首页> 外文期刊>Cancer research: The official organ of the American Association for Cancer Research, Inc >The metastasis-associated microRNA miR-516a-3p is a novel therapeutic target for inhibiting peritoneal dissemination of human scirrhous gastric cancer.
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The metastasis-associated microRNA miR-516a-3p is a novel therapeutic target for inhibiting peritoneal dissemination of human scirrhous gastric cancer.

机译:转移相关的microRNA miR-516a-3p是抑制人硬化胃癌腹膜扩散的新型治疗靶标。

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Although aberrant microRNA (miRNA) is expressed in different types of human cancer tissues, its pathophysiologic role and the relevance of tumorigenesis and metastasis are still largely unknown. Here, we defined miRNAs involved in cancer metastasis (metastamirs) using an established mouse model for peritoneal dissemination of human scirrhous gastric carcinoma cells. Highly metastatic derivatives (44As3 cells) were derived from the parental cells originally isolated from patients (HSC-44PE cells). Using microarray analysis to identify differentially expressed miRNAs in 44As3 and HSC-44PE cells, we focused on miR-516a-3p as a candidate antimetastatic miRNA (antimetastamir) whose functions in cancer had not been studied. We confirmed attenuated expression of miR-516a-3p in 44As3 cells compared with HSC-44PE cells by Northern blot analysis and quantitative reverse transcriptase PCR. Stable ectopic overexpression in 44As3-miR-516a-3p cells permitted identification of sulfatase 1 as a direct target of the miRNA, through use of the isobaric tagging reagent iTRAQ and the QSTAR Elite Hybrid LC-MS/MS system. Sulfatase 1 is known to remove 6-O-sulfates from heparan sulfate proteoglycans on the cell surface, causing release of membrane-bound Wnt ligands from cells. Consistent with this function, Western blot analyses revealed high levels of Wnt3a, Wnt5a, and nuclear beta-catenin accumulation in 44As3 cells but relatively reduced levels in 44As3-miR-516a-3p cells. Notably, orthotopic inoculation of nude mice with 44As3-miR-516a-3p cells yielded significantly longer survival periods compared with mice inoculated with control 44As3 cells. Through atelocollagen-mediated delivery of an miR-516a-3p expression vector into orthotopic 44As3 tumors, we documented its feasibility as a treatment agent. Our findings define the miRNA miR-516-3p as an antimetastamir with potential therapeutic applications in blocking metastatic dissemination of gastric cancers.
机译:尽管微小的microRNA(miRNA)在不同类型的人类癌症组织中表达,但其病理生理作用以及与肿瘤发生和转移的相关性仍然未知。在这里,我们使用人类肝硬化胃癌细胞的腹膜扩散建立的小鼠模型定义了参与癌症转移(转移)的miRNA。高转移性衍生物(44As3细胞)来自最初从患者体内分离的亲代细胞(HSC-44PE细胞)。使用微阵列分析来鉴定44As3和HSC-44PE细胞中差异表达的miRNA,我们将miR-516a-3p用作候选的抗转移miRNA(antimetastamir),其在癌症中的功能尚未研究。通过Northern印迹分析和定量逆转录酶PCR,我们证实了与HSC-44PE细胞相比,miR-516a-3p在44As3细胞中的表达减弱。通过使用等压标记试剂iTRAQ和QSTAR Elite Hybrid LC-MS / MS系统,在44As3-miR-516a-3p细胞中稳定的异位过表达允许将硫酸酯酶1鉴定为miRNA的直接靶标。已知硫酸酯酶1可以从细胞表面的硫酸乙酰肝素蛋白聚糖中除去6-O-硫酸盐,从而导致膜结合的Wnt配体从细胞中释放出来。与此功能一致,蛋白质印迹分析显示44As3细胞中高水平的Wnt3a,Wnt5a和核β-连环蛋白积累,但在44As3-miR-516a-3p细胞中相对降低。值得注意的是,裸鼠原位接种44As3-miR-516a-3p细胞比接种对照44As3细胞的小鼠有更长的生存期。通过端粒胶原蛋白介导的miR-516a-3p表达载体向原位44As3肿瘤的递送,我们证明了其作为治疗药物的可行性。我们的发现将miRNA miR-516-3p定义为antastastamir,在阻止胃癌的转移性转移方面具有潜在的治疗应用。

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