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首页> 外文期刊>Cancer science. >BRCA/Fanconi anemia pathway implicates chemoresistance to gemcitabine in biliary tract cancer
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BRCA/Fanconi anemia pathway implicates chemoresistance to gemcitabine in biliary tract cancer

机译:BRCA /范可尼贫血途径与吉西他滨在胆道癌中的化学耐药性有关

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摘要

AbstractThe BRCA/Fanconi anemia (FA) pathway plays a key role in the repair of DNA double strand breaks. We focused on this pathway to clarify chemoresistance mechanisms in biliary tract cancer (BTC). We also investigated changes in the CD24+/44+ population that may be involved in chemoresistance, as this population likely includes cancer stem cells. We used three BTC cell lines to establish gemcitabine (GEM)-resistant (GR) cells and evaluated the expression of BRCA/FA pathway components, chemoresistance, and the effect of BRCA/FA pathway inhibition on the CD24+/44+ population. FANCD2 and CD24 expression were evaluated in 108 resected BTC specimens. GR cells highly expressed the BRCA/FA components. The BRCA/FA pathway was upregulated by GEM and cisplatin (CDDP) exposure. Inhibition using siRNA and RAD51 inhibitor sensitized GR cells to GEM or CDDP. The CD24+/44+ population was increased in GR and parent BTC cells treated with GEM or CDDP and highly expressed BRCA/FA genes. FANCD2 was related to CD24 expression in resected BTC specimens. Inhibition of the BRCA/FA pathway under GEM reduced the CD24+/44+ population in MzChA1-GR cells. Thus, high expression of the BRCA/FA pathway is one mechanism of chemoresistance against GEM and/or CDDP and is related to the CD24+/44+ population in BTC.
机译:摘要BRCA / Fanconi贫血(FA)途径在DNA双链断裂修复中起着关键作用。我们专注于该途径以阐明胆道癌(BTC)的化学耐药机制。我们还研究了可能与化学抗性有关的CD24 + / 44 + 群体的变化,因为该群体可能包括癌症干细胞。我们使用三种BTC细胞系建立了耐吉西他滨(GEM)的(GR)细胞,并评估了BRCA / FA途径成分的表达,化学耐药性以及BRCA / FA途径抑制作用对CD24 + / 44 + 人口。在108个切除的BTC标本中评估了FANCD2和CD24的表达。 GR细胞高度表达BRCA / FA成分。创业板和顺铂(CDDP)暴露可上调BRCA / FA途径。使用siRNA和RAD51抑制剂抑制GR细胞对GEM或CDDP的敏感性。在GR和经GEM或CDDP处理并高度表达的BRCA / FA基因的亲本BTC细胞中,CD24 + / 44 + 种群增加。 FANCD2与切除的BTC标本中的CD24表达有关。 GEM抑制BRCA / FA途径可降低MzChA1-GR细胞中CD24 + / 44 + 种群。因此,BRCA / FA途径的高表达是对GEM和/或CDDP的化学耐药机制之一,与BTC中CD24 + / 44 + 种群有关。

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