School of Biological Sciences, Universiti Sains Malaysia, 11800, Penang, Malaysia.
Centre for Drug Research, Universiti Sains Malaysia, 11800, Penang, Malaysia.
BMC Res Notes. 2021 Aug 13;14(1):310. doi: 10.1186/s13104-021-05727-0.
The spheroid model provides a physiological platform to study cancer cell biology and drug sensitivity. Usage of bovine collagen I for spheroid assays is costly especially when experiments are conducted in 24-well plates, as high volume of bovine collagen I is needed. The aim of the study was to downsize spheroid assays to a microfluidic 3D cell culture chip and compare the growth, invasion and response to drug/compound of spheroids embedded in the 3D chip to spheroids embedded in 24-well plates.
Spheroids generated from nasopharyngeal carcinoma cell line HK-1 continuously grew and invaded into collagen matrix in a 24-well plate. Similar observations were noticed with spheroids embedded in the 3D chip. Large spheroids in both 24-well plate and the 3D chip disintegrated and invaded into the collagen matrix. Preliminary drug sensitivity assays showed that the growth and invasion of spheroids were inhibited when spheroids were treated with combination of cisplatin and paynantheine at high concentrations, in a 24-well plate. Comparable findings were obtained when spheroids were treated with the same drug combination in the 3D chip. Moving forward, spheroid assays could be performed in the 3D chip in a more high-throughput manner with minimal time and cost.
球体模型为研究癌细胞生物学和药物敏感性提供了生理平台。在 24 孔板中进行球体实验时,牛胶原蛋白 I 的使用成本很高,因为需要大量的牛胶原蛋白 I。本研究的目的是将球体实验缩小到微流控 3D 细胞培养芯片中,并比较嵌入 3D 芯片和 24 孔板中的球体的生长、侵袭和对药物/化合物的反应。
鼻咽癌细胞系 HK-1 生成的球体在 24 孔板中不断生长并侵入胶原蛋白基质。在 3D 芯片中嵌入的球体也观察到了类似的现象。在 24 孔板和 3D 芯片中,大球体均解体并侵入胶原蛋白基质。初步药物敏感性试验表明,当球体在高浓度时用顺铂和贝母碱联合治疗时,球体的生长和侵袭受到抑制。当球体在 3D 芯片中用相同的药物组合处理时,也得到了类似的发现。向前推进,球体实验可以以更高的通量在 3D 芯片中进行,所需时间和成本更少。