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牙髓干细胞与粒细胞集落刺激因子联合治疗牙髓再生的新方法。

A novel combinatorial therapy with pulp stem cells and granulocyte colony-stimulating factor for total pulp regeneration.

机构信息

Department of Dental Regenerative Medicine, National Center for Geriatrics and Gerontology, Research Institute, Obu, Japan.

出版信息

Stem Cells Transl Med. 2013 Jul;2(7):521-33. doi: 10.5966/sctm.2012-0132. Epub 2013 Jun 12.

Abstract

Treatment of deep caries with pulpitis is a major challenge in dentistry. Stem cell therapy represents a potential strategy to regenerate the dentin-pulp complex, enabling conservation and restoration of teeth. The objective of this study was to assess the efficacy and safety of pulp stem cell transplantation as a prelude for the impending clinical trials. Clinical-grade pulp stem cells were isolated and expanded according to good manufacturing practice conditions. The absence of contamination, abnormalities/aberrations in karyotype, and tumor formation after transplantation in an immunodeficient mouse ensured excellent quality control. After autologous transplantation of pulp stem cells with granulocyte-colony stimulating factor (G-CSF) in a dog pulpectomized tooth, regenerated pulp tissue including vasculature and innervation completely filled in the root canal, and regenerated dentin was formed in the coronal part and prevented microleakage up to day 180. Transplantation of pulp stem cells with G-CSF yielded a significantly larger amount of regenerated dentin-pulp complex compared with transplantation of G-CSF or stem cells alone. Also noteworthy was the reduction in the number of inflammatory cells and apoptotic cells and the significant increase in neurite outgrowth compared with results without G-CSF. The transplanted stem cells expressed angiogenic/neurotrophic factors. It is significant that G-CSF together with conditioned medium of pulp stem cells stimulated cell migration and neurite outgrowth, prevented cell death, and promoted immunosuppression in vitro. Furthermore, there was no evidence of toxicity or adverse events. In conclusion, the combinatorial trophic effects of pulp stem cells and G-CSF are of immediate utility for pulp/dentin regeneration, demonstrating the prerequisites of safety and efficacy critical for clinical applications.

摘要

牙髓炎的深龋治疗是牙科领域的一大挑战。干细胞疗法代表了一种潜在的策略,可以再生牙本质牙髓复合体,实现牙齿的保存和修复。本研究的目的是评估牙髓干细胞移植作为即将进行的临床试验的前奏的疗效和安全性。根据良好生产规范条件分离和扩增临床级牙髓干细胞。在免疫缺陷小鼠中移植后无污染、染色体核型异常/畸变以及肿瘤形成,确保了卓越的质量控制。在自体移植含粒细胞集落刺激因子 (G-CSF) 的牙髓干细胞后,再生的牙髓组织包括血管和神经完全填充在根管中,并在冠部形成再生牙本质,防止微渗漏至 180 天。与单独移植 G-CSF 或干细胞相比,移植 G-CSF 与牙髓干细胞共培养可产生明显更多的再生牙髓复合体。值得注意的是,与没有 G-CSF 的结果相比,炎症细胞和凋亡细胞的数量减少,神经突生长显著增加。移植的干细胞表达血管生成/神经营养因子。重要的是,G-CSF 与牙髓干细胞的条件培养基共同刺激细胞迁移和神经突生长,防止细胞死亡,并在体外促进免疫抑制。此外,没有毒性或不良事件的证据。总之,牙髓干细胞和 G-CSF 的组合营养作用对牙髓/牙本质再生具有直接的效用,证明了临床应用所需的安全性和有效性的前提条件。

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