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通过组织工程方法用于牙髓再生的聚合物支架

Polymeric Scaffolds Used in Dental Pulp Regeneration by Tissue Engineering Approach.

作者信息

Sugiaman Vinna K, Naliani Silvia, Pranata Natallia, Djuanda Rudy, Saputri Rosalina Intan

机构信息

Department of Oral Biology, Faculty of Dentistry, Maranatha Christian University, Bandung 40164, West Java, Indonesia.

Department of Pediatric Dentistry, Faculty of Dentistry, Jenderal Achmad Yani University, Cimahi 40531, West Java, Indonesia.

出版信息

Polymers (Basel). 2023 Feb 21;15(5):1082. doi: 10.3390/polym15051082.

Abstract

Currently, the challenge in dentistry is to revitalize dental pulp by utilizing tissue engineering technology; thus, a biomaterial is needed to facilitate the process. One of the three essential elements in tissue engineering technology is a scaffold. A scaffold acts as a three-dimensional (3D) framework that provides structural and biological support and creates a good environment for cell activation, communication between cells, and inducing cell organization. Therefore, the selection of a scaffold represents a challenge in regenerative endodontics. A scaffold must be safe, biodegradable, and biocompatible, with low immunogenicity, and must be able to support cell growth. Moreover, it must be supported by adequate scaffold characteristics, which include the level of porosity, pore size, and interconnectivity; these factors ultimately play an essential role in cell behavior and tissue formation. The use of natural or synthetic polymer scaffolds with excellent mechanical properties, such as small pore size and a high surface-to-volume ratio, as a matrix in dental tissue engineering has recently received a lot of attention because it shows great potential with good biological characteristics for cell regeneration. This review describes the latest developments regarding the usage of natural or synthetic scaffold polymers that have the ideal biomaterial properties to facilitate tissue regeneration when combined with stem cells and growth factors in revitalizing dental pulp tissue. The utilization of polymer scaffolds in tissue engineering can help the pulp tissue regeneration process.

摘要

目前,牙科领域面临的挑战是利用组织工程技术使牙髓再生;因此,需要一种生物材料来推动这一进程。组织工程技术的三个基本要素之一是支架。支架作为三维(3D)框架,提供结构和生物支持,并为细胞激活、细胞间通讯以及诱导细胞组织形成创造良好环境。因此,支架的选择是再生牙髓治疗中的一项挑战。支架必须安全、可生物降解且具有生物相容性,免疫原性低,并且必须能够支持细胞生长。此外,它必须具备适当的支架特性,包括孔隙率水平、孔径和连通性;这些因素最终在细胞行为和组织形成中起着至关重要的作用。使用具有优异机械性能(如小孔径和高表面积与体积比)的天然或合成聚合物支架作为牙科组织工程中的基质,最近受到了广泛关注,因为它在细胞再生方面具有良好的生物学特性,显示出巨大潜力。本综述描述了天然或合成支架聚合物使用方面的最新进展,这些聚合物具有理想的生物材料特性,与干细胞和生长因子结合时,有助于在牙髓组织再生中促进组织再生。在组织工程中使用聚合物支架有助于牙髓组织再生过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6a8f/10007583/596288ca0043/polymers-15-01082-g001.jpg

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