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首页> 外文期刊>Stem Cell Research & Therapy >Development of immortalized Hertwig’s epithelial root sheath cell lines for cementum and dentin regeneration
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Development of immortalized Hertwig’s epithelial root sheath cell lines for cementum and dentin regeneration

机译:制造静脉曲张的静脉牙龈根鞘细胞系,用于水泥和牙本质再生

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Hertwig's epithelial root sheath (HERS) is important in guiding tooth root formation by differentiating into cementoblasts through epithelial-mesenchymal transition (EMT) and inducing odontoblastic differentiation of dental papilla through epithelial-mesenchymal interaction (EMI) during the tooth root development. Thus, HERS cells are critical for cementum and dentin formation and might be a potential cell source to achieve tooth root regeneration. However, limited availability and lifespan of primary HERS cells may represent an obstacle for biological investigation and therapeutic use of tooth tissue engineering. Therefore, we constructed, characterized, and tested the functionality of immortalized cell lines in order to produce a more readily available alternative to HERS cells. Primary HERS cells were immortalized via infection with lentivirus vector containing the gene encoding simian virus 40 Large T Antigen (SV40LT). Immortalized HERS cell subclones were isolated using a limiting dilution method, and subclones named HERS-H1 and HERS-C2 cells were isolated. The characteristics of HERS-H1 and HERS-C2 cells, including cell proliferation, ability of epithelial-mesenchymal transformation and epithelial-mesenchymal interaction, were determined by CCK-8 assay, immunofluorescence staining, and real-time PCR. The cell differentiation into cementoblast-like cells or periodontal fibroblast-like cells was confirmed in vivo. And the inductive influence of the cell lines on dental papilla cells (DPCs) was also confirmed in vivo. HERS-H1 and HERS-C2 cells share some common features with primary HERS cells such as epithelial-like morphology, positive expression of CK14, E-Cadherin, and Vimentin, and undergoing EMT in response to TGF-beta. HERS-C2 cells showed the EMT characteristics and could differentiate into cementum-forming cells in vitro and generate cementum-like tissue in vivo. HERS-H1 could induce the differentiation of DPCs into odontoblasts in vitro and generation of dentin-like tissue in vivo. We successfully isolated and characterized novel cell lines representing two key features of HERS cells during the tooth root development and which were useful substitutes for primary HERS cells, thereby providing a biologically relevant, unlimited cell source for studies on cell biology, developmental biology, and tooth root regeneration.
机译:赫尔维格的上皮根鞘(HERS)在通过上皮 - 间充质转换(EMT)通过上皮 - 间充质转换(EMT)和通过上皮 - 间充质相互作用(EMI)在牙根发育期间诱导牙乳头的异常分化而导致牙根形成。因此,HERS细胞对豆切除和牙本质形成至关重要,并且可能是实现齿根再生的潜在细胞源。然而,主要HERS细胞的有限可用性和寿命可以代表牙齿组织工程的生物调查和治疗使用的障碍。因此,我们构建了,其特征和测试了永生化细胞系的功能,以产生更容易获得的替代品以拍打细胞。通过含有编码Simian病毒40大T抗原(SV40LT)的基因的Lentivirus载体感染初级HERS细胞。使用限制稀释方法分离不朽的HER细胞亚克酮,分离名为HERS-H1和HER-C2细胞的亚克隆。通过CCK-8测定,免疫荧光染色和实时PCR测定HER-H1和HER-C2细胞的特征,包括细胞增殖,上皮 - 间充质转化和上皮 - 间充质相互作用的能力。在体内确认细胞分化成静脉状细胞或牙周成纤维细胞样细胞。并且在体内确认了细胞系对牙科乳头细胞(DPC)的电感影响。 Hers-H1和Hers-C2细胞与初级HERS细胞共享一些常见特征,例如上皮样形态,CK14,E-CDADHERIN和VIMENIN的阳性表达,并响应TGF-β进行EMT。 HER-C2细胞显示EMT特征,并且可以在体外分化成豆类形成细胞并在体内产生水泥样组织。 HER-H1可以在体内诱导DPC的分化成牙肠细胞和产生牙本质样组织。我们成功地分离和表征了代表HERS细胞的两个关键特征的新型细胞系,其在牙根发育期间是对初级HERS细胞的有用替代品,从而提供了用于研究细胞生物学,发育生物学和牙齿的生物相关的无限细胞来源根再生。

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