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首页> 外文期刊>Expert Review of Molecular Diagnostics >The microbiome of pancreatic cancer: from molecular diagnostics to new therapeutic approaches to overcome chemoresistance caused by metabolic inactivation of gemcitabine
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The microbiome of pancreatic cancer: from molecular diagnostics to new therapeutic approaches to overcome chemoresistance caused by metabolic inactivation of gemcitabine

机译:胰腺癌的微生物组:从分子诊断到新的治疗方法克服吉西他滨代谢失活率引起的化学渗透性

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Introduction: Pancreatic cancer is a complex disease, with an extremely poor response to chemotherapy. Emerging evidence indicates that the tumor microenvironment (TME) might play an important role in mediating chemoresistance. Areas covered: The evaluated study by Geller and collaborators describes several bacterial species within pancreatic tumor tissues and TME and investigated their roles in gemcitabine chemoresistance. Intratumor bacteria express the enzyme cytidine deaminase (CDD), whose long form (CDDL) was shown to metabolize gemcitabine into its inactive metabolite. CDDL is mostly expressed by Gammaproteobacteria and this was among the most common species in pancreatic cancer tissues. Interestingly, mouse models of colorectal cancer injected with bacterial CDDL displayed a reduced response to gemcitabine, but this resistance was neutralized by the antibiotic ciprofloxacin. Expert Commentary: The increased knowledge on the microbiome in pancreatic tissues, as well as its role in chemoresistance, will provide innovative prognostic and therapeutic strategies.
机译:简介:胰腺癌是一种复杂的疾病,对化疗的反应极差。新兴的证据表明肿瘤微环境(TME)可能在介导的化学化方面发挥重要作用。所涵盖的区域:盖勒和合作者的评估研究描述了胰腺肿瘤组织和TME内的几种细菌种类,并研究了吉西他滨化学化的作用。细胞瘤表达酶胞嘧啶脱氨酶(CDD),其长形式(CDD1)被证明将吉西他滨代谢成其活性代谢物。 CDDL大多由γRoteBacteria表达,这是胰腺癌组织中最常见的物种之一。有趣的是,注射细菌CDDL的结肠直肠癌的小鼠模型表现出对吉西他滨的响应减少,但是这种抗性被抗生素环丙沙星中和。专家评论:对胰腺组织中微生物组的知识增加,以及其在化学的作用,将提供创新的预后和治疗策略。

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