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血管化组织工程室中大鼠功能性牙髓细胞的存活。

Survival of rat functional dental pulp cells in vascularized tissue engineering chambers.

机构信息

Department of Restorative Dentistry and Periodontology, Faculty of Dentistry, Chiang Mai University, Chiang Mai, Thailand.

出版信息

Tissue Cell. 2012 Apr;44(2):111-21. doi: 10.1016/j.tice.2011.12.003. Epub 2012 Jan 31.

Abstract

Regenerative endodontics aims to preserve, repair or regenerate the dental pulp tissue. Dental pulp stem cells, have a potential use in dental tissue generation. However, specific requirements to drive the dental tissue generation are still obscured. We established an in vivo model for studying the survival of dental pulp cells (DPC) and their potential to generate dental pulp tissue. DPC were mixed with collagen scaffold with or without slow release bone morphogenic protein 4 (BMP-4) and fibroblast growth factor 2 (FGF2). The cell suspension was transplanted into a vascularized tissue engineering chamber in the rat groin. Tissue constructs were harvested after 2, 4, 6, and 8 weeks and processed for histomorphological and immunohistochemical analysis. After 2 weeks newly formed tissue with new blood vessel formation were observed inside the chamber. DPC were found around dentin, particularly around the vascular pedicle and also close to the gelatin microspheres. Cell survival, was confirmed up to 8 weeks after transplantation. Dentin Sialophosphoprotein (DSPP) positive matrix production was detected in the chamber, indicating functionality of dental pulp progenitor cells. This study demonstrates the potential of our tissue engineering model to study rat dental pulp cells and their behavior in dental pulp regeneration, for future development of an alternative treatment using these techniques.

摘要

牙髓再生旨在保存、修复或再生牙髓组织。牙髓干细胞在牙齿组织生成中具有潜在的应用价值。然而,驱动牙齿组织生成的具体要求仍不清楚。我们建立了一个体内模型来研究牙髓细胞(DPC)的存活及其生成牙髓组织的潜力。将牙髓细胞与胶原支架混合,或与缓释骨形态发生蛋白 4(BMP-4)和纤维生长因子 2(FGF2)混合。细胞悬液被移植到大鼠腹股沟的血管化组织工程室中。在 2、4、6 和 8 周后收获组织构建体,并进行组织形态学和免疫组织化学分析。2 周后,在室内观察到新形成的组织和新的血管形成。DPC 被发现存在于牙本质周围,特别是在血管蒂周围,也靠近明胶微球。移植后 8 周仍能确认细胞存活。在室内检测到牙本质涎磷蛋白(DSPP)阳性基质的产生,表明牙髓祖细胞具有功能。本研究证明了我们的组织工程模型在研究大鼠牙髓细胞及其在牙髓再生中的行为方面的潜力,为未来使用这些技术开发替代治疗方法提供了依据。

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