific contexts. Although microfabrication has been around for some time, its application in dental and oral research is still incipient. Nevertheless, in recent years multiple lines of research have emerged that use microfabrication-based approaches for the study of oral diseases and conditions with micro- and nano-scale sensitivities. Furthermore, many investigations are aiming to develop clinically relevant microfabrication-based applications for diagnostics, screening, and oral biomaterial manufacturing. Therefore, the objective of this review is to summarize the current application of microfabrication techniques in oral sciences, both in research and clinics, and to discuss possible future applications of these technologies for in-vitro studies and practical patient care. Initially, this review provides an overview of the most employed microfabrication methods utilized in biomedicine and dentistry. Subsequently, the use of micro- and nano-fabrication approaches in relevant fields of dental research such as endodontic and periodontal regeneration, biomaterials research, dental implantology, oral pathology, and biofilms was discussed. Finally, the current and future uses of microfabrication technology for clinical dentistry and how these approaches may soon be widely available in clinics for the diagnosis, prevention, and treatment of relevant pathologies are presented.
口腔研究和临床牙科的微加工方法
目前,已经开发了各种实验室工具和策略来使用体外模型研究体内过程。其中,微制造是一种颠覆性技术,目前正通过开发复杂的实验室方法(如微流体)、微米级传感器和致动器(牵引力显微镜的微柱)的工程,以及创建模拟细胞、组织和器官特定环境的环境,实现下一代生物医学研究。尽管微加工已经存在了一段时间,但其在牙科和口腔研究中的应用仍处于起步阶段。然而,近年来出现了多个研究领域,使用基于微制造的方法来研究具有微米和纳米灵敏度的口腔疾病和条件。此外,许多研究旨在开发基于临床相关微制造的诊断、筛选和口腔生物材料制造应用。因此,本综述的目的是总结微加工技术在口腔科学研究和临床中的当前应用,并讨论这些技术未来在体外研究和实际患者护理中的可能应用。最初,这篇综述概述了生物医学和牙科中最常用的微加工方法。随后,讨论了微米和纳米制备方法在牙科研究相关领域的应用,如牙髓和牙周再生、生物材料研究、牙种植学、口腔病理学和生物膜。最后,介绍了微加工技术在临床牙科中的当前和未来应用,以及这些方法如何很快在临床上广泛用于相关病理的诊断、预防和治疗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
2.10
自引率
0.00%
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0
审稿时长
13 weeks
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