Literature DB >> 26545287

Luteolin Inhibits Breast Cancer Development and Progression In Vitro and In Vivo by Suppressing Notch Signaling and Regulating MiRNAs.

Da-Wei Sun, He-Da Zhang, Ling Mao, Chang-Fei Mao, Wei Chen, Meng Cui, Rong Ma, Hai-Xia Cao, Chang-Weng Jing, Zhuo Wang, Jian-Zhong Wu, Jin-Hai Tang.   

Abstract

BACKGROUND/AIMS: This study aims to investigate the effect of Luteolin on breast cancer in vitro and in vivo and the interaction between miRNAs and Notch signaling after Luteolin intervention, and illustrates the possible underlying mechanism and regulation loop.
METHODS: Cell growth/survival assays and cell cycle analyses were performed to evaluate cell survival in vitro. Scratch tests, cell invasion assays and tube formation assays were carried out to analyze cell viability and identify the impact of Luteolin on angiogenesis. Critical components in the Notch pathway including proteins and mRNAs were detected by Western blotting analyses, ELISA assays and real-time reverse transcription-polymerase chain reaction. Matrix metalloproteinases activity was evaluated by gelatin zymography analyses. MiRNAs were analyzed by miRNA expression assays. After MDA-MB-231 cells were separately transfected with Notch-1 siRNA/cDNA and miRNA mimics, the above assays were also carried out to examine potential tumor cell changes. Xenograft models were applied to evaluate the treatment potency of Luteolin in breast cancer.
RESULTS: Luteolin significantly inhibited breast cancer cell survival, cell cycle, tube formation and the expression of Notch signaling-related proteins and mRNAs, and regulated miRNAs. After introducing Notch-1 siRNA and miRNA mimics, MDA-MB-231 cells presented with changes in miRNA levels, reduced Notch signaling-related proteins, and decreased tumor survival, invasion and angiogenesis.
CONCLUSION: Luteolin inhibits Notch signaling by regulating miRNAs. However, the effect of miRNAs on the Notch pathway could be either Luteolin-dependent or Luteolin-independent. Furthermore, Notch-1 alteration may inversely change miRNAs levels. Our data demonstrates that Luteolin, miRNAs and the Notch pathway are critical in breast cancer development and prognosis.
© 2015 S. Karger AG, Basel.

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Year:  2015        PMID: 26545287     DOI: 10.1159/000438535

Source DB:  PubMed          Journal:  Cell Physiol Biochem        ISSN: 1015-8987


  29 in total

Review 1.  Notch signaling pathway networks in cancer metastasis: a new target for cancer therapy.

Authors:  Li Li; Ping Tang; Shun Li; Xiang Qin; Hong Yang; Chunhui Wu; Yiyao Liu
Journal:  Med Oncol       Date:  2017-09-16       Impact factor: 3.064

2.  Antiproliferative and apoptotic potential of Glycyrrhizin against HPV16+ Caski cervical cancer cells: A plausible association with downreguation of HPV E6 and E7 oncogenes and Notch signaling pathway.

Authors:  Afza Ahmad; Rohit Kumar Tiwari; Prakriti Mishra; Ali G Alkhathami; Tahani M Almeleebia; Mohammad Y Alshahrani; Irfan Ahmad; Rawan Amer Asiri; Noura M Alabdullah; Mohamed Hussien; Mohd Saeed; Irfan Ahmad Ansari
Journal:  Saudi J Biol Sci       Date:  2022-01-31       Impact factor: 4.052

Review 3.  Plant-derived glucose transport inhibitors with potential antitumor activity.

Authors:  Pratik Shriwas; Xiaozhuo Chen; A Douglas Kinghorn; Yulin Ren
Journal:  Phytother Res       Date:  2019-12-10       Impact factor: 5.878

4.  Combined Luteolin and Indole-3-Carbinol Synergistically Constrains ERα-Positive Breast Cancer by Dual Inhibiting Estrogen Receptor Alpha and Cyclin-Dependent Kinase 4/6 Pathway in Cultured Cells and Xenograft Mice.

Authors:  Xiaoyong Wang; Lijuan Zhang; Qi Dai; Hongzong Si; Longyun Zhang; Sakina E Eltom; Hongwei Si
Journal:  Cancers (Basel)       Date:  2021-04-27       Impact factor: 6.639

5.  Regulation of Sirt1/Nrf2/TNF-α signaling pathway by luteolin is critical to attenuate acute mercuric chloride exposure induced hepatotoxicity.

Authors:  Daqian Yang; Xiao Tan; Zhanjun Lv; Biying Liu; Ruiqi Baiyun; Jingjing Lu; Zhigang Zhang
Journal:  Sci Rep       Date:  2016-11-17       Impact factor: 4.379

6.  Luteolin inhibits cell proliferation and induces cell apoptosis via down-regulation of mitochondrial membrane potential in esophageal carcinoma cells EC1 and KYSE450.

Authors:  Ping Chen; Jing-Yang Zhang; Bei-Bei Sha; Yan-Er Ma; Tao Hu; Yang-Cheng Ma; Hao Sun; Jian-Xiang Shi; Zi-Ming Dong; Pei Li
Journal:  Oncotarget       Date:  2017-04-18

7.  HMGB2 is associated with malignancy and regulates Warburg effect by targeting LDHB and FBP1 in breast cancer.

Authors:  Deyuan Fu; Jing Li; Jinli Wei; Zhengquan Zhang; Yulin Luo; Haosheng Tan; Chuanli Ren
Journal:  Cell Commun Signal       Date:  2018-02-20       Impact factor: 5.712

8.  Synergistic anti-tumor effects of dasatinib and dendritic cell vaccine on metastatic breast cancer in a mouse model.

Authors:  Ningning Song; Hulin Guo; Jia Ren; Suhong Hao; Xinchao Wang
Journal:  Oncol Lett       Date:  2018-03-07       Impact factor: 2.967

Review 9.  Luteolin: A Flavonoid that Has Multiple Cardio-Protective Effects and Its Molecular Mechanisms.

Authors:  Yuanyuan Luo; Pingping Shang; Dongye Li
Journal:  Front Pharmacol       Date:  2017-10-06       Impact factor: 5.810

Review 10.  The "Yin and Yang" of Natural Compounds in Anticancer Therapy of Triple-Negative Breast Cancers.

Authors:  Elizabeth Varghese; Samson Mathews Samuel; Mariam Abotaleb; Sohaila Cheema; Ravinder Mamtani; Dietrich Büsselberg
Journal:  Cancers (Basel)       Date:  2018-09-21       Impact factor: 6.639

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