Yang Zehong, Zhuang Hua, Song Hong, Liu Ji, Zhao Xiaojun, Lin Wei
Biomolecular Medicine Lab, West China College of Preclinical Medicine and Forensic Medicine, Sichuan University, Chengdu 610041, Sichuan, P. R. China.
West China Hospital Nanomedicine Laboratory, Institute for Nanobiomedical Technology and Membrane Biology, Department of Ultrasound, West China Hospital, Sichuan University, Chengdu 610041, Sichuan, P. R. China.
J Nanosci Nanotechnol. 2018 Apr 1;18(4):2370-2378. doi: 10.1166/jnn.2018.14384.
Despite of intensive efforts, the tumor progression of ovarian cancer has not yet been fully understood. Various studies suggest that an effective experimental model system In Vitro to mimic microenvironment in vivo and the fabrication of cell pattern formation In Vitro are of great importance for the ovarian cancer research.
This study cultivates SKOV3, A2780 and A2780/DDP ovarian cancer cell lines in RADA16-I peptide hydrogel to obtain 3D-precultured cancer cells and fabricate a type of miniature cell pattern formation In Vitro on RADA16-I peptide nanofibercoated coverslip by in situ AFM analysis and chemosensitivity assay in vitro.
SKOV3, A2780 and A2780/DDP cells were regularly cultivated in RADA16-I peptide hydrogel, respectively, and present defined cellular characteristics, such as small cell colonies, cell clusters and cell aggregates, etc. On coverslip coated with RADA16-I peptide nanofiber, three 3D-precultured cell lines were flat and spread on coverslips and the regular topographic images by AFM were obtained. The chemosensitivity assay of three ovarian cancer cell lines were significantly different in RADA16-I peptide-coated coverslips compared with 2D dish plates.
By 3D cell culture of ovarian cancer cell lines in RADA16-I peptide hydrogel In Vitro, the cell culture model systems was fabricated. The miniature cell pattern formation In Vitro on peptide nanofiber-coated coverslip was particularly useful experiemental model systems to be served as a valuable methodology for studying ovarian cancer biology.
尽管付出了巨大努力,但卵巢癌的肿瘤进展尚未完全明确。各种研究表明,建立一个有效的体外实验模型系统来模拟体内微环境以及体外构建细胞图案形成对于卵巢癌研究非常重要。
本研究将SKOV3、A2780和A2780/DDP卵巢癌细胞系培养于RADA16-I肽水凝胶中以获得三维预培养癌细胞,并通过原位原子力显微镜分析和体外化学敏感性测定,在RADA16-I肽纳米纤维包被的盖玻片上构建一种体外微型细胞图案形成。
SKOV3、A2780和A2780/DDP细胞分别在RADA16-I肽水凝胶中正常培养,并呈现出明确的细胞特征,如小细胞集落、细胞簇和细胞聚集体等。在包被有RADA16-I肽纳米纤维的盖玻片上,三种三维预培养细胞系扁平并铺展在盖玻片上,通过原子力显微镜获得了规则的形貌图像。与二维培养皿相比,三种卵巢癌细胞系在RADA16-I肽包被的盖玻片上的化学敏感性测定有显著差异。
通过在体外将卵巢癌细胞系在RADA16-I肽水凝胶中进行三维细胞培养,构建了细胞培养模型系统。在肽纳米纤维包被的盖玻片上进行体外微型细胞图案形成是一种特别有用的实验模型系统,可作为研究卵巢癌生物学的有价值方法。