液滴工程类器官概括了具有类器官间同质性和肿瘤细胞间异质性的亲代组织转录组

IF 6.2 3区 综合性期刊 Q1 Multidisciplinary Fundamental Research Pub Date : 2024-11-01 DOI:10.1016/j.fmre.2022.05.018
Haoran Zhao , Yifan Cheng , Jiawei Li , Jiaqi Zhou , Haowei Yang , Feng Yu , Feihong Yu , Davit Khutsishvili , Zitian Wang , Shengwei Jiang , Kaixin Tan , Yi Kuang , Xinhui Xing , Shaohua Ma
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引用次数: 0

摘要

类器官有望成为精确癌症研究和药物开发的有效人体器官模型。目前,原生组织衍生的类器官,被称为非工程类器官(neo),是通过人工移液或液体处理来生产的,这损害了类器官-类器官的均匀性和类器官-组织的一致性。基于液滴的微流体技术能够实现自动化类器官生产,具有高类器官-类器官的均匀性,类器官-组织的一致性,并显着改善了生产光谱。它利用了定义的细胞群体的液滴封装和引导细胞自组织的液滴呈现微结构的优势。在此,我们通过转录分析和大量RNA-seq数据的细胞反褶积研究了来自小鼠肝脏组织和人类肝脏肿瘤的液滴工程类器官(DEOs)。将deo的特征与亲代肝脏组织(或肿瘤)和neo进行了比较。DEOs具有较高的再现性和与亲本组织的一致性,具有较高的生产谱和较短的建模时间,并具有类器官间的均匀性和肿瘤细胞间的异质性。
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Droplet-engineered organoids recapitulate parental tissue transcriptome with inter-organoid homogeneity and inter-tumor cell heterogeneity
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.
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来源期刊
Fundamental Research
Fundamental Research Multidisciplinary-Multidisciplinary
CiteScore
4.00
自引率
1.60%
发文量
294
审稿时长
79 days
期刊介绍:
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