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Temperature-responsive intelligent interfaces for biomolecular separation and cell sheet engineering.用于生物分子分离和细胞片工程的温度响应智能界面。
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Hypoxia and stem cell-based engineering of mesenchymal tissues.缺氧与间充质组织的干细胞工程
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Stem cell fate dictated solely by altered nanotube dimension.干细胞命运仅由改变的纳米管尺寸决定。
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Scaffolding in tissue engineering: general approaches and tissue-specific considerations.组织工程中的支架:一般方法与组织特异性考量
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Myogenic Induction of Aligned Mesenchymal Stem Cell Sheets by Culture on Thermally Responsive Electrospun Nanofibers.通过在热响应性电纺纳米纤维上培养实现定向间充质干细胞片的成肌诱导
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Hypoxic preconditioning results in increased motility and improved therapeutic potential of human mesenchymal stem cells.低氧预处理可提高人间充质干细胞的运动能力并改善其治疗潜力。
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Osteogenic matrix sheet-cell transplantation using osteoblastic cell sheet resulted in bone formation without scaffold at an ectopic site.使用成骨细胞片进行的成骨基质片-细胞移植在异位部位无支架的情况下实现了骨形成。
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A thermoresponsive, microtextured substrate for cell sheet engineering with defined structural organization.一种用于细胞片工程的具有特定结构组织的热响应性微纹理基质。
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低氧张力和合成纳米光栅提高了人骨髓间充质干细胞层的均一性和干性。

Low oxygen tension and synthetic nanogratings improve the uniformity and stemness of human mesenchymal stem cell layer.

机构信息

Department of Biomedical Engineering, Duke University, Durham, North Carolina, USA.

出版信息

Mol Ther. 2010 May;18(5):1010-8. doi: 10.1038/mt.2010.21. Epub 2010 Feb 23.

DOI:10.1038/mt.2010.21
PMID:20179678
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2890122/
Abstract

A free-standing, robust cell sheet comprising aligned human mesenchymal stem cells (hMSCs) offers many interesting opportunities for tissue reconstruction. As a first step toward this goal, a confluent, uniform hMSC layer with a high degree of alignment and stemness maintenance needs to be created. Hypothesizing that topographical cue and a physiologically relevant low-oxygen condition could promote the formation of such an hMSC layer, we studied the culture of hMSCs on synthetic nanogratings (350 nm width and 700 nm pitch) and either under 2 or 20% O(2). Culturing hMSCs on the nanogratings highly aligned the cells, but it tended to create patchy layers and accentuate the hMSC differentiation. The 2% O(2) improved the alignment and uniformity of hMSCs, and reduced their differentiation. Over a 14-day culture period, hMSCs in 2% O(2) showed uniform connexon distribution, secreted abundant extracellular matrix (ECM) proteins, and displayed a high progenicity. After 21-day culture on nanogratings, hMSCs exposed to 2% O(2) maintained a higher viability and differentiation capacity. This study established that a 2% O(2) culture condition could restrict the differentiation of hMSCs cultured on nanopatterns, thereby setting the foundation to fabricate a uniformly aligned hMSC sheet for different regenerative medicine applications.

摘要

一个独立的、强健的细胞片层,包含排列整齐的人骨髓间充质干细胞(hMSCs),为组织重建提供了许多有趣的机会。作为实现这一目标的第一步,需要创建一个具有高度定向性和干细胞维持能力的、融合的、均匀的 hMSC 层。我们假设拓扑线索和生理相关的低氧条件可以促进这种 hMSC 层的形成,因此研究了 hMSCs 在合成纳米光栅(350nm 宽和 700nm 间距)上培养,并在 2%或 20% O2 下培养。在纳米光栅上培养 hMSCs 可以高度定向细胞,但往往会形成斑片状层并强调 hMSC 的分化。2% O2 提高了 hMSCs 的定向性和均匀性,并减少了其分化。在 14 天的培养过程中,2% O2 中的 hMSCs 表现出均匀的连接蛋白分布,分泌丰富的细胞外基质(ECM)蛋白,并具有较高的原性。在纳米光栅上培养 21 天后,暴露于 2% O2 的 hMSCs 保持更高的活力和分化能力。这项研究确立了 2% O2 的培养条件可以限制在纳米图案上培养的 hMSCs 的分化,从而为制造用于不同再生医学应用的均匀定向 hMSC 片奠定了基础。