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Protease Expression Levels in Prostate Cancer Tissue Can Explain Prostate Cancer-Associated Seminal Biomarkers-An Explorative Concept Study

机译:前列腺癌组织中的蛋白酶表达水平可以解释前列腺癌相关的精子生物标志物-探索性概念研究。

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摘要

Previously, we described prostate cancer (PCa) detection (83% sensitivity; 67% specificity) in seminal plasma by CE-MS/MS. Moreover, advanced disease was distinguished from organ-confined tumors with 80% sensitivity and 82% specificity. The discovered biomarkers were naturally occurring fragments of larger seminal proteins, predominantly semenogelin 1 and 2, representing endpoints of the ejaculate liquefaction. Here we identified proteases putatively involved in PCa specific protein cleavage, and examined gene expression and tissue protein levels, jointly with cell localization in normal prostate (nP), benign prostate hyperplasia (BPH), seminal vesicles and PCa using qPCR, Western blotting and confocal laser scanning microscopy. We found differential gene expression of chymase (CMA1), matrix metalloproteinases (MMP3, MMP7), and upregulation of MMP14 and tissue inhibitors (TIMP1 and TIMP2) in BPH. In contrast tissue protein levels of MMP14 were downregulated in PCa. MMP3/TIMP1 and MMP7/TIMP1 ratios were decreased in BPH. In seminal vesicles, we found low-level expression of most proteases and, interestingly, we also detected TIMP1 and low levels of TIMP2. We conclude that MMP3 and MMP7 activity is different in PCa compared to BPH due to fine regulation by their inhibitor TIMP1. Our findings support the concept of seminal plasma biomarkers as non-invasive tool for PCa detection and risk stratification.
机译:以前,我们描述了通过CE-MS / MS在精浆中检测前列腺癌(PCa)(敏感性83%;特异性67%)。此外,晚期疾病以80%的敏感性和82%的特异性与器官受限的肿瘤区分开。发现的生物标志物是较大精蛋白的天然存在片段,主要是精液明胶1和2,代表射精液化的终点。在这里,我们鉴定了可能参与PCa特异性蛋白裂解的蛋白酶,并检查了基因表达和组织蛋白水平,并使用qPCR,Western印迹和共聚焦技术结合正常前列腺(nP),良性前列腺增生(BPH),精囊和PCa中的细胞定位激光扫描显微镜。我们发现BPH中的糜酶(CMA1),基质金属蛋白酶(MMP3,MMP7)的差异基因表达,以及M​​MP14和组织抑制剂(TIMP1和TIMP2)的上调。相反,PCa中MMP14的组织蛋白水平下调。 BPH中MMP3 / TIMP1和MMP7 / TIMP1的比率降低。在精囊中,我们发现了大多数蛋白酶的低水平表达,有趣的是,我们还检测到TIMP1和低水平的TIMP2。我们得出的结论是,由于其抑制剂TIMP1的精细调节,与BPH相比,PCa中的MMP3和MMP7活性不同。我们的发现支持了精浆生物标志物作为PCa检测和风险分层的非侵入性工具的概念。

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