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Enhancing metabolic activity and differentiation potential in adipose mesenchymal stem cells via high-resolution surface-acoustic-wave contactless patterning

机译:通过高分辨率表面声波非接触式模式增强脂肪间充质干细胞的代谢活性和分化潜力

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摘要

Acoustofluidics has shown great potential for label-free bioparticle patterning with excellent biocompatibility. Acoustofluidic patterning enables the induction of cell-cell interactions, which play fundamental roles in organogenesis and tissue development. One of the current challenges in tissue engineering is not only the control of the spatial arrangement of cells but also the preservation of cell patterns over time. In this work, we developed a standing surface acoustic wave-based platform and demonstrated its capability for the well-controlled and rapid cell patterning of adipose-derived mesenchymal stem cells in a high-density homogenous collagen hydrogel. This biocompatible hydrogel is easily UV crosslinked and can be retrieved within 3 min. Acoustic waves successfully guided the cells toward pressure nodal lines, creating a contactless alignment of cells in 90) 48 h after acoustic induction. Moreover, 45.53 and 30.85 increases in metabolic activity were observed in growth and differentiation media, respectively, on Day 7. On Day 14, a 32.03 change in metabolic activity was observed using growth media, and no significant difference was observed using differentiation media. The alkaline phosphatase activity showed an increase of 80.89 and 24.90 on Days 7 and 14, respectively, for the acoustically patterned cells in the hydrogel. These results confirm the preservation of cellular viability and improved cellular functionality using the proposed high-resolution acoustic patterning technique and introduce unique opportunities for the application of stem cell regenerative patches for the emerging field of tissue engineering.
机译:声流体在具有出色生物相容性的无标记生物颗粒图案化方面显示出巨大的潜力。声流体模式能够诱导细胞间相互作用,这在器官发生和组织发育中起着重要作用。组织工程目前面临的挑战之一不仅是控制细胞的空间排列,而且是细胞模式随时间推移的保存。在这项工作中,我们开发了一种基于立面声波的平台,并展示了其在高密度均质胶原水凝胶中对脂肪来源的间充质干细胞进行良好控制和快速细胞模式化的能力。这种生物相容性水凝胶易于紫外线交联,可在 3 分钟内取出。声波成功地将细胞引导至压力节点线,在培养基中 90%) 降低。此外,在第 7 天,生长和分化培养基中的代谢活性分别增加了 45.53% 和 30.85%。第14天,使用生长培养基观察代谢活性变化32.03%,使用分化培养基未观察到显著差异。碱性磷酸酶活性分别提高80.89%和24.在第 7 天和第 14 天,水凝胶中声学图案化的细胞分别为 90%。这些结果证实了使用所提出的高分辨率声学图案化技术可以保持细胞活力并改善细胞功能,并为干细胞再生贴片在新兴组织工程领域的应用提供了独特的机会。

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