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The Role of CD44 in Glucose Metabolism in Prostatic Small Cell Neuroendocrine Carcinoma

机译:CD44在前列腺小细胞神经内分泌癌葡萄糖代谢中的作用

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While prostatic adenocarcinomas are relatively indolent, some patients with advanced adenocarcinomas recur with small cell neuroendocrine carcinoma which is highly aggressive and lethal. Because glycolysis is a feature of malignancy and the degree of glycolysis generally correlates with tumor aggressiveness, we wanted to compare the metabolic differences and the molecular mechanisms involved between the two tumor types. In this study, and based on previous characterization, LNCaP and PC-3 prostate cancer cell lines were selected as models of prostatic adenocarcinoma and small cell neuroendocrine carcinoma, respectively. In addition to measuring glucose consumption, lactate secretion, and reactive oxygen species (ROS) levels, we performed metabolic profiling in these two model systems. The role of CD44 was studied by RNAi and lentivirus-mediated overexpression. Expression of key enzymes in glycolysis was studied using human tissue microarrays containing benign prostate, adenocarcinoma, and small cell neuroendocrine carcinoma. Results showed that glycolytic features of PC-3 cells were higher than that of LNCaP cells. PFKFB4 was overexpressed in human small cell carcinoma tissue versus adenocarcinoma tissue. CD44 regulated glucose metabolism, intracellular ROS, and cell proliferation in PC-3 cells. Inhibition of CD44 also sensitized PC-3 cells to carboplatin. In conclusion, this study suggests different pathways of glucose metabolism contribute to the disparate biologic behaviors of these two tumor types. (C) 2016 AACR.
机译:尽管前列腺腺癌相对来说比较惰性,但是一些晚期腺癌患者会复发,小细胞神经内分泌癌具有很高的侵袭性和致死性。因为糖酵解是恶性肿瘤的特征,而且糖酵解的程度通常与肿瘤的侵袭性相关,所以我们想比较两种肿瘤类型之间的代谢差异和涉及的分子机制。在这项研究中,并根据先前的特征,分别选择LNCaP和PC-3前列腺癌细胞系作为前列腺腺癌和小细胞神经内分泌癌的模型。除了测量葡萄糖消耗,乳酸分泌和活性氧(ROS)水平外,我们还在这两个模型系统中执行了代谢分析。 RNAi和慢病毒介导的过表达研究了CD44的作用。使用包含良性前列腺癌,腺癌和小细胞神经内分泌癌的人类组织微阵列研究了糖酵解中关键酶的表达。结果表明,PC-3细胞的糖酵解特征高于LNCaP细胞。相对于腺癌组织,PFKFB4在人小细胞癌组织中过表达。 CD44调节PC-3细胞中的葡萄糖代谢,细胞内ROS和细胞增殖。 CD44的抑制也使PC-3细胞对卡铂敏感。总而言之,这项研究表明葡萄糖代谢的不同途径促成了这两种肿瘤类型的不同生物学行为。 (C)2016 AACR。

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