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物理孢菌素可抑制乳腺癌中的线粒体呼吸、有氧糖酵解和肿瘤发生。

Physciosporin suppresses mitochondrial respiration, aerobic glycolysis, and tumorigenesis in breast cancer.

作者信息

Taş İsa, Varlı Mücahit, Son Yeseon, Han Jin, Kwak Dahye, Yang Yi, Zhou Rui, Gamage Chathurika D B, Pulat Sultan, Park So-Yeon, Yu Young Hyun, Moon Kyung-Sub, Lee Kyung-Hwa, Ha Hyung-Ho, Hur Jae-Seoun, Kim Hangun

机构信息

College of Pharmacy, Sunchon National University, Sunchon, Republic of Korea; Korean Lichen Research Institute, Sunchon National University, Sunchon, Republic of Korea.

College of Pharmacy, Sunchon National University, Sunchon, Republic of Korea.

出版信息

Phytomedicine. 2021 Oct;91:153674. doi: 10.1016/j.phymed.2021.153674. Epub 2021 Jul 18.

Abstract

BACKGROUND

Physciosporin (PHY) is one of the potent anticancer lichen compound. Recently, PHY was shown to suppress colorectal cancer cell proliferation, motility, and tumorigenesis through novel mechanisms of action.

PURPOSE

We investigated the effects of PHY on energy metabolism and tumorigenicity of the human breast cancer (BC) cells MCF-7 (estrogen and progesterone positive BC) and MDA-MB-231 (triple negative BC).

METHODS

The anticancer effect of PHY on cell viability, motility, cancer metabolism and tumorigenicity was evaluated by MTT assay, migration assay, clonogenic assay, anchorage-independent colony formation assay, glycolytic and mitochondrial metabolism analysis, qRT-PCR, flow cytometric analysis, Western blotting, immunohistochemistry in vitro; and by tumorigenicity study with orthotopic breast cancer xenograft model in vivo.

RESULTS

PHY markedly inhibited BC cell viability. Cell-cycle profiling and Annexin V-FITC/PI double staining showed that a toxic dosage of PHY triggered apoptosis in BC cell lines by regulating the B-cell lymphoma-2 (Bcl-2) family proteins and the activity of caspase pathway. At non-toxic concentrations, PHY potently decreased migration, proliferation, and tumorigenesis of BC cells in vitro. Metabolic studies revealed that PHY treatment significantly reduced the bioenergetic profile by decreasing respiration, ATP production, and glycolysis capacity. In addition, PHY significantly altered the levels of mitochondrial (PGC-1α) and glycolysis (GLUT1, HK2 and PKM2) markers, and downregulated transcriptional regulators involved in cancer cell metabolism, including β-catenin, c-Myc, HIF-1α, and NF-κB. An orthotopic implantation mouse model of BC confirmed that PHY treatment suppressed BC growth in vivo and target genes were consistently suppressed in tumor specimens.

CONCLUSION

The findings from our in vitro as well as in vivo studies exhibit that PHY suppresses energy metabolism as well as tumorigenesis in BC. Especially, PHY represents a promising therapeutic effect against hormone-insensitive BC (triple negative) by targeting energy metabolism.

摘要

背景

物理孢菌素(PHY)是一种强效的抗癌地衣化合物。最近,PHY被证明可通过新的作用机制抑制结肠癌细胞的增殖、运动和肿瘤发生。

目的

我们研究了PHY对人乳腺癌(BC)细胞MCF-7(雌激素和孕激素阳性乳腺癌)和MDA-MB-231(三阴性乳腺癌)能量代谢和致瘤性的影响。

方法

通过MTT法、迁移试验、克隆形成试验、非锚定依赖性集落形成试验、糖酵解和线粒体代谢分析、qRT-PCR、流式细胞术分析、蛋白质免疫印迹法、体外免疫组织化学;以及通过原位乳腺癌异种移植模型在体内进行致瘤性研究,评估PHY对细胞活力、运动、癌症代谢和致瘤性的抗癌作用。

结果

PHY显著抑制BC细胞活力。细胞周期分析和膜联蛋白V-FITC/PI双染显示,毒性剂量的PHY通过调节B细胞淋巴瘤-2(Bcl-2)家族蛋白和半胱天冬酶途径的活性诱导BC细胞系凋亡。在无毒浓度下,PHY在体外有效降低BC细胞的迁移、增殖和致瘤性。代谢研究表明,PHY处理通过降低呼吸、ATP产生和糖酵解能力显著降低生物能量谱。此外,PHY显著改变线粒体(PGC-1α)和糖酵解(GLUT1、HK2和PKM2)标志物的水平,并下调参与癌细胞代谢的转录调节因子,包括β-连环蛋白、c-Myc、HIF-1α和NF-κB。BC原位植入小鼠模型证实,PHY处理在体内抑制BC生长,且肿瘤标本中的靶基因持续受到抑制。

结论

我们的体外和体内研究结果表明,PHY抑制BC中的能量代谢以及肿瘤发生。特别是,PHY通过靶向能量代谢对激素不敏感的BC(三阴性)具有有前景的治疗效果。

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