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干细胞对牙髓的再生作用。

Regeneration of dental pulp by stem cells.

作者信息

Nakashima M, Iohara K

机构信息

Center for Advanced Medicine for Dental and Oral Disease, National Center for Geriatrics and Gerontology, Research Institute, Obu, Aichi, Japan.

出版信息

Adv Dent Res. 2011 Jul;23(3):313-9. doi: 10.1177/0022034511405323.

Abstract

Angiogenesis/vasculogenesis and neurogenesis are essential for pulp regeneration. Two subfractions of side-population (SP) cells, CD31(-)/CD146(-) SP cells and CD105(+) cells with angiogenic and neurogenic potential, were isolated by flow cytometry from canine dental pulp. In an experimental model of mouse hindlimb ischemia, transplantation of these cell populations resulted in an increase in blood flow, including high-density capillary formation. In a model of rat cerebral ischemia, stem cell transplantations enhanced neuronal regeneration and recovery from motor disability. Autologous transplantation of the CD31(-)/CD146(-) SP cells into an in vivo model of amputated pulp resulted in complete regeneration of pulp tissue with vascular and neuronal processes within 14 days. The transplanted cells expressed pro-angiogenic factors, implying trophic action on endothelial cells. Autologous transplantation of CD31(-)/CD146(-) SP cells or CD105(+) cells with stromal-cell-derived factor-1 (SDF-1) into root canals after whole pulp removal of mature teeth resulted in complete regeneration of pulp replete with nerves and vasculature by day 14, followed by dentin formation along the dentinal wall by day 35. Therefore, the potential utility of fractionated SP cells and CD105(+) cells in angiogenesis and neurogenesis was demonstrated by treatment of limb and cerebral ischemia following pulpotomy and pulpectomy.

摘要

血管生成/血管发生和神经发生对于牙髓再生至关重要。通过流式细胞术从犬牙髓中分离出具有血管生成和神经发生潜能的侧群(SP)细胞的两个亚群,即CD31(-)/CD146(-) SP细胞和CD105(+)细胞。在小鼠后肢缺血的实验模型中,移植这些细胞群导致血流量增加,包括高密度毛细血管形成。在大鼠脑缺血模型中,干细胞移植增强了神经元再生并促进了运动功能障碍的恢复。将CD31(-)/CD146(-) SP细胞自体移植到牙髓切断的体内模型中,可在14天内使牙髓组织完全再生,并伴有血管和神经突起。移植的细胞表达促血管生成因子,提示对内皮细胞有营养作用。在成熟牙齿全牙髓摘除后,将CD31(-)/CD146(-) SP细胞或CD105(+)细胞与基质细胞衍生因子-1(SDF-1)自体移植到根管中,可在第14天时使充满神经和脉管系统的牙髓完全再生,到第35天时沿牙本质壁形成牙本质。因此,通过牙髓切断术和牙髓摘除术后对肢体和脑缺血的治疗,证明了分选的SP细胞和CD105(+)细胞在血管生成和神经发生中的潜在效用。

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