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基于快速尸检骨与肝转移灶的致死性神经内分泌前列腺癌整合临床前平台

英文原题:An Integrated Preclinical Platform for Lethal Neuroendocrine Prostate Cancer from Rapid Autopsy Bone and Liver Metastases.

PubMed 2026/07/23(内容时间) bioRxiv

研究概要

这些互补的患者来源模型为研究NEPC生物学、转移进展及评估新治疗策略提供了一个稳健且多功能的平台。

中文摘要

未标注:治疗诱导的神经内分泌前列腺癌(NEPC)是一种侵袭性、治疗抵抗性疾病,在高达20%的去势抵抗性前列腺癌中出现,但具有生物学相关性的稳健临床前模型仍然稀缺。在此,我们描述了一个技术蓝图,用于建立一套整合的患者来源模型平台,这些模型来自通过前列腺癌快速尸检项目(PC RAP)收集的内脏和骨转移灶。我们报告了来自肝转移组织的患者来源异种移植(PDX)模型、肝和骨转移来源的类器官系(PDO)以及相应的患者来源类器官异种移植(PDOX)模型的建立和表征。此外,我们建立了据我们所知首个来自神经内分泌前列腺癌(NEPC)骨转移的间充质干细胞(MSC)培养物。PDO保留了瘤内异质性,同时显示CRPC-NE和CRPC-腺癌特征。这些类器官在多次传代中保留了神经内分泌身份,其转录组谱与原始患者组织以及在我们机构和美国国家癌症研究所(NCI Patient-Derived Models Repository)生成的匹配PDX模型一致。为了模拟骨转移微环境,我们通过将PDO与iPSC来源的骨髓类器官共培养,生成了新型基于类器官的新方法学(NAM),建立了一个生理相关的血管化器官型PC骨转移模型。为了在体内扩展我们的研究,我们使用肝和骨转移来源的类器官模型建立了临床前模型。PDOX模型具有致瘤性,并发生自发性淋巴结转移,为研究致死性NEPC生物学提供了临床相关模型。总之,这些互补的患者来源模型为研究NEPC生物学、转移进展以及评估新治疗策略提供了一个稳健且多功能的平台。图形摘要:亮点:从前列腺癌快速尸检项目中建立了内脏和骨转移的新型临床前模型。本研究首次从NEPC骨转移中建立间充质干细胞培养物。PDO保留了异质性,显示出CRPC-NE和CRPC-Adeno特征,其转录组谱与来源组织和PDX模型一致。PC RAP来源的类器官在体内具有致瘤性,并能自发产生淋巴结转移。

展开英文摘要原文

UNLABELLED: Treatment-emergent neuroendocrine prostate cancer (NEPC) is an aggressive, therapy-resistant disease arising in up to 20% of castration resistant prostate cancers, yet robust biologically relevant preclinical models remain scarce. Here, we describe a technical blueprint for establishing an integrated platform of patient-derived models from visceral and bone metastases collected through a prostate cancer rapid autopsy program (PC RAP). We report the establishment and characterization of patient-derived xenograft (PDX) models from liver metastasis tissue, liver and bone metastasis-derived organoid lines (PDOs), and corresponding patient-derived organoid xenograft (PDOX) models. In addition, we established, to our knowledge, the first mesenchymal stem cell (MSC) cultures derived from neuroendocrine prostate cancer (NEPC) bone metastases. The PDOs preserved intratumoral heterogeneity, displaying both CRPC-NE and CRPC-adenocarcinoma features. These organoids retained neuroendocrine identity across multiple passages, with transcriptomic profiles concordant with the original patient tissue and matched PDX models generated at our institution and at the National Cancer Institute (NCI Patient-Derived Models Repository). To model the bone metastatic microenvironment, we generated novel organoid-based New Approach Methodologies (NAMs) by co-culturing PDOs with iPSC-derived bone marrow organoids, establishing a physiologically relevant vascularized organotypic model of PC bone metastasis. To extend our studies in vivo, we established preclinical models using the liver and bone metastasis-derived organoid models. The PDOX models were tumorigenic and developed spontaneous lymph node metastases, providing clinically relevant models for investigating lethal NEPC biology. Together, these complementary patient-derived models provide a robust and versatile platform for investigating NEPC biology, metastatic progression, and evaluating new therapeutic strategies. GRAPHICAL ABSTRACT: Highlights: Novel preclinical models of visceral and bone metastases established from a prostate cancer rapid autopsy program.This study is the first to establish mesenchymal stem cell cultures from NEPC bone metastases.PDOs preserve heterogeneity, showing both CRPC-NE and CRPC-Adeno features, with transcriptomic profiles concordant with originator tissue and PDX models.PC RAP-derived organoids are tumorigenic in vivo and generate spontaneous lymph node metastases.

论文信息

作者
Ryu B、Caffrey TC、Sridhar S、Johnson CS、Salloom RJ、Mohan K、Waldron G、Robotham A
文献类型
预印本
期刊
bioRxiv : the preprint server for biology2026 Jul 23
原文标识
PubMed 42539137 · DOI 10.64898/2026.07.22.740121