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首页> 外文期刊>Acta biomaterialia >Thermosensitive polymeric matrices for three-dimensional cell culture strategies.
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Thermosensitive polymeric matrices for three-dimensional cell culture strategies.

机译:用于三维细胞培养策略的热敏聚合物基质。

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摘要

A completely new strategy for cell culture focusing on the design of three-dimensional (3D) smart surfaces by supercritical fluid technology has been developed. This approach might overcome the limitations on cell expansion and proliferation of currently existing techniques. An alternative technology, based on supercritical carbon dioxide, was used to polymerize poly(N-isopropylacrylamide) (PNIPAAm) and to foam poly(D,L-lactic acid) (P(D,L)LA), creating a thermosensitive 3D structure which has proven to have potential as a substrate for cell growth and expansion. We demonstrated that the thermosensitive matrices promoted cell detachment, thus P(D,L)LA scaffolds have the potential to be used as substrates for cell growth and expansion avoiding enzymatic and mechanical methods of cell harvesting. The harvested cells were replated to evaluate their viability, which was not compromised. A major advantage of this technology is the fact that the prepared materials can be recovered and reused. Therefore, the same substrate can be recycled and reused for different batches. An indirect impact of the technology developed is related to the field of biotechnology, as this novel technology for cell expansion can be applied to any adherent cell cultures.
机译:已经开发出一种全新的细胞培养策略,该策略专注于通过超临界流体技术设计三维(3D)智能表面。该方法可以克服当前现有技术对细胞扩增和增殖的限制。一种基于超临界二氧化碳的替代技术被用于聚合聚(N-异丙基丙烯酰胺)(PNIPAAm)并发泡聚(D,L-乳酸)(P(D,L)LA),从而形成热敏3D结构事实证明它具有作为细胞生长和扩增底物的潜力。我们证明,热敏基质促进细胞脱离,因此P(D,L)LA支架有潜力用作细胞生长和扩增的底物,从而避免了酶和机械方法收集细胞。重新收集收获的细胞以评估其生存能力,这没有受到影响。该技术的主要优势在于,可以回收和重新使用准备好的材料。因此,相同的基板可以回收再利用以用于不同批次。所开发技术的间接影响与生物技术领域有关,因为这种用于细胞扩增的新技术可以应用于任何贴壁细胞培养物中。

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