Unraveling the metastasis-preventing effect of miR-200c in vitro and in vivo.

IF 6.6 2区 医学 Q1 Biochemistry, Genetics and Molecular Biology Molecular Oncology Pub Date : 2024-10-15 DOI:10.1002/1878-0261.13712
Bianca Köhler, Emily Brieger, Tom Brandstätter, Elisa Hörterer, Ulrich Wilk, Jana Pöhmerer, Anna Jötten, Philipp Paulitschke, Chase P Broedersz, Stefan Zahler, Joachim O Rädler, Ernst Wagner, Andreas Roidl
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Abstract

Advanced breast cancer, as well as ineffective treatments leading to surviving cancer cells, can result in the dissemination of these malignant cells from the primary tumor to distant organs. Recent research has shown that microRNA 200c (miR-200c) can hamper certain steps of the invasion-metastasis cascade. However, it is still unclear whether miR-200c expression alone is sufficient to prevent breast cancer cells from metastasis formation. Hence, we performed a xenograft mouse experiment with inducible miR-200c expression in MDA-MB 231 cells. The ex vivo analysis of metastatic sites in a multitude of organs, including lung, liver, brain, and spleen, revealed a dramatically reduced metastatic burden in mice with miR-200c-expressing tumors. A fundamental prerequisite for metastasis formation is the motility of cancer cells and, therefore, their migration. Consequently, we analyzed the effect of miR-200c on collective- and single-cell migration in vitro, utilizing MDA-MB 231 and MCF7 cell systems with genetically modified miR-200c expression. Analysis of collective-cell migration revealed confluence-dependent motility of cells with altered miR-200c expression. Additionally, scratch assays showed an enhanced predisposition of miR-200c-negative cells to leave cell clusters. The in-between stage of collective- and single-cell migration was validated using transwell assays, which showed reduced migration of miR-200c-positive cells. Finally, to measure migration at the single-cell level, a novel assay on dumbbell-shaped micropatterns was performed, which revealed that miR-200c critically determines confined cell motility. All of these results demonstrate that sole expression of miR-200c impedes metastasis formation in vivo and migration in vitro and highlights miR-200c as a metastasis suppressor in breast cancer.

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揭示 miR-200c 在体外和体内预防转移的作用。
晚期乳腺癌以及导致癌细胞存活的无效治疗会导致这些恶性细胞从原发肿瘤扩散到远处器官。最近的研究表明,microRNA 200c(miR-200c)可以阻碍侵袭-转移级联的某些步骤。然而,目前还不清楚仅靠 miR-200c 的表达是否足以阻止乳腺癌细胞形成转移。因此,我们在 MDA-MB 231 细胞中进行了诱导 miR-200c 表达的异种移植小鼠实验。对包括肺、肝、脑和脾脏在内的多个器官的转移部位进行的体内外分析表明,表达 miR-200c 的肿瘤小鼠的转移负荷显著减少。转移形成的一个基本前提是癌细胞的运动性,因此也包括其迁移性。因此,我们利用转基因表达 miR-200c 的 MDA-MB 231 和 MCF7 细胞系统,分析了 miR-200c 对体外集体迁移和单细胞迁移的影响。细胞集体迁移分析表明,miR-200c 表达改变的细胞具有依赖汇合的运动能力。此外,划痕试验表明,miR-200c 阴性细胞更容易离开细胞集群。集体迁移和单细胞迁移的中间阶段通过透孔试验进行了验证,结果表明 miR-200c 阳性细胞的迁移能力降低。最后,为了测量单细胞水平的迁移,研究人员在哑铃形微图案上进行了一种新的检测,结果显示 miR-200c 对封闭细胞的运动性起着关键作用。所有这些结果表明,单独表达 miR-200c 会阻碍体内转移的形成和体外迁移,并突出了 miR-200c 作为乳腺癌转移抑制因子的作用。
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来源期刊
Molecular Oncology
Molecular Oncology Biochemistry, Genetics and Molecular Biology-Molecular Medicine
CiteScore
11.80
自引率
1.50%
发文量
203
审稿时长
10 weeks
期刊介绍: Molecular Oncology highlights new discoveries, approaches, and technical developments, in basic, clinical and discovery-driven translational cancer research. It publishes research articles, reviews (by invitation only), and timely science policy articles. The journal is now fully Open Access with all articles published over the past 10 years freely available.
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