Kang Kyung-Jung, Lee Min Suk, Moon Chan-Woong, Lee Jae-Hoon, Yang Hee Seok, Jang Young-Joo
Department of Nanobiomedical Science and BK21 PLUS Global Research Center for Regenerative Medicine, Dankook University, 29 Anseo-Dong, Cheonan 330-714, Republic of Korea.
Department of Oral and Maxillofacial Surgery, College of Dentistry, Dankook University, 29 Anseo-Dong, Cheonan 330-714, Republic of Korea.
Stem Cells Int. 2017;2017:2416254. doi: 10.1155/2017/2416254. Epub 2017 Jun 28.
Human dental pulp cells have been known to have the stem cell features such as self-renewal and multipotency. These cells are differentiated into hard tissue by addition of proper cytokines and biomaterials. Hydroxyapatite-tricalcium phosphates (HA-TCPs) are essential components of hard tissue and generally used as a biocompatible material in tissue engineering of bone. Demineralized dentin matrix (DDM) has been reported to increase efficiency of bone induction. We compared the efficiencies of osteogenic differentiation and in vivo bone formation of HA-TCP and DDM on human dental pulp stem cells (hDPSCs). DDM contains inorganic components as with HA-TCP, and organic components such as collagen type-1. Due to these components, osteoinduction potential of DDM on hDPSCs was remarkably higher than that of HA-TCP. However, the efficiencies of in vivo bone formation are similar in HA-TCP and DDM. Although osteogenic gene expression and bone formation in immunocompromised nude mice were similar levels in both cases, dentinogenic gene expression level was slightly higher in DDM transplantation than in HA-TCP. All these results suggested that in vivo osteogenic potentials in hDPSCs are induced with both HA-TCP and DDM by osteoconduction and osteoinduction, respectively. In addition, transplantation of hDPSCs/DDM might be more effective for differentiation into dentin.
众所周知,人牙髓细胞具有自我更新和多能性等干细胞特征。通过添加适当的细胞因子和生物材料,这些细胞可分化为硬组织。羟基磷灰石-磷酸三钙(HA-TCPs)是硬组织的重要组成部分,通常用作骨组织工程中的生物相容性材料。据报道,脱矿牙本质基质(DDM)可提高骨诱导效率。我们比较了HA-TCP和DDM对人牙髓干细胞(hDPSCs)的成骨分化效率和体内骨形成情况。DDM含有与HA-TCP一样的无机成分以及诸如I型胶原等有机成分。由于这些成分,DDM对hDPSCs的骨诱导潜能显著高于HA-TCP。然而,HA-TCP和DDM在体内骨形成的效率相似。尽管在免疫缺陷裸鼠中,两种情况下的成骨基因表达和骨形成水平相似,但DDM移植中的牙本质生成基因表达水平略高于HA-TCP。所有这些结果表明,hDPSCs在体内的成骨潜能分别通过骨传导和骨诱导由HA-TCP和DDM诱导产生。此外,hDPSCs/DDM移植可能对分化为牙本质更有效。