Lee Sang-Yun, Hwang Hyun Ju, Song You Jin, Lee Dayoung, Ku Bosung, Sa Jason K, Lee Dong Woo
Central R & D Center, Medical & Bio Decision (MBD) Co., Ltd, Suwon, 16229, Republic of Korea.
Department of Biomedical Engineering, Gachon University, Seongnam, 13120, Republic of Korea.
Mater Today Bio. 2023 Sep 15;23:100793. doi: 10.1016/j.mtbio.2023.100793. eCollection 2023 Dec.
A pillar dishe for subculture of 3D cultured cells on hydrogel spots (Matrigel and alginate) have been developed. Cells cultured in 3D in an extracellular matrix (ECM) can retain their intrinsic properties, but cells cultured in 2D lose their intrinsic properties as the cells stick to the bottom of the well. Previously, cells and ECM spots were dispensed on a conventional culture dish for 3D cultivation. However, as the spot shape and location depended on user handling, pillars were added to the dish to realize uniform spot shape and stable subculture, supporting 3D cell culture-based high-throughput screening (HTS). Matrigel and alginate were used as ECMs during 6-passage subculture. The growth rate of lung cancer cell (A549) was higher on Matrigel than on alginate. Cancer cell was subcultured in three dimensions in the proposed pillar dish and used for drug screening and differential gene expression analysis. Interestingly, stemness markers, which are unique characteristics of lung cancer cells inducing drug resistance, were upregulated in 3D-subcultured cells compared with those in 2D-subcultured cells. Additionally, the PI3K/Akt/mTOR, VEGFR1/2, and Wnt pathways, which are promising therapeutic targets for lung cancer, were activated, showing high drug sensitivity under 3D-HTS using the 3D-subcultured cells.
一种用于在水凝胶斑点(基质胶和藻酸盐)上对三维培养细胞进行传代培养的柱形培养皿已被开发出来。在细胞外基质(ECM)中进行三维培养的细胞可以保留其固有特性,但在二维培养中,由于细胞粘附在孔底部,细胞会失去其固有特性。以前,细胞和ECM斑点被分配到传统培养皿上进行三维培养。然而,由于斑点形状和位置取决于用户操作,因此在培养皿中添加了柱子以实现均匀的斑点形状和稳定的传代培养,支持基于三维细胞培养的高通量筛选(HTS)。在6代传代培养过程中,使用基质胶和藻酸盐作为ECM。肺癌细胞(A549)在基质胶上的生长速率高于在藻酸盐上的生长速率。癌细胞在提出的柱形培养皿中进行三维传代培养,并用于药物筛选和差异基因表达分析。有趣的是,与二维传代培养的细胞相比,在三维传代培养的细胞中,诱导耐药性的肺癌细胞的独特特征——干性标志物上调。此外,肺癌有前景的治疗靶点PI3K/Akt/mTOR、VEGFR1/2和Wnt信号通路被激活,在使用三维传代培养细胞的三维HTS下显示出高药物敏感性。