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由成釉细胞无血清条件培养基诱导的小鼠胚胎干细胞向牙上皮样细胞的分化。

Differentiation of mouse embryonic stem cells into dental epithelial-like cells induced by ameloblasts serum-free conditioned medium.

机构信息

Department of Orthodontics, School of Stomatology, Fourth Military Medical University, Xi'an, 710032 Shaanxi, People's Republic of China.

出版信息

Biochem Biophys Res Commun. 2010 Apr 2;394(2):342-7. doi: 10.1016/j.bbrc.2010.03.007. Epub 2010 Mar 4.

Abstract

Embryonic stem cells (ESCs) possess an intrinsic self-renewal ability and can differentiate into numerous types of functional tissue cells; however, whether ESCs can differentiate toward the odontogenic lineage is still unknown. In this study, we developed an efficient culture strategy to induce the differentiation of murine ESCs (mESCs) into dental epithelial cells. By culturing mESCs in ameloblasts serum-free conditioned medium (ASF-CM), we could induce their differentiation toward dental epithelial cell lineages; however, similar experiments with the tooth germ cell-conditioned medium (TGC-CM) did not yield effective results. After culturing the cells for 14days in the differentiation-inducing media, the expression of ameloblast-specific proteins such as cytokeratin (CK)14, ameloblastin (AMBN), and amelogenin (AMGN) was markedly higher in mESCs obtained with embryoid body (EB) formation than in mESCs obtained without EB formation. We observed that immunocompromised mice implanted with induced murine EBs (mEBs) showed tissue regenerative capacity and produced odontogenic epithelial-like structures, whereas those implanted with mSCE monolayer cells mainly formed connective tissues. Thus, for the first time, we report that ASF-CM provides a suitable microenvironment for inducing mESC differentiation along the odontogenic epithelial cell lineage. This result has important implications for tooth tissue engineering.

摘要

胚胎干细胞(ESCs)具有内在的自我更新能力,并能分化为多种功能组织细胞;然而,ESCs 是否能向牙原性谱系分化仍不清楚。在这项研究中,我们开发了一种有效的培养策略,以诱导鼠胚胎干细胞(mESCs)分化为牙上皮细胞。通过在无成釉细胞血清条件培养基(ASF-CM)中培养 mESCs,我们可以诱导其向牙上皮细胞谱系分化;然而,用牙胚细胞条件培养基(TGC-CM)进行类似的实验并没有产生有效的结果。在诱导分化培养基中培养 14 天后,与无 EB 形成的 mESCs 相比,EB 形成的 mESCs 中牙釉蛋白(CK14)、牙本质蛋白(AMBN)和釉原蛋白(AMGN)等牙釉蛋白特异性蛋白的表达明显升高。我们观察到,免疫缺陷小鼠植入诱导的鼠 EBs(mEBs)后表现出组织再生能力,并产生牙原性上皮样结构,而植入 mSCE 单层细胞的小鼠主要形成结缔组织。因此,我们首次报道 ASF-CM 为 mESC 沿着牙原性上皮细胞谱系的分化提供了合适的微环境。这一结果对牙齿组织工程具有重要意义。

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