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用于牙髓组织工程的定制自组装肽水凝胶。

A customized self-assembling peptide hydrogel for dental pulp tissue engineering.

机构信息

Department of Restorative Dentistry and Periodontology, University of Regensburg, Regensburg, Germany.

出版信息

Tissue Eng Part A. 2012 Jan;18(1-2):176-84. doi: 10.1089/ten.TEA.2011.0222. Epub 2011 Oct 3.

Abstract

Root canal therapy is common practice in dentistry. During this procedure, the inflamed or necrotic dental pulp is removed and replaced with a synthetic material. However, recent research provides evidence that engineering of dental pulp and dentin is possible by using biologically driven approaches. As tissue engineering strategies hold the promise to soon supersede conventional root canal treatment, there is a need for customized scaffolds for stem cell delivery or recruitment. We hypothesize that the incorporation of dental pulp-derived stem cells with bioactive factors into such a scaffold can promote cell proliferation, differentiation, and angiogenesis. In this study, we used a cell adhesive, enzyme-cleavable hydrogel made from self-assembling peptide nanofibers to encapsulate dental pulp stem cells. The growth factors (GFs) fibroblast growth factor basic, transforming growth factor β1, and vascular endothelial growth factor were incorporated into the hydrogel via heparin binding. Release profiles were established, and the influence of GFs on cell morphology and proliferation was assessed to confirm their bioactivity after binding and subsequent release. Cell morphology and spreading in three-dimensional cultures were visualized by using cell tracker and histologic stains. Subcutaneous transplantation of the hydrogel within dentin cylinders into immunocompromised mice led to the formation of a vascularized soft connective tissue similar to dental pulp. These data support the use of this novel biomaterial as a highly promising candidate for future treatment concepts in regenerative endodontics.

摘要

根管治疗是牙科的常规实践。在这个过程中,发炎或坏死的牙髓被清除,并用合成材料代替。然而,最近的研究提供了证据,表明通过使用生物驱动的方法,可以对牙髓和牙本质进行工程设计。由于组织工程策略有望很快取代传统的根管治疗,因此需要用于干细胞输送或募集的定制支架。我们假设将牙髓来源的干细胞与生物活性因子结合到这种支架中可以促进细胞增殖、分化和血管生成。在这项研究中,我们使用了一种细胞黏附的、酶可裂解的水凝胶,由自组装肽纳米纤维制成,用于封装牙髓干细胞。成纤维细胞生长因子基本、转化生长因子 β1 和血管内皮生长因子通过肝素结合被掺入水凝胶中。建立了释放曲线,并评估了生长因子对细胞形态和增殖的影响,以确认它们在结合和随后释放后的生物活性。通过细胞示踪剂和组织学染色来可视化三维培养中的细胞形态和扩散。将水凝胶植入免疫缺陷小鼠的牙本质圆柱内,导致类似于牙髓的血管化软连接组织的形成。这些数据支持使用这种新型生物材料作为再生牙髓学中未来治疗概念的有前途的候选物。

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