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Controlled Generation of Microspheres Incorporating Extracellular Matrix Fibrils for Three-Dimensional Cell Culture

机译:可控制的微球结合细胞外基质纤维用于三维细胞培养

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摘要

A growing body of evidence suggests that studying cell biology in classical two-dimensional formats, such as cell culture plasticware, results in misleading, non-physiological findings. This paper describes the optimization of a microsphere-based system permitting 3D cell culture incorporating physiological extracellular matrix components. Bio-electrospraying, the most advanced method currently available, is used to produce microspheres containing THP-1 cells as a model cell line. The bio-electrospraying para­meters of nozzle size, polymer flow rate, and voltage are systematically investigated in order to allow stable production of size-controlled microspheres containing extracellular matrix material and human cells. The effect of bio-electrospraying parameters, alginate type and cell concentration on cell viability are investigated using trypan blue and propidium iodide staining. Bio-electrospraying has no effect on cell viability nor the ability of cells to proliferate. Cell viability is similarly minimally affected by encapsulation in all types of alginate tested (MVM, MVG, chemical and food-grade). Cell density of 5 × 106 cells mL−1 within microspheres is the optimum for cell survival and proliferation. The stable generation of microspheres incorporating cells and extracellular matrix for use in a 3D cell culture will benefit study of many diverse diseases and permit investigation of cellular biology within a 3D matrix.
机译:越来越多的证据表明,以经典的二维格式研究细胞生物学(例如细胞培养塑料制品)会产生误导性的非生理学发现。本文介绍了基于微球的系统的优化,该系统允许3D细胞培养结合了生理学的细胞外基质成分。生物电喷雾是目前可用的最先进的方法,用于生产包含THP-1细胞作为模型细胞系的微球。为了使包含细胞外基质材料和人类细胞的受尺寸控制的微球稳定生产,系统地研究了喷嘴尺寸,聚合物流速和电压的生物电喷雾参数。使用锥虫蓝和碘化丙锭染色研究了生物电喷雾参数,藻酸盐类型和细胞浓度对细胞活力的影响。生物电喷雾对细胞活力或细胞增殖能力均无影响。同样,在所有测试类型的藻酸盐(MVM,MVG,化学和食品级)中,封装对细胞活力的影响最小。微球内5×106细胞mL-1的细胞密度是细胞存活和增殖的最佳选择。结合细胞和细胞外基质用于3D细胞培养的微球的稳定生成将有益于许多不同疾病的研究,并允许对3D基质内的细胞生物学进行研究。

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