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Transportation of transplantable cell sheets fabricated with temperature-responsive culture surfaces for regenerative medicine

机译:运输具有温度响应性培养表面的可移植细胞片用于再生医学的运输

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Here we report transportation of cell sheets fabricated on temperature-responsive culture surfaces for regenerative medicine. On the surfaces cells adhere, spread and proliferate at 37 °C, but upon temperature reduction below 32 °C all the cells are spontaneously detached. When cells on the surfaces are challenged by long distance transportation, maintaining the temperature is critical. Therefore, we developed a portable homothermal container to keep the inner temperature at 36 °C for >30 h without any need for batteries or energy supply. We transported and compared fibroblast sheets cultured on temperature-responsive surfaces in the container, at room temperature in a car, or on ice. After 8 h transportation by car, all cells at room temperature and on ice were detached from the surfaces and some were folded and broken into tiny pieces. On the other hand, fibroblast sheets transported in the container retained their adhesion to the dish surfaces and intact cell sheets were successfully harvested by temperature reduction. During the transportation, cell viability and histology were not impaired. This unique transportation device would be useful for cell sheet-based regenerative medicine utilizing temperature-responsive culture surfaces.
机译:在这里,我们报道了在温度响应性培养表面上制备的用于再生医学的细胞片的运输。细胞在37°C的表面粘附,扩散并增殖,但是当温度降低到32°C以下时,所有细胞都会自发脱落。当表面细胞受到长距离运输的挑战时,保持温度至关重要。因此,我们开发了一种便携式等温容器,可将内部温度在36°C的温度下保持30小时以上,而无需电池或能源。我们运输并比较了在容器中,室温下,在汽车上或在冰上的温度敏感表面上培养的成纤维细胞片。开车运输8小时后,所有在室温和冰上的细胞都从表面分离,一些细胞折叠并破碎成小块。另一方面,在容器中运输的成纤维细胞片仍保持其与培养皿表面的粘附力,并且通过降低温度成功收集完整的细胞片。在运输过程中,细胞活力和组织学均未受损。这种独特的运输设备对于利用温度响应性培养表面的基于细胞片的再生医学将非常有用。

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