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Tooth Tissue Engineering: Optimal Dental Stem Cell Harvest Based on Tooth Development

机译:牙齿组织工程:基于牙齿发育的最佳牙科干细胞收获

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摘要

Our long-term objective is to devise reliable methods to generate biological replacement teeth exhibiting the physical properties and functions of naturally formed human teeth. Previously, we demonstrated the successful use of tissue engineering approaches to generate small, bioengineered tooth crowns from harvested pig and rat postnatal dental stem cells (DSCs). To facilitate characterizations of human DSCs, we have developed a novel radiographic staging system to accurately correlate human third molar tooth developmental stage with anticipated harvested DSC yield. Our results demonstrated that DSC yields were higher in less developed teeth (Stages 1 and 2), and lower in more developed teeth (Stages 3, 4, and 5). The greatest cell yields and colony-forming units (CFUs) capability was obtained from Stages 1 and 2 tooth dental pulp. We conclude that radiographic developmental staging can be used to accurately assess the utility of harvested human teeth for future dental tissue engineering applications.
机译:我们的长期目标是设计可靠的方法来生成具有自然形态和人类牙齿物理特性和功能的生物替代牙齿。以前,我们证明了成功使用组织工程学方法从收获的猪和大鼠产后牙干细胞(DSC)生成小的生物工程化的牙冠。为了促进人类DSC的表征,我们开发了一种新颖的射线照相分期系统,以将人类第三磨牙的发育阶段与预期的DSC产量准确相关。我们的结果表明,不发达牙齿(阶段1和2)的DSC产量较高,而较发达牙齿(阶段3、4和5)的DSC产量较低。从第1阶段和第2阶段牙髓获得最大的细胞产量和菌落形成单位(CFU)能力。我们得出的结论是,放射线发育阶段可用于准确评估收获的人类牙齿在未来牙科组织工程应用中的效用。

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