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使用热敏水凝胶快速转移内皮细胞片及其对治疗性血管生成的影响。

Rapid transfer of endothelial cell sheet using a thermosensitive hydrogel and its effect on therapeutic angiogenesis.

机构信息

Department of Bioengineering, Hanyang University , 17 Haengdang-dong, Seongdong-gu, Seoul 133-791, Republic of Korea.

出版信息

Biomacromolecules. 2013 Dec 9;14(12):4309-19. doi: 10.1021/bm4011744. Epub 2013 Nov 27.

Abstract

In this study, thermosensitive hydrogels incorporated with multiple cell-interactive factors were developed as a substrate to form monolayer of human umbilical vein endothelial cells (HUVECs) that can be detached and transferrable to target sites as a cell-sheet in response to temperature change. The cell adhesive peptide (RGD) and growth factor (bFGF) covalently incorporated within the hydrogel significantly enhanced adhesion and proliferation of HUVECs, allowing for the formation of their confluent monolayer. Meanwhile, the precisely controllable change in the size of the hydrogels was observed by a repeated increase and decrease in temperature from 37 to 4 °C. By exploiting this unique behavior, the detachment and transfer of HUVEC sheet confluently cultured at 37 °C was rapidly induced within 10 min by expansion of the hydrogels when the temperature was decreased to 4 °C. The transferred cell sheet was highly viable and maintained robust cell-cell junction. Finally, the process of cell sheet transfer was directly applied onto an ischemic injury in the hind limb of mice. The transplanted HUVECs as a sheet retarded tissue necrosis over 14 days in comparison with that of direct injection of the same number of cells. Our results suggest that the developed multifunctional Tetronic-tyramine hydrogels could serve as an ideal substrate to modulate the formation of an endothelial cell layer that could potentially be utilized to treat peripheral arterial disease.

摘要

在这项研究中,开发了一种掺入多种细胞相互作用因子的温敏水凝胶作为基底,以单层形式形成人脐静脉内皮细胞(HUVEC),当温度发生变化时,这些细胞可以作为细胞片层从基底上脱落并转移到靶部位。水凝胶中共价结合的细胞黏附肽(RGD)和生长因子(bFGF)显著增强了 HUVEC 的黏附和增殖,从而形成其致密的单层。同时,通过将温度从 37°C 反复升高和降低到 4°C,可以观察到水凝胶大小的精确可控变化。利用这种独特的行为,当温度降低到 4°C 时,水凝胶的体积扩大,可在 10 分钟内迅速诱导在 37°C 下培养的 HUVEC 片层的脱落和转移。转移的细胞片层具有高度活力,并保持了强健的细胞-细胞连接。最后,直接将细胞片层转移过程应用于小鼠后肢的缺血损伤。与直接注射相同数量的细胞相比,移植的 HUVEC 作为片层可在 14 天内延缓组织坏死。我们的结果表明,开发的多功能 Tetronic-酪胺水凝胶可用作调节内皮细胞层形成的理想基底,可能用于治疗外周动脉疾病。

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