首页> 美国卫生研究院文献>PLoS Clinical Trials >Umbilical Cord Wharton’s Jelly Repeated Culture System: A New Device and Method for Obtaining Abundant Mesenchymal Stem Cells for Bone Tissue Engineering
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Umbilical Cord Wharton’s Jelly Repeated Culture System: A New Device and Method for Obtaining Abundant Mesenchymal Stem Cells for Bone Tissue Engineering

机译:脐带沃顿氏胶冻重复培养系统:一种用于获取用于骨组织工程的大量间充质干细胞的新装置和方法

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摘要

To date, various types of cells for seeding regenerative scaffolds have been used for bone tissue engineering. Among seed cells, the mesenchymal stem cells derived from human umbilical cord Wharton’s jelly (hUCMSCs) represent a promising candidate and hold potential for bone tissue engineering due to the the lack of ethical controversies, accessibility, sourced by non-invasive procedures for donors, a reduced risk of contamination, osteogenic differentiation capacities, and higher immunomodulatory capacity. However, the current culture methods are somewhat complicated and inefficient and often fail to make the best use of the umbilical cord (UC) tissues. Moreover, these culture processes cannot be performed on a large scale and under strict quality control. As a result, only a small quantity of cells can be harvested using the current culture methods. To solve these problems, we designed and evaluated an UC Wharton’s jelly repeated culture device. Using this device, hUCMSCs were obtained from the repeated cultures and their quantities and biological characteristics were compared. We found that using our culture device, which retained all tissue blocks on the bottom of the dish, the total number of obtained cells increased 15–20 times, and the time required for the primary passage was reduced. Moreover, cells harvested from the repeated cultures exhibited no significant difference in their immunophenotype, potential for multilineage differentiation, or proliferative, osteoinductive capacities, and final osteogenesis. The application of the repeated culture frame (RCF) not only made full use of the Wharton’s jelly but also simplified and specified the culture process, and thus, the culture efficiency was significantly improved. In summary, abundant hUCMSCs of dependable quality can be acquired using the RCF.
机译:迄今为止,用于种种再生支架的各种类型的细胞已经用于骨组织工程。在种子细胞中,源自人类脐带沃顿氏胶体(hUCMSC)的间充质干细胞代表了有希望的候选者,并且由于缺乏伦理争议,可及性(通过非侵入性程序提供给捐献者)获得了骨组织工程的潜力。降低污染风险,成骨分化能力和更高的免疫调节能力。但是,当前的培养方法有些复杂且效率低下,常常无法充分利用脐带(UC)组织。而且,这些培养过程不能在严格的质量控制下大规模进行。结果,使用当前的培养方法只能收获少量的细胞。为了解决这些问题,我们设计并评估了UC沃顿商学院的果冻重复培养设备。使用该装置,从重复的培养物中获得了hUCMSC,并比较了它们的数量和生物学特性。我们发现使用我们的培养装置将所有组织块保留在培养皿的底部,获得的细胞总数增加了15–20倍,并且初次传代所需的时间减少了。此外,从重复培养物中收获的细胞在其免疫表型,多谱系分化潜力或增生,骨诱导能力和最终成骨性方面无显着差异。重复培养框架(RCF)的应用不仅充分利用了沃顿商学院的果冻,而且简化并指定了培养过程,从而显着提高了培养效率。总之,可以使用RCF获得质量可靠的丰富hUCMSC。

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