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使用多相支架和膜工程牙周组织界面,用于引导骨和组织再生。

Engineering periodontal tissue interfaces using multiphasic scaffolds and membranes for guided bone and tissue regeneration.

机构信息

Department of Bioengineering, Izmir Institute of Technology, Urla, Izmir 35433, Turkey.

Department of Molecular Biology and Genetics, Izmir Institute of Technology, Urla, Izmir 35433, Turkey.

出版信息

Biomater Adv. 2024 Feb;157:213732. doi: 10.1016/j.bioadv.2023.213732. Epub 2023 Dec 16.

Abstract

Periodontal diseases are one of the greatest healthcare burdens worldwide. The periodontal tissue compartment is an anatomical tissue interface formed from the periodontal ligament, gingiva, cementum, and bone. This multifaceted composition makes tissue engineering strategies challenging to develop due to the interface of hard and soft tissues requiring multiphase scaffolds to recreate the native tissue architecture. Multilayer constructs can better mimic tissue interfaces due to the individually tuneable layers. They have different characteristics in each layer, with modulation of mechanical properties, material type, porosity, pore size, morphology, degradation properties, and drug-releasing profile all possible. The greatest challenge of multilayer constructs is to mechanically integrate consecutive layers to avoid delamination, especially when using multiple manufacturing processes. Here, we review the development of multilayer scaffolds that aim to recapitulate native periodontal tissue interfaces in terms of physical, chemical, and biological characteristics. Important properties of multiphasic biodegradable scaffolds are highlighted and summarised, with design requirements, biomaterials, and fabrication methods, as well as post-treatment and drug/growth factor incorporation discussed.

摘要

牙周病是全球最大的医疗保健负担之一。牙周组织间隙是由牙周韧带、牙龈、牙骨质和骨形成的解剖组织界面。这种多方面的组成使得组织工程策略难以开发,因为硬组织和软组织的界面需要多相支架来重建天然组织结构。由于可以单独调整各层的特性,多层结构可以更好地模拟组织界面。它们在各层中具有不同的特性,机械性能、材料类型、孔隙率、孔径、形态、降解特性和药物释放特性都可以进行调节。多层结构的最大挑战是机械地整合连续的层以避免分层,特别是在使用多种制造工艺时。在这里,我们回顾了旨在在物理、化学和生物学特性方面再现天然牙周组织界面的多层支架的发展。强调并总结了多相可生物降解支架的重要特性,并讨论了设计要求、生物材料和制造方法以及后处理和药物/生长因子的掺入。

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