首页> 外文期刊>BMC Urology >The metabolic role of PFKFB4 in androgen-independent growth in vitro and PFKFB4 expression in human prostate cancer tissue
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The metabolic role of PFKFB4 in androgen-independent growth in vitro and PFKFB4 expression in human prostate cancer tissue

机译:PFKFB4在人类前列腺癌组织中雄激素无关生长中PFKFB4在雄激素和PFKFB4表达中的代谢作用

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It is well known that androgen-deprivation therapy (ADT) can inevitably drive prostate cancer (PCa) cells into a castration-resistant state. According to the “Warburg effect”, the metabolism of aggressive tumor cells increases significantly. The growth of cancer cells depends on glycolysis, which may be a potential target for cancer control. 6-Phosphofructo-2-kinase/fructose-2,6-biphosphatase 4 (PFKFB4) plays key roles in the proliferation and metastasis of PCa cells. However, there is very limited knowledge on the role of PFKFB4 in the conversion to castration resistance. The present study aimed to determine the changes in glucose consumption and PFKFB4 expression in LNCaP cells and androgen-independent LNCaP (LNCaP-AI) cells during the whole process of androgen-independent growth. Additionally, PFKFB4 expression in human PCa tissues was evaluated. We established an androgen-independent LNCaP-AI cell line derived from LNCaP cells to mimic the traits of castration resistance in vitro. LNCaP-AI and LNCaP cells were cultured in the corresponding medium containing the same amount of glucose. At the end of experiments, the medium supernatant and blank medium were collected, and absorbance was measured. LNCaP-AI and LNCaP cells were harvested to detect PFKFB4 expression by Western blotting. Prostate tissue samples including PCa tissue, carcinoma-adjacent tissue and benign prostatic hyperplasia (BPH) tissue specimens were evaluated for PFKFB4 expression using immunohistochemistry. In 18?h supernatant samples, the glucose consumption and lactate secretion of LNCaP-AI cells were higher than those of LNCaP cells. The Western blot results indicated that PFKFB4 expression was increased in LNCaP-AI cells compared with LNCaP cells. Immunohistochemistry revealed that the expression of PFKFB4 in PCa tissue specimens was higher than that in BPH and adjacent tissue specimens. However, the differences in PCa tissue before and after ADT were not statistically significant. PFKFB4 may be associated with enhanced glycolysis during the androgen-independent growth of PCa cells in vitro. PFKFB4 may be a marker of PCa progression. Our results provide a rationale for further clinical investigation of PCa treatment focused on controlling PFKFB4 expression.
机译:众所周知,雄激素剥夺治疗(ADT)可以不可避免地将前列腺癌(PCA)细胞驱动成抵抗力状态。根据“Warburg效应”,侵蚀性肿瘤细胞的代谢显着增加。癌细胞的生长取决于糖酵解,这可能是癌症对照的潜在靶标。 6-磷胶 - 2-激酶/果糖-2,6-二磷酶4(PFKFB4)在PCA细胞的增殖和转移中起关键作用。然而,关于PFKFB4在转换到阉割性阻力中的作用非常有限。本研究旨在在整个雄激素无关的生长过程中确定LNCAP细胞和雄激素无关的LNCAP(LNCAP-AI)细胞中葡萄糖消耗和PFKFB4表达的变化。另外,评估人PCA组织中的PFKFB4表达。我们建立了衍生自LNCAP细胞的雄激素无关的LNCAP-AI细胞系,以模拟体外阉割性的性状。在含有相同量葡萄糖的相应介质中培养LNCAP-AI和LNCAP细胞。在实验结束时,收集中清液和空白介质,并测量吸光度。收获LNCAP-AI和LNCAP细胞以通过蛋白质印迹检测PFKFB4表达。使用免疫组织化学评价包括PCA组织,癌邻近组织和良性前列腺增生(BPH)组织标本的前列腺组织样本.PFKFB4表达。在18℃上清液样品中,LNCAP-AI细胞的葡萄糖消耗和乳酸分泌高于LNCAP细胞。 Western印迹结果表明,与LNCAP细胞相比,LNCAP-AI细胞中的PFKFB4表达增加。免疫组织化学显示PFKFB4在PCA组织标本中的表达高于BPH和相邻组织标本的表达。然而,ADT之前和之后PCA组织的差异在统计学上没有统计学意义。在体外PCA细胞的雄激素无关生长期间,PFKFB4可以与增强的糖醇分解相关。 PFKFB4可以是PCA进展的标记。我们的结果提供了对PCA治疗的进一步临床研究的理由,其重点是控制PFKFB4表达。

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