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Resultados preliminares del crecimiento de tejido celular usando un bioreactor con sistema de estimulaci#x00F3;n magn#x00E9;tica

机译:使用带有磁刺激系统的生物反应器进行细胞组织生长的初步结果

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This article presents the preliminary results obtained from an earlier publication of a design study performed to integrate a cellular culture bioreactor along with an external magnetic stimulation system, which was aimed at creating ideal environmental conditions that allowed for cellular culture and cellular tissue growth to take place in three dimensions, under a sterile environment favorable for the development of bioorganic grafts which were exposed to controlled electromagnetic fields. Cellular tissue was used from cellular lines of Normal Human Skin Fibroblast (NHSF) and was seeded on bio-synthetic scaffolds synthesized from polylactic acid (PLA) and Chitosan mixtures. The cellular tissue covered scaffold was then introduced into the cellular culture bioreactor, subsequently it was filled with cellular culture medium and put under dynamic flow conditions in while at the same time using the external magnetic stimulation system to irradiate the cellular tissue with controlled magnetic fields. The results present static tests of cell growth where the maximum change in growth was after 48 hours when the cells were exposed to a 1 mT, 60 Hz magnetic field; they proliferated at a rate of 52% without Chitosan, 75% with Chitosan and 53% under dynamic flow versus the non-exposed cellular tissue. These results have allowed us to continue our experimentation techniques to evaluate changes in 3-dimensional growth of magnetically stimulated tissues under dynamic flow.
机译:本文介绍了从设计研究的较早出版物中获得的初步结果,该研究旨在将细胞培养生物反应器与外部磁刺激系统整合在一起,旨在创造理想的环境条件,使细胞培养和细胞组织得以生长在三个维度上,在无菌环境下有利于生物有机移植物的发展,这些生物移植物暴露于受控的电磁场中。使用来自正常人皮肤成纤维细胞(NHSF)的细胞系的细胞组织,并将其接种在由聚乳酸(PLA)和壳聚糖混合物合成的生物合成支架上。然后将细胞组织覆盖的支架引入细胞培养生物反应器中,随后将其充满细胞培养基并置于动态流动条件下,同时使用外部磁刺激系统以受控的磁场照射细胞组织。结果显示了细胞生长的静态测试,其中当细胞暴露于1 mT,60 Hz磁场中时,生长的最大变化发生在48小时后。与未暴露的细胞组织相比,无壳聚糖时它们的增殖率为52%,有壳聚糖时为75%,在动态流动下为53%。这些结果使我们能够继续进行实验技术,以评估在动态流动下磁刺激组织的3维生长变化。

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