Nam Chehyun, Ziman Benjamin, Sheth Megha, Zhao Hua, Lin De-Chen
Center for Craniofacial Molecular Biology, Herman Ostrow School of Dentistry, and Norris Comprehensive Cancer Center, University of Southern California, Los Angeles, CA 90033, USA.
Cancers (Basel). 2022 Aug 24;14(17):4090. doi: 10.3390/cancers14174090.
Tumor organoid modeling has been recognized as a state-of-the-art system for in vitro research on cancer biology and precision oncology. Organoid culture technologies offer distinctive advantages, including faithful maintenance of physiological and pathological characteristics of human disease, self-organization into three-dimensional multicellular structures, and preservation of genomic and epigenomic landscapes of the originating tumor. These features effectively position organoid modeling between traditional cell line cultures in two dimensions and in vivo animal models as a valid, versatile, and robust system for cancer research. Here, we review recent advances in genomic and epigenomic characterization of tumor organoids and the novel findings obtained, highlight significant progressions achieved in organoid modeling of gene-drug interactions and genotype-phenotype associations, and offer perspectives on future opportunities for organoid modeling in basic and clinical cancer research.
肿瘤类器官建模已被公认为是一种用于癌症生物学和精准肿瘤学体外研究的先进系统。类器官培养技术具有独特的优势,包括忠实地维持人类疾病的生理和病理特征、自组织形成三维多细胞结构,以及保留原发肿瘤的基因组和表观基因组格局。这些特性有效地将类器官建模定位为介于二维传统细胞系培养和体内动物模型之间的一种有效、通用且强大的癌症研究系统。在此,我们综述了肿瘤类器官基因组和表观基因组表征的最新进展以及所获得的新发现,强调了在类器官基因 - 药物相互作用和基因型 - 表型关联建模方面取得的重大进展,并展望了类器官建模在基础和临床癌症研究中的未来机遇。