Organoids are expected to function as effective human organ models for precision cancer studies and drug development. Currently, primary tissue-derived organoids, termed non-engineered organoids (NEOs), are produced by manual pipetting or liquid handling that compromises organoid-organoid homogeneity and organoid-tissue consistency. Droplet-based microfluidics enables automated organoid production with high organoid-organoid homogeneity, organoid-tissue consistency, and a significantly improved production spectrum. It takes advantage of droplet-encapsulation of defined populations of cells and droplet-rendered microstructures that guide cell self-organization. Herein, we studied the droplet-engineered organoids (DEOs), derived from mouse liver tissues and human liver tumors, by using transcriptional analysis and cellular deconvolution on bulk RNA-seq data. The characteristics of DEOs are compared with the parental liver tissues (or tumors) and NEOs. The DEOs are proven higher reproducibility and consistency with the parental tissues, have a high production spectrum and shortened modeling time, and possess inter-organoid homogeneity and inter-tumor cell heterogeneity.
Droplet-engineered organoids recapitulate parental tissue transcriptome with inter-organoid homogeneity and inter-tumor cell heterogeneity.
液滴工程化类器官能够重现亲代组织转录组,同时保持类器官间的同质性和肿瘤细胞间的异质性
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作者:Zhao Haoran, Cheng Yifan, Li Jiawei, Zhou Jiaqi, Yang Haowei, Yu Feng, Yu Feihong, Khutsishvili Davit, Wang Zitian, Jiang Shengwei, Tan Kaixin, Kuang Yi, Xing Xinhui, Ma Shaohua
| 期刊: | Fundamental Research | 影响因子: | 6.300 |
| 时间: | 2024 | 起止号: | 2022 Jun 3; 4(6):1506-1514 |
| doi: | 10.1016/j.fmre.2022.05.018 | 研究方向: | 肿瘤 |
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