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首页> 外文期刊>Stem Cell Research & Therapy >Adenovirus-mediated transfer of hepatocyte growth factor gene to human dental pulp stem cells under good manufacturing practice improves their potential for periodontal regeneration in swine
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Adenovirus-mediated transfer of hepatocyte growth factor gene to human dental pulp stem cells under good manufacturing practice improves their potential for periodontal regeneration in swine

机译:在良好生产规范下,腺病毒介导的肝细胞生长因子基因向人牙髓干细胞的转移提高了猪的牙周再生潜能

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摘要

Periodontitis is one of the most widespread infectious diseases in humans. We previously promoted significant periodontal tissue regeneration in swine models with the transplantation of autologous periodontal ligament stem cells (PDLSCs) and PDLSC sheet. We also promoted periodontal tissue regeneration in a rat model with a local injection of allogeneic bone marrow mesenchymal stem cells. The purpose of the present study is to investigate the roles of the hepatocyte growth factor (HGF) and human dental pulp stem cells (DPSCs) in periodontal tissue regeneration in swine. In the present study, we transferred an adenovirus that carried HGF gene into human DPSCs (HGF-hDPSCs) under good manufacturing practice (GMP) conditions. These cells were then transplanted into a swine model for periodontal regeneration. Twenty miniature pigs were used to generate periodontitis with bone defect of 5?mm in width, 7?mm in length, and 3?mm in depth. After 12?weeks, clinical, radiological, quantitative and histological assessment of regenerated periodontal tissues was performed to compare periodontal regeneration in swine treated with cell implantation. Our study showed that injecting HGF-hDPSCs into this large animal model could significantly improve periodontal bone regeneration and soft tissue healing. A hDPSC or HGF-hDPSC sheet showed superior periodontal tissue regeneration compared to the injection of dissociated cells. However, the sheets required surgical placement; thus, they were suitable for surgically-managed periodontitis treatments. The adenovirus-mediated transfer of the HGF gene markedly decreased hDPSC apoptosis in a hypoxic environment or in serum-free medium, and it increased blood vessel regeneration. This study indicated that HGF-hDPSCs produced under GMP conditions significantly improved periodontal bone regeneration in swine; thus, this method represents a potential clinical application for periodontal regeneration.
机译:牙周炎是人类中最普遍的传染病之一。我们先前通过自体牙周膜干细胞(PDLSC)和PDLSC片的移植促进了猪模型中重要的牙周组织再生。我们还通过局部注射同种异体骨髓间充质干细胞促进了大鼠模型中牙周组织的再生。本研究的目的是研究肝细胞生长因子(HGF)和人牙髓干细胞(DPSC)在猪牙周组织再生中的作用。在本研究中,我们在良好生产规范(GMP)条件下将携带HGF基因的腺病毒转移到人DPSC(HGF-hDPSCs)中。然后将这些细胞移植到猪模型中进行牙周再生。用二十只小型猪产生牙周炎,其骨缺损为宽度5?mm,长度7?mm和深度3?mm。 12周后,对再生的牙周组织进行临床,放射学,定量和组织学评估,以比较经细胞植入治疗的猪的牙周再生。我们的研究表明,向这种大型动物模型中注射HGF-hDPSCs可以显着改善牙周骨再生和软组织愈合。与注射解离的细胞相比,hDPSC或HGF-hDPSC片材表现出优异的牙周组织再生能力。但是,这些床单需要手术放置。因此,它们适用于外科治疗的牙周炎治疗。在缺氧环境或无血清培养基中,腺病毒介导的HGF基因转移显着降低了hDPSC凋亡,并增加了血管再生。这项研究表明,在GMP条件下产生的HGF-hDPSCs显着改善了猪的牙周骨再生。因此,该方法代表了牙周再生的潜在临床应用。

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