用于牙科组织再生的屏障膜。

Jun-Ichi Sasaki, Gabriela L Abe, Aonan Li, Pasiree Thongthai, Ririko Tsuboi, Tomoki Kohno, Satoshi Imazato
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引用次数: 0

摘要

背景:在牙科领域,屏障膜用于引导组织再生(GTR)和引导骨再生(GBR)。市场上有各种膜,并对新型膜进行了广泛的研究和开发。一般来说,膜需要具有屏障功能、生物安全性、生物兼容性和适当的机械性能。此外,膜还应具有生物活性,以促进组织再生。目的:本综述旨在根据牙科用阻隔膜的成分,整理现有和已研究过的阻隔膜的基本特征。结果:屏障膜的主要成分分为不可生物降解材料和可生物降解材料。非生物降解膜由合成聚合物、金属或这些材料的复合材料制成。最早报道的阻隔膜是由膨体聚四氟乙烯(e-PTFE)制成的。钛也被用于牙科再生治疗,并显示出良好的屏障功能。生物降解膜主要由天然和合成聚合物制成。胶原蛋白是常用的材料,通过交联处理后可用于临床。脂肪族聚酯及其共聚物最近也被引入到 GTR 和 GBR 治疗中。此外,为了提高可生物降解膜的组织再生功能和机械强度,在研究阶段还加入了磷酸钙和生物活性玻璃等无机材料。结论:目前,在 GTR 和 GBR 中选择屏障膜的指导原则仍然不足,因此牙医需要了解屏障膜的特性。
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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Barrier membranes for tissue regeneration in dentistry.

Background: In dentistry, barrier membranes are used for guided tissue regeneration (GTR) and guided bone regeneration (GBR). Various membranes are commercially available and extensive research and development of novel membranes have been conducted. In general, membranes are required to provide barrier function, biosafety, biocompatibility and appropriate mechanical properties. In addition, membranes are expected to be bioactive to promote tissue regeneration. Objectives: This review aims to organize the fundamental characteristics of the barrier membranes that are available and studied for dentistry, based on their components. Results: The principal components of barrier membranes are divided into nonbiodegradable and biodegradable materials. Nonbiodegradable membranes are manufactured from synthetic polymers, metals or composites of these materials. The first reported barrier membrane was made from expanded polytetrafluoroethylene (e-PTFE). Titanium has also been applied for dental regenerative therapy and shows favorable barrier function. Biodegradable membranes are mainly made from natural and synthetic polymers. Collagens are popular materials that are processed for clinical use by cross-linking. Aliphatic polyesters and their copolymers have been relatively recently introduced into GTR and GBR treatments. In addition, to improve the tissue regenerative function and mechanical strength of biodegradable membranes, inorganic materials such as calcium phosphate and bioactive glass have been incorporated at the research stage. Conclusions: Currently, there are still insufficient guidelines for barrier membrane choice in GTR and GBR, therefore dentists are required to understand the characteristics of barrier membranes.

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