Multi-compartment tumor organoids

类有机物 间质细胞 三维细胞培养 癌细胞 细胞外基质 基底膜 细胞生物学 体内 细胞培养 血管生成拟态 癌症 生物 癌症研究 转移 生物技术 遗传学
作者
Meng‐Horng Lee,Gabriella C. Russo,Yohan Suryo Rahmanto,Wenxuan Du,Ashleigh J. Crawford,Pei‐Hsun Wu,Daniele M. Gilkes,Ashley Kiemen,Tsutomu Miyamoto,Yu Yu,Mehran Habibi,Ie−Ming Shih,Tian‐Li Wang,Denis Wirtz
出处
期刊:Materials Today [Elsevier BV]
卷期号:61: 104-116 被引量:22
标识
DOI:10.1016/j.mattod.2022.07.006
摘要

Organoid cultures are widely used for tumor modeling because they preserve many phenotypic features of cancer cells in vivo. However, current organoids present issues of consistency, efficiency, mimicry, and cell-seeding control. More importantly, they can only contain only one extracellular matrix (ECM) compartment at a time, while solid tumors feature two main ECM compartments: the basement membrane and the stromal matrix. Here, we develop, test, and validate a high-throughput oil-in-water droplet microtechnology to generate highly uniform, small-volume, multi-compartment organoids. Each organoid culture features microenvironmental architectures that mimic both the basement membrane and stromal barriers. This matrix architecture, which allows us to simultaneously take into account and assess the proliferative and invasive properties of cancer cells in a single platform, has profound effect on observed drug responsiveness and tumor progression that correlate well with in vivo and clinical outcomes. Our method was tested on multiple types of cells including primary breast and ovarian cancer cells and immortalized cell lines, and we determined our platform is suitable even for cancer cells of poor standard organoid-forming ability such as primary patient samples. These new organoids also allow for direct orthotopic mouse implantation of cancer cells with unprecedented success.
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