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设计并实验验证一种用于干细胞培养的磁性装置。

Design and experimental validation of a magnetic device for stem cell culture.

机构信息

Departamento de Patología, Facultad de Medicina y Odontología, Universitat de València, València 46010, Spain.

Instituto Tecnológico de Aragón (ITAINNOVA), Zaragoza 50018, Spain.

出版信息

Rev Sci Instrum. 2020 Dec 1;91(12):124103. doi: 10.1063/5.0016374.

Abstract

Cell culture of bone and tendon tissues requires mechanical stimulation of the cells in order to mimic their physiological state. In the present work, a device has been conceived and developed to generate a controlled magnetic field with a homogeneous gradient in the working space. The design requirement was to maximize the magnetic flux gradient, assuring a minimum magnetizing value in a 15 mm × 15 mm working area, which highly increases the normal operating range of this sort of devices. The objective is to use the machine for two types of biological tests: magnetic irradiation of biological samples and force generation on paramagnetic particles embedded in scaffolds for cell culture. The device has been manufactured and experimentally validated by evaluating the force exerted on magnetic particles in a viscous fluid. Apart from the magnetic validation, the device has been tested for irradiating biological samples. In this case, viability of human dental pulp stem cells has been studied in vitro after electromagnetic field exposition using the designed device. After three days of irradiation treatment, cellular microtissues showed a 59% increase in the viable cell number. Irradiated cells did not show morphological differences when compared with control cells.

摘要

骨和肌腱组织的细胞培养需要对细胞进行机械刺激,以模拟其生理状态。在本工作中,设计并开发了一种装置,以在工作空间中产生具有均匀梯度的受控磁场。设计要求是最大化磁场梯度,确保在 15mm×15mm 的工作区域内具有最小的磁化值,这极大地增加了这种装置的正常工作范围。目的是使用该机器进行两种类型的生物测试:生物样品的磁辐射和嵌入支架中的顺磁粒子产生的力,以用于细胞培养。该装置已通过评估粘性流体中磁性粒子所受的力进行了制造和实验验证。除了磁场验证之外,该装置还经过了生物样品辐照测试。在这种情况下,使用设计的装置在体外研究了电磁场暴露后人类牙髓干细胞的活力。经过三天的辐照处理后,活细胞数量增加了 59%。与对照细胞相比,辐照细胞没有表现出形态差异。

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