PO.TB04.01 · 肿瘤生物学

通过患者来源类器官绘制并靶向CRC中的空间异质性

Mapping and targeting spatial heterogeneity in CRC through patient-derived organoids

海报缩略图:通过患者来源类器官绘制并靶向CRC中的空间异质性
编号 667 展板 15 时间 4/19 02:00–05:00 区域 Section 27 主讲 Maxim Norkin, PhD
分会场 Ex Vivo Systems: Patient-Derived, Patient-Specific Tumor Cultures
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作者与单位 Authors & Affiliations

Maxim Norkin1, Jonathan Bac1, Louis McConnel1, Sylvie Andre1, Marina Alexandra Gaveta1, Joerg Huelsken2, Marianna Rapsomaniki1, Raphael Gottardo1, Krisztian Homicsko1

1Oncology, CHUV, Centre hospitalier universitaire vaudois, Lausanne, Switzerland,2EPFL, Lausanne, Switzerland

摘要 Abstract

中文摘要
癌细胞和肿瘤微环境(TME)的患者间和患者内异质性以及空间异质性,是癌症治疗的巨大障碍。离体的患者来源类器官(PDO)作为更佳的药物开发平台颇具前景,可应用于个性化医疗。既往工作已表明,肿瘤的基因组和克隆异质性以及表达异质性可在PDO中得以保持。然而,PDO是否保留了原始肿瘤中观察到的相同程度的空间表达异质性仍不清楚。我们提出了一套结合PDO的空间转录组学和表型分析的分析流程,该流程能够在多种检测中(包括药物处理期间)捕捉和追踪空间异质性。我们开发了一个类器官多重包埋平台,允许使用基于成像的空间转录组学对多重类器官培养物进行平行分析。我们通过与非空间单细胞转录组学和供体肿瘤空间转录组学分析进行比较来验证该平台。据此,我们通过空间转录组学(Xenium 10x)分析了40个CRC(结直肠癌)PDO和16个CRC PDO-肿瘤配对,包括药物处理、类器官发育轨迹和共培养实验。我们发现了肿瘤和PDO中的患者内和患者间异质性,并将基因表达与类器官形状相关联。我们进一步区分了CRC中的不同表达程序,并将它们与肿瘤中恶性细胞的空间定位相关联。最后,我们在异质性PDO培养物中鉴定并分析了休眠类器官,并将它们与原始肿瘤进行了比较。离体PDO与空间转录组学的结合可为选择性靶向癌细胞和TME的空间亚群的药物开发开辟新途径。
查看英文原文 English abstract
Inter- and intra-patient heterogeneity, as well as spatial heterogeneity of cancer cells and the tumor microenvironment (TME), is a formidable barrier for cancer therapies. Ex vivo, patient-derived organoids (PDOs) hold promise as better platforms for drug development and can be applied in personalized medicine. Previous work has shown that genomic and clonal heterogeneity of tumors, as well as expression heterogeneity, can be maintained in PDOs. However, it remains unclear whether PDOs preserve the same degree of spatial expression heterogeneity observed in the original tumors. We propose an analytical pipeline combining spatial transcriptomic and phenotypic analysis of PDOs that can capture and track spatial heterogeneity across multiple assays, including during drug treatment.We have developed an organoid multi-embedding platform that allows parallel analysis of multiplex organoid cultures using imaging-based spatial transcriptomics. We validate the platform by comparison to non-spatial single-cell transcriptomic and donor tumor spatial transcriptomic analyses. With that, we have analyzed 40 CRC (colorectal cancer) PDOs and 16 CRC PDO-tumor pairs by spatial transcriptomics (Xenium 10x), including drug treatments, organoid developmental trajectories, and co-culture experiments. We have discovered intra- and inter-patient heterogeneity in tumors and PDOs and linked gene expression to organoid shapes. We further distinguished different expression programs in CRC and linked them to the spatial positioning of malignant cells in tumors. Finally, we have identified and analyzed dormant organoids in heterogeneous PDO cultures and compared them to the original tumors.The combination of ex vivo PDOs and spatial transcriptomics could open novel avenues for drug development selectively targeting spatial subsets of cancer cells and the TME.
利益披露 Disclosure
M. Norkin, None.. J. Bac, None.. L. McConnel, None.. S. Andre, None.. M. A. Gaveta, None.. J. Huelsken, None.. M. Rapsomaniki, None.. R. Gottardo, None.. K. Homicsko, None.

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