设计具有自修复功能的外部刺激反应性牙科聚合物的策略

Ana P. Fugolin MS, PhD , Carmem S. Pfeifer PhD
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引用次数: 0

摘要

目标。多年来,对牙科聚合物的要求仅限于惯性填充腔体和恢复形状,功能和美观。无机填料体系得到了广泛的增强,以最大限度地提高机械性能,优化精加工和抛光工艺。替代光引发剂体系的发展也改善了碳-碳双键转化,提高了生物相容性、耐磨性和耐污性。然而,尽管取得了可喜的进展,但牙科修复体的临床寿命仍然有限,并且它们的更换是世界范围内牙科诊所最常见的手术。在过去的几年里,具有适应生理刺激潜力的材料的发展已经成为将牙科聚合物提升到更高水平的关键一步。在这种情况下,使用具有自我修复特性的聚合物网络来控制微裂纹的传播是一种提高牙齿修复寿命的有吸引力的策略。本文综述了口腔外源自愈聚合物的研究现状,为其进一步发展提供了新的思路。介绍了自愈聚合物体系的一般分类,重点介绍了目前用于抑制牙用聚合物微裂纹扩展和恢复其结构完整性和韧性的外在策略。检索策略使用PubMed、b谷歌Scholar和Scopus数据库进行电子检索。仅包括用英文发表的关于外源性自愈聚合物体系的研究。自修复材料在牙科领域仍处于起步阶段,未来的可能性几乎是无限的。尽管口腔是一个独特的环境,修复材料必须经受化学、物理和机械方面的挑战,这限制了一些可能损害其物理化学性能的策略的使用,但仍有无数未开发的机会来克服当前系统的挑战,并推动该领域的发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Strategies to design extrinsic stimuli-responsive dental polymers capable of autorepairing

Strategies to design extrinsic stimuli-responsive dental polymers capable of autorepairing

Objectives. For many years, the requirements for dental polymers were limited to inertially filling the cavity and restoring form, function, and esthetics. Inorganic filler systems were widely enhanced to maximize the mechanical properties and optimize finishing and polishing procedures. The development of alternative photoinitiator systems also improved the carbon-carbon double bond conversion, increasing biocompatibility, wear, and stain resistance. However, despite laudable progress, the clinical life span of dental restorations is still limited, and their replacement is the most common procedure in dental offices worldwide. In the last few years, the development of materials with the potential to adapt to physiological stimuli has emerged as a key step to elevating dental polymers to a higher excellence level. In this context, using polymeric networks with self-healing properties that allow for the control of the propagation of microcracks is an appealing strategy to boost the lifetime of dental restorations. This review aims to report the current state-of-the-art of extrinsic self-healing dental polymers and provide insights to open new avenues for further developments. General classification of the self-healing polymeric systems focusing on the current extrinsic strategies used to inhibit microcracks propagation in dental polymers and recover their structural integrity and toughness are presented.

Search Strategy

An electronic search was perfomed using PubMed, Google Scholar, and Scopus databases. Only studies published in English on extrinsic self-healing polymeric systems were included.

Overall Conclusions

Self-healing materials are still in their infancy in dentistry, and the future possibilities are almost limitless. Although the mouth is a unique environment and the restorative materials have to survive chemical, physical, and mechanical challenges, which limits the use of some strategies that might compromise their physicochemical performance, there are countless untapped opportunities to overcome the challenges of the current systems and advance the field.

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来源期刊
JADA foundational science
JADA foundational science Dentistry, Oral Surgery and Medicine
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