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微操控细胞培养微环境可实现牙髓干细胞的长期扩增——从经济和商业角度来看。

Micromanipulation of culture niche permits long-term expansion of dental pulp stem cells--an economic and commercial angle.

机构信息

Stempeutics Research Malaysia, Sdn Bhd (773817-K) Lot 3-i-7, Enterprise 4, Technology Park Malaysia, Bukit Jalil, 57000 Kuala Lumpur, Malaysia.

出版信息

In Vitro Cell Dev Biol Anim. 2010 Oct;46(9):764-73. doi: 10.1007/s11626-010-9332-0. Epub 2010 Aug 20.

Abstract

Stem cells isolated from dental pulp possess the capacity for self-renewal and the potential for multi-lineage differentiation. However, dental pulp stem cells have different characteristics in terms of their culture conditions. The success of stem cells culture is governed by its micro-environmental niche. Therefore, we studied the effects of culture niche on long-term expansion of dental pulp stem cells in terms of cell morphology, growth kinetics, senescence pattern, cell surface marker expression differentiation capacity, and seeding plating density of dental pulp stem cells in four different, widely used media composition Among the various basal media tested, α-minimum essential media and knock out-minimum essential media supplemented with 10% fetal bovine serum were found to be the most optimal media composition in preserving the phenotypic characteristics and differentiation potential for prolonged periods as compared with DMEM-F12 and DMEM-LG. Plating density has been shown to affect overall yield. As a conclusion, the adoption of an appropriate culture system significantly improved cell yield, thus enabling the attainment of sufficient yields for therapeutic applications economizing in terms of cost of production and minimizing seeding cell density for maximum yield.

摘要

牙髓干细胞具有自我更新和多向分化的潜能。然而,牙髓干细胞的培养条件存在差异。干细胞培养的成功取决于其微环境龛。因此,我们研究了培养微环境对牙髓干细胞长期扩增的影响,包括细胞形态、生长动力学、衰老模式、细胞表面标志物表达、分化能力以及在四种不同的、广泛使用的培养基组成中牙髓干细胞的接种铺板密度。在测试的各种基础培养基中,α-最小必需培养基和无蛋白最小必需培养基中添加 10%胎牛血清被发现是最适合的培养基组成,可在延长的时间内保持表型特征和分化潜能,而 DMEM-F12 和 DMEM-LG 则不然。铺板密度已被证明会影响总体产量。总之,采用适当的培养系统可显著提高细胞产量,从而为治疗应用获得足够的产量,节约生产成本并最大限度地提高产量,降低接种细胞密度。

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