三维细胞培养用纳米多孔半球形微壳阵列的制备

Byeong Hee Tae, E. Han, B. Kim, Se Hyong Lee, Y. Seo
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引用次数: 0

摘要

近年来,许多研究报道了与非实质细胞共培养以提高肿瘤细胞的功能表达和活性在共培养中,微孔阵列用于三维细胞培养,纳米孔膜用于细胞间的生物分子交换,同时分离两种细胞利用纳米孔膜分离了两种类型的细胞,并鉴定了它们对细胞间生物分子交换的影响。先前的研究是与商用聚合物纳米孔膜共培养,其局限性是低孔隙率(小于4%)和高厚度(大于10 μm)。为了克服这个问题,提出了一种纳米多孔阳极氧化铝薄膜(NAAM),采用高纯度铝板(99.999%)进行细胞共培养。NAAM用于NIH3T3细胞和HepG2细胞共培养时,白蛋白比市产膜高约1.7倍。通过这个实验,证实了用NAAM共培养可以有效的提高癌细胞的功能表达和活性采用纳米多孔半球形微壳阵列(NHMA)进行三维细胞培养,以发挥纳米多孔半球形微壳阵列取代微孔阵列的优势。铝之所以被蚀刻是因为它必须是半球形才能
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Fabrication of Nanoporous Hemi-Spherical Micro-Shell Array for 3D Cell Culture
Extended Abstract Many studies on co-culture with non-parenchymal cells to improve the function expression and activity of cancer cells have been reported.[1] In co-culture, a microwell array for 3D cell culture and a nanoporous membrane for exchange of biomolecules between cells while separating two kinds of cells.[2] Using nanoporous membranes, two types of cells were separated and their effects on the exchange of biomolecules between cells were identified. Previous studies have carried out co-culture with commercial polymer nanoporous membranes, with limitations of low porosity(less than 4%) and high thickness(more than 10 μm ). To overcome this, a thin nanoporous anodic alumina membrane(NAAM) was proposed using high purity aluminum sheet (99.999%) for cell co-culture. When NAAM was used to co-culture NIH3T3 cells and HepG2 cells, albumin was about 1.7 times higher than that of commercial membranes. Through this, it was confirmed that co-culture using NAAM is effective in increasing functional expression and activity of cancer cells.[3] Nanoporous hemi-spherical micro-shell array(NHMA) were made for 3D cell culture in order to apply the advantages of NAAM instead of the microwell array used in previous studies. Aluminum was etched because it had to be hemispherical in order to be
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