Escuela de Odontología, Facultad de Medicina - Clínica Alemana de Santiago Universidad del Desarrollo, Santiago de Chile, Chile.
Especialidad de Periodoncia, Escuela de Odontología, Facultad de Medicina - Clínica Alemana de Santiago Universidad del Desarrollo, Santiago de Chile, Chile.
J Appl Biomater Funct Mater. 2023 Jan-Dec;21:22808000231211416. doi: 10.1177/22808000231211416.
Polycaprolactone (PCL) is a highly recognized synthetic polymer for its biocompatibility, ease of fabrication and mechanical strength in bone tissue engineering. Its applications have extended broadly, including regeneration of oral and maxillofacial lost tissues. Its usefulness has brought attention of researchers to regenerate periodontal lost tissues, including alveolar bone, periodontal ligament and cementum. The aim of this systematic review was to obtain an updated analysis of the contribution of PCL-based scaffolds in the alveolar bone regeneration process.
This review adheres to the PRISMA (Preferred Reporting Items for Systematic Reviews and Meta-Analyses) guidelines for systematic reviews. A computerized search of the PubMed, EBSCO, Scielo and Web of Science databases was performed, restricting literature search to published studies in English or Spanish between January 2002 and March 2023. Database search returned 248 studies which were screened based on title, author names and publication dates.
Data from 17 studies were reviewed and tabulated. All studies combined PCL with other biomaterials (such as Alginate, hydroxyapatite, bioactive glass, poly (lactic-co-glycolic acid)), growth factors (BMP-2, rhCEMP1), and/or mesenchymal stromal cells (adipose-derived, bone marrow, periodontal ligament or gingiva mesenchymal stromal cells). PCL scaffolds showed higher cell viability and osteoinductive potential when combined with bioactive agents. Complementary, its degradation rates were affected by the addition or exposure to specific substances, such as: Dopamine, Cerium Oxide, PLGA and hydrogen peroxide.
PCL is an effective biomaterial for alveolar bone regeneration in periodontally affected teeth. It could be part of a new generation of biomaterials with improved regenerative potential.
聚己内酯(PCL)作为一种具有生物相容性、易于制造和机械强度的高度认可的合成聚合物,在骨组织工程中得到了广泛应用。其应用范围广泛,包括口腔和颌面组织的再生。它的有用性引起了研究人员的关注,以再生牙周组织,包括牙槽骨、牙周韧带和牙骨质。本系统综述的目的是对基于 PCL 的支架在牙槽骨再生过程中的作用进行更新的分析。
本综述遵循 PRISMA(系统评价和荟萃分析的首选报告项目)系统评价指南。对 PubMed、EBSCO、Scielo 和 Web of Science 数据库进行了计算机检索,限制文献检索为 2002 年 1 月至 2023 年 3 月期间以英语或西班牙语发表的研究。数据库检索返回了 248 项研究,根据标题、作者姓名和出版日期对这些研究进行了筛选。
对 17 项研究的数据进行了综述和制表。所有研究都将 PCL 与其他生物材料(如藻酸盐、羟基磷灰石、生物活性玻璃、聚(乳酸-共-乙醇酸))、生长因子(BMP-2、rhCEMP1)和/或间充质基质细胞(脂肪来源、骨髓、牙周韧带或牙龈间充质基质细胞)结合使用。当与生物活性物质结合使用时,PCL 支架显示出更高的细胞活力和成骨诱导潜力。此外,其降解率受到添加或暴露于特定物质的影响,如多巴胺、氧化铈、PLGA 和过氧化氢。
PCL 是牙周病影响的牙齿牙槽骨再生的有效生物材料。它可能是具有改善再生潜力的新一代生物材料的一部分。