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接种于皮质骨-松质骨支架上培养的人牙周膜干细胞可驱动骨再生过程。

Human periodontal ligament stem cells cultured onto cortico-cancellous scaffold drive bone regenerative process.

作者信息

Diomede F, Zini N, Gatta V, Fulle S, Merciaro I, D'Aurora M, La Rovere R M, Traini T, Pizzicannella J, Ballerini P, Caputi S, Piattelli A, Trubiani O

机构信息

Department of Medical, Oral and Biotechnological Sciences, University "G. d'Annunzio" Chieti-Pescara, Via dei Vestini 31, 66100 Chieti,

出版信息

Eur Cell Mater. 2016 Sep 16;32:181-201. doi: 10.22203/ecm.v032a12.

Abstract

The purpose of this work was to test, in vitro and in vivo, a new tissue-engineered construct constituted by porcine cortico-cancellous scaffold (Osteobiol Dual Block) (DB) and xeno-free ex vivo culture of human Periodontal Ligament Stem Cells (hPDLSCs). hPDLSCs cultured in xeno-free media formulation preserved the stem cells' morphological features, the expression of stemness and pluripotency markers, and their ability to differentiate into mesenchymal lineage. Transmission electron microscopy analysis suggested that after one week of culture, both noninduced and osteogenic differentiation induced cells joined and grew on DB secreting extracellular matrix (ECM) that in osteogenic induced samples was hierarchically assembled in fibrils. Quantitative RT-PCR (qRT-PCR) showed the upregulation of key genes involved in the bone differentiation pathway in both differentiated and undifferentiated hPDLSCs cultured with DB (hPDLSCs/DB). Functional studies revealed a significant increased response of calcium transients in the presence of DB, both in undifferentiated and differentiated cells stimulated with calcitonin and parathormone, suggesting that the biomaterial could drive the osteogenic differentiation process of hPDLSCs. These data were confirmed by the increase of gene expression of L-type voltage-dependent Ca2+ (VDCCL), subunits α1C and α2D1 in undifferentiated cells in the presence of DB. In vivo implantation of the hPDLSCs/DB living construct in the mouse calvaria evidenced a precocious osteointegration and vascularisation process. Our results suggest consideration of DB as a biocompatible, osteoinductive and osteoconductive biomaterial, making it a promising tool to regulate cell activities in biological environments and for a potential use in the development of new custom-made tissue engineering.

摘要

本研究旨在体外和体内测试一种新型组织工程构建体,该构建体由猪皮质-松质骨支架(Osteobiol Dual Block,DB)和人牙周膜干细胞(hPDLSCs)的无血清体外培养物组成。在无血清培养基配方中培养的hPDLSCs保留了干细胞的形态特征、干性和多能性标志物的表达,以及它们分化为间充质谱系的能力。透射电子显微镜分析表明,培养一周后,未诱导和经成骨分化诱导的细胞均在DB上黏附并生长,分泌细胞外基质(ECM),在成骨诱导样本中,ECM以纤维状分层组装。定量逆转录聚合酶链反应(qRT-PCR)显示,在用DB培养的分化和未分化hPDLSCs(hPDLSCs/DB)中,参与骨分化途径的关键基因上调。功能研究表明,在存在DB的情况下,无论未分化还是分化的细胞,在用降钙素和甲状旁腺激素刺激时,钙瞬变反应均显著增加,这表明该生物材料可以驱动hPDLSCs的成骨分化过程。这些数据通过在存在DB的情况下未分化细胞中L型电压依赖性Ca2+(VDCCL)亚基α1C和α2D1基因表达的增加得到证实。将hPDLSCs/DB活性构建体体内植入小鼠颅骨,证实了早期骨整合和血管化过程。我们的结果表明,DB可被视为一种生物相容性、骨诱导性和骨传导性生物材料,使其成为调节生物环境中细胞活性的有前途的工具,并有可能用于开发新型定制组织工程。

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