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Transcriptomic Analysis of LNCaP Tumor Xenograft to Elucidate the Components and Mechanisms Contributed by Tumor Environment as Targets for Dietary Prostate Cancer Prevention Studies

机译:LNCAP肿瘤异种移植物的转录组分析阐明肿瘤环境贡献的组分和机制作为膳食前列腺癌预防研究的靶标

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摘要

LNCaP athymic xenograft model has been widely used to allow researchers to examine the effects and mechanisms of experimental treatments such as diet and diet-derived cancer preventive and therapeutic compounds on prostate cancer. However, the biological characteristics of human LNCaP cells before/after implanting in athymic mouse and its relevance to clinical human prostate outcomes remain unclear and may dictate interpretation of biological efficacies/mechanisms of diet/diet-derived experimental treatments. In this study, transcriptome profiles and pathways of human prostate LNCaP cells before (in vitro) and after (in vivo) implanting into xenograft mouse were compared using RNA-sequencing technology (RNA-seq) followed by bioinformatic analysis. A shift from androgen-responsive to androgen nonresponsive status was observed when comparing LNCaP xenograft tumor to culture cells. Androgen receptor and aryl-hydrocarbon pathway were found to be inhibited and interleukin-1 (IL-1) mediated pathways contributed to these changes. Coupled with in vitro experiments modeling for androgen exposure, cell-matrix interaction, inflammation, and hypoxia, we identified specific mechanisms that may contribute to the observed changes in genes and pathways. Our results provide critical baseline transcriptomic information for a tumor xenograft model and the tumor environments that might be associated with regulating the progression of the xenograft tumor, which may influence interpretation of diet/diet-derived experimental treatments.
机译:LNCAP无胸生成模型已被广泛用于允许研究人员检查实验治疗的效果和机制,如饮食和饮食衍生的癌症预防和治疗化合物对前列腺癌。然而,在植入胃肠小鼠之前/植入肠道小鼠之前/之后的人LNCAP细胞的生物学特征及其与临床人前列腺结果的相关性仍不清楚,并且可以决定对饮食/饮食衍生实验治疗的生物学效果/机制的解释。在该研究中,使用RNA测序技术(RNA-SEQ)进行比较(体外)和植入异种移植小鼠的人前列腺LNCAP细胞的转录组谱和途径,然后进行生物信息分析。当将LNCAP异种移植肿瘤与培养细胞比较时,观察到从雄激素响应于雄激素非反应状态的转变。发现雄激素受体和芳基 - 烃途径被抑制,并且白细胞介素-1(IL-1)介导的途径有助于这些变化。与体外实验相结合,用于雄激素暴露,细胞基质相互作用,炎症和缺氧,我们确定了可能有助于观察到的基因和途径的变化。我们的结果为肿瘤异种移植模型和肿瘤环境提供了可能与调节异种移植肿瘤的进展相关的关键基线转录组信息,这可能影响饮食/饮食衍生的实验治疗的解释。

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