Department of Dental Regenerative Medicine, Center of Advanced Medicine for Dental and Oral Diseases, National Center for Geriatrics and Gerontology, Research Institute, 35 Gengo, Morioka, Obu, Aichi 474-8511, Japan.
Biomaterials. 2013 Dec;34(36):9036-47. doi: 10.1016/j.biomaterials.2013.08.011. Epub 2013 Aug 27.
Human dental pulp stem cells (DPSCs) contain subsets of progenitor/stem cells with high angiogenic, neurogenic and regenerative potential useful for cell therapy. It is essential to develop a safe and efficacious method to isolate the clinical-grade DPSCs subsets from a small amount of pulp tissue without using conventional flow cytometry. Thus, a method for isolation of DPSCs subsets based on their migratory response to optimized concentration of 100 ng/ml of granulocyte-colony stimulating factor (G-CSF) was determined in this study. The DPSCs mobilized by G-CSF (MDPSCs) were enriched for CD105, C-X-C chemokine receptor type 4 (CXCR-4) and G-CSF receptor (G-CSFR) positive cells, demonstrating stem cell properties including high proliferation rate and stability. The absence of abnormalities/aberrations in karyotype and lack of tumor formation after transplantation in an immunodeficient mouse were demonstrated. The conditioned medium of MDPSCs exhibited anti-apoptotic activity, enhanced migration and immunomodulatory properties. Furthermore, transplantation of MDPSCs accelerated vasculogenesis in an ischemic hindlimb model and augmented regenerated pulp tissue in an ectopic tooth root model compared to that of colony-derived DPSCs, indicating higher regenerative potential of MDPSCs. In conclusion, this isolation method for DPSCs subsets is safe and efficacious, having utility for potential clinical applications to autologous cell transplantation.
人牙髓干细胞 (DPSCs) 包含具有高血管生成、神经生成和再生潜力的祖细胞/干细胞亚群,可用于细胞治疗。重要的是要开发一种安全有效的方法,从少量牙髓组织中分离出临床级别的 DPSCs 亚群,而无需使用传统的流式细胞术。因此,本研究旨在确定一种基于其对优化浓度 100ng/ml 粒细胞集落刺激因子 (G-CSF) 的迁移反应来分离 DPSCs 亚群的方法。G-CSF 动员的 DPSCs(MDPSCs)富含 CD105、C-X-C 趋化因子受体 4 (CXCR-4) 和 G-CSF 受体 (G-CSFR) 阳性细胞,表现出包括高增殖率和稳定性在内的干细胞特性。证明了其核型无异常/畸变,且在免疫缺陷小鼠移植后无肿瘤形成。MDPSCs 的条件培养基具有抗凋亡活性、增强的迁移和免疫调节特性。此外,与集落衍生的 DPSCs 相比,MDPSCs 的移植可加速缺血性后肢模型中的血管生成,并增强异位牙根模型中的再生牙髓组织,表明 MDPSCs 具有更高的再生潜力。总之,这种 DPSCs 亚群的分离方法安全有效,可用于自体细胞移植的潜在临床应用。