Gronthos Stan, Arthur Agnieszka, Bartold P Mark, Shi Songtao
Mesenchymal Stem Cell Group, Division of Haematology, Institute of Medical and Veterinary Science/Hanson Institute/CSCR, University of Adelaide, Adelaide, SA, Australia.
Methods Mol Biol. 2011;698:107-21. doi: 10.1007/978-1-60761-999-4_9.
Dentinal repair in teeth occurs through the activity of specialized cells known as odontoblasts that are thought to be maintained by a precursor population associated with the perivascular cells within dental pulp tissue. We have previously isolated candidate dental pulp stem cells (DPSC) from adult human third molars, with the ability to generate clonogenic cell clusters (CFU-F: colony-forming units-fibroblastic), a high proliferation rate, and multi-potential differentiation in vitro. When cultured DPSC are transplanted into immunocompromised mice, they generated a dentin-like structure lined with human odontoblast-like cells that surrounded a pulp-like interstitial tissue, composed of collagen and a vascular network. The present protocol describes a methodology to generate highly purified preparations of human DPSC. This process involves the enzymatic digestion of fresh samples of human dental pulp tissue followed by the isolation of DPSC using magnetic bead cell separation, based on their expression of mesenchymal stem cell associated markers.
牙齿中的牙本质修复通过一种称为成牙本质细胞的特殊细胞的活动来实现,这些细胞被认为由与牙髓组织内血管周围细胞相关的前体细胞群维持。我们之前已从成人第三磨牙中分离出候选牙髓干细胞(DPSC),其具有生成克隆细胞集落(CFU-F:成纤维细胞集落形成单位)的能力、高增殖率以及体外多能分化能力。当将培养的DPSC移植到免疫缺陷小鼠体内时,它们会形成一种牙本质样结构,该结构内衬有类似人成牙本质细胞的细胞,这些细胞围绕着由胶原蛋白和血管网络组成的牙髓样间质组织。本方案描述了一种生成高度纯化的人DPSC制剂的方法。这个过程包括对新鲜人牙髓组织样本进行酶消化,然后基于间充质干细胞相关标志物的表达,使用磁珠细胞分离法分离DPSC。