Zhu Xinglong, Li Yi, Yang Ying, He Yuting, Gao Mengyu, Peng Wanliu, Wu Qiong, Zhang Guangyue, Zhou Yanyan, Chen Fei, Bao Ji, Li Weimin
Institute of Clinical Pathology, Key Laboratory of Transplant Engineering and Immunology, NHC, West China Hospital, Sichuan University, Chengdu, 610041, Sichuan, China.
Institute of Respiratory Health, West China Hospital, Sichuan University, Chengdu, 610041, Sichuan, China.
Mater Today Bio. 2022 May 5;15:100274. doi: 10.1016/j.mtbio.2022.100274. eCollection 2022 Jun.
This study aims to evaluate ECM-coated micropattern arrays derived from decellularization of native porcine lungs as a novel three-dimensional cell culture platform.
ECM derived from decellularization of native porcine lungs was exploited to prepare hydrogels. Then, dECM-coated micropattern arrays were fabricated at four different diameters (50, 100, 150 and 200 μm) using polydimethylsiloxane (PDMS). Two lung cancer cell lines, A549 and H1299, were tested on a dECM-coated micropattern array as a novel culture platform for cell adhesion, distribution, proliferation, viability, phenotype expression, and drug screening to evaluate the cytotoxicity of paclitaxel, doxorubicin and cisplatin.
The ECM derived from decellularization of native porcine lungs supported cell adhesion, distribution, viability and proliferation better than collagen I and Matrigel as the coated matrix on the surface. Moreover, the optimal diameter of the micropattern arrays was 100-150 μm, as determined by measuring the morphology, viability, proliferation and phenotype of the cancer cell spheroids. Cell spheroids of A549 and H1299 on dECM-coated micropattern arrays showed chemoresistance to anticancer drugs compared to that of the monolayer. The different distributions of HIF-1α, MCL-1 (in the center) and Ki-67 and MRP2 (in the periphery) of the spheroids demonstrated the good establishment of basal-lateral polarity and explained the chemoresistance phenomenon of spheroids.
This novel three-dimensional cell culture platform is stable and reliable for anticancer drug testing. Drug screening in dECM-coated micropattern arrays provides a powerful alternative to existing methods for drug testing and metabolic profiling in the drug discovery process.
本研究旨在评估源自天然猪肺脱细胞化的细胞外基质(ECM)包被的微图案阵列作为一种新型三维细胞培养平台的性能。
利用天然猪肺脱细胞化得到的ECM制备水凝胶。然后,使用聚二甲基硅氧烷(PDMS)制作四种不同直径(50、100、150和200μm)的ECM包被的微图案阵列。将两种肺癌细胞系A549和H1299在ECM包被的微图案阵列上进行测试,作为用于细胞黏附、分布、增殖、活力、表型表达及药物筛选的新型培养平台,以评估紫杉醇、阿霉素和顺铂的细胞毒性。
源自天然猪肺脱细胞化的ECM作为表面包被基质,比I型胶原和基质胶更能支持细胞黏附、分布、活力及增殖。此外,通过测量癌细胞球体的形态、活力、增殖和表型确定,微图案阵列的最佳直径为100 - 150μm。与单层细胞相比,A549和H1299在ECM包被的微图案阵列上形成的细胞球体对抗癌药物表现出耐药性。球体中HIF - 1α、MCL - 1(在中心)以及Ki - 67和MRP2(在周边)的不同分布表明基底外侧极性良好建立,并解释了球体的耐药现象。
这种新型三维细胞培养平台用于抗癌药物测试稳定可靠。在ECM包被的微图案阵列中进行药物筛选为药物发现过程中现有的药物测试和代谢谱分析方法提供了有力的替代方案。