Tanshinone IIA reduces SW837 colorectal cancer cell viability via the promotion of mitochondrial fission by activating JNK-Mff signaling pathways.

Q1 Biochemistry, Genetics and Molecular Biology
Sayilaxi Jieensinue, Hong Zhu, Guangcheng Li, Keli Dong, Meiting Liang, Yayue Li
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引用次数: 29

Abstract

Background: Mitochondrial homeostasis has been increasingly viewed as a potential target of cancer therapy, and mitochondrial fission is a novel regulator of mitochondrial function and apoptosis. The aim of our study was to determine the detailed role of mitochondrial fission in SW837 colorectal cancer cell viability, mobility and proliferation. In addition, the current study also investigated the therapeutic impact of Tanshinone IIA (Tan IIA), a type of anticancer adjuvant drug, on cancer mitochondrial homeostasis.

Results: The results of our data illustrated that Tan IIA promoted SW837 cell death, impaired cell migration and mediated cancer proliferation arrest in a dose-dependent manner. Functional investigation exhibited that Tan IIA treatment evoked mitochondrial injury, as witnessed by mitochondrial ROS overproduction, mitochondrial potential collapse, antioxidant factor downregulation, mitochondrial pro-apoptotic protein upregulation, and caspase-9-dependent apoptotic pathway activation. Furthermore, we confirmed that Tan IIA mediated mitochondrial damage by activating mitochondrial fission, and the inhibition of mitochondrial fission abrogated the proapoptotic effects of Tan IIA on SW837 cells. To this end, our results demonstrated that Tan IIA modulated mitochondrial fission via the JNK-Mff pathways. The blockade of the JNK-Mff axis inhibited Tan IIA-mediated mitochondrial fission and promoted the survival of SW837 cells.

Conclusions: Altogether, our results identified mitochondrial fission as a new potential target to control cancer viability, mobility and proliferation. Furthermore, our findings demonstrate that Tan IIA is an effective drug to treat colorectal cancer by activating JNK-Mff-mitochondrial fission pathways.

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丹参酮IIA通过激活JNK-Mff信号通路促进线粒体分裂,从而降低SW837结直肠癌细胞的活力。
背景:线粒体稳态越来越被视为癌症治疗的潜在靶点,而线粒体分裂是线粒体功能和细胞凋亡的一种新的调节因子。我们的研究目的是确定线粒体裂变在SW837结直肠癌细胞活力、移动性和增殖中的详细作用。此外,本研究还研究了抗癌辅助药物丹参酮IIA (Tan IIA)对肿瘤线粒体稳态的治疗作用。结果:我们的数据表明,Tan IIA以剂量依赖的方式促进SW837细胞死亡、细胞迁移受损和介导癌症增殖阻滞。功能研究显示,Tan IIA处理引起线粒体损伤,表现为线粒体ROS过量产生、线粒体电位崩溃、抗氧化因子下调、线粒体促凋亡蛋白上调和caspase-9依赖性凋亡通路激活。此外,我们证实Tan IIA通过激活线粒体分裂介导线粒体损伤,并且线粒体分裂的抑制消除了Tan IIA对SW837细胞的促凋亡作用。为此,我们的研究结果表明,Tan IIA通过JNK-Mff途径调节线粒体裂变。阻断JNK-Mff轴可抑制Tan iia介导的线粒体分裂,促进SW837细胞的存活。结论:总之,我们的研究结果确定了线粒体分裂是控制癌症生存能力、移动性和增殖的新的潜在靶点。此外,我们的研究结果表明,Tan IIA是一种通过激活jnk - mff -线粒体裂变途径治疗结直肠癌的有效药物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
BMC Cell Biology
BMC Cell Biology 生物-细胞生物学
CiteScore
7.30
自引率
0.00%
发文量
0
审稿时长
12 months
期刊介绍: BMC Molecular and Cell Biology, formerly known as BMC Cell Biology, is an open access journal that considers articles on all aspects of both eukaryotic and prokaryotic cell and molecular biology, including structural and functional cell biology, DNA and RNA in a cellular context and biochemistry, as well as research using both the experimental and theoretical aspects of physics to study biological processes and investigations into the structure of biological macromolecules.
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