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多参数磁共振成像(MRI)上识别出的离散前列腺癌病灶中的DNA修复失调,以及MRI/超声融合引导活检的靶向病灶。

DNA repair deregulation in discrete prostate cancer lesions identified on multi-parametric MRI and targeted by MRI/ultrasound fusion-guided biopsy.

作者信息

Dulaney Caleb R, Rais-Bahrami Soroush, Manna Debra Della, Gordetsky Jennifer B, Nix Jeffrey W, Yang Eddy S

机构信息

Department of Radiation Oncology, University of Alabama at Birmingham, Birmingham, AL, USA.

Department of Urology, University of Alabama at Birmingham, Birmingham, AL, USA.

出版信息

Oncotarget. 2017 Jul 10;8(40):68038-68046. doi: 10.18632/oncotarget.19145. eCollection 2017 Sep 15.

Abstract

Prostate cancer is histologically and molecularly heterogeneous. Clinically significant disease is often driven by dominant intra-prostatic lesions (IPLs). Prostate cancers cluster into molecular phenotypes with substantial genetic heterogeneity making pathway-based molecular analysis appealing. MRI/ultrasound fusion biopsy provides a unique opportunity to characterize tumor biology of discrete lesions at diagnosis. This study determined the feasibility of pathway-based gene expression analysis of prostate biopsies and characterized cancer pathway deregulation. Thirteen patients had prostate cancer diagnosed by MRI/ultrasound fusion biopsy and either Gleason 6 or Gleason ≥8. Gene expression profiling was performed on 14 biopsies using >700 genes representing 13 cancer pathways. Pathway-based analysis compared gene expression among samples based on clinical, pathological, and radiographic characteristics. Pathway-based gene expression analysis was successful in 12 of 14 (86%) samples. Samples clustered based upon deregulation of DNA Repair and Notch, Chromatin Modification and Cell Cycle, or all other pathways, respectively. DNA Repair demonstrated the greatest differential deregulation. Lesions with Gleason ≥8, PSA ≥10, or intense dynamic contrast enhancement (DCE) had significantly higher DNA Repair deregulation than those with Gleason 6, PSA <10, or low to moderate DCE. Alterations in DNA Repair gene expression were diverse with upregulation of markers of DNA damage and down-regulation of DNA Repair proteins. This study demonstrates the feasibility of pathway-level gene expression analysis of discrete intra-prostatic lesions sampled by MRI/ultrasound fusion biopsy. IPLs cluster into distinct molecular phenotypes, the most significantly altered being DNA Repair.

摘要

前列腺癌在组织学和分子层面具有异质性。具有临床意义的疾病通常由前列腺内主要病灶(IPL)驱动。前列腺癌聚集成具有显著遗传异质性的分子表型,这使得基于通路的分子分析颇具吸引力。MRI/超声融合活检为在诊断时表征离散病灶的肿瘤生物学提供了独特机会。本研究确定了对前列腺活检进行基于通路的基因表达分析的可行性,并对癌症通路失调进行了表征。13例患者经MRI/超声融合活检诊断为前列腺癌,Gleason评分6分或Gleason评分≥8分。使用代表13条癌症通路的700多个基因对14份活检样本进行了基因表达谱分析。基于通路的分析根据临床、病理和影像学特征比较了样本间的基因表达。14份样本中有12份(86%)成功进行了基于通路的基因表达分析。样本分别根据DNA修复和Notch、染色质修饰和细胞周期或所有其他通路的失调进行聚类。DNA修复表现出最大的差异失调。Gleason评分≥8分、PSA≥10或动态对比增强(DCE)强烈的病灶,其DNA修复失调显著高于Gleason评分6分、PSA<10或DCE低至中度的病灶。DNA修复基因表达的改变多种多样,DNA损伤标志物上调,DNA修复蛋白下调。本研究证明了对通过MRI/超声融合活检获取的离散前列腺内病灶进行通路水平基因表达分析的可行性。IPL聚集成不同的分子表型,改变最显著的是DNA修复。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/898e/5620234/3277c71198ba/oncotarget-08-68038-g001.jpg

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