| Literature DB >> 29872696 |
Haitao Li1,2,3, Mee-Hyun Lee1,2, Kangdong Liu1,2, Ting Wang2, Mengqiu Song2, Yaping Han2, Ke Yao1, Hua Xie1, Feng Zhu1, Michael Grossmann1, Margot P Cleary1, Wei Chen3, Ann M Bode1, Zigang Dong1,2.
Abstract
Targeting the estrogen receptor as a strategy has been the gold standard for breast cancer chemoprevention or breast cancer recurrence, but its benefit is limited to estrogen receptor-positive tumors. Cyclooxygenases have been implicated in mammary tumorigenesis. We sought to identify the key prostaglandin responsible for the pro-neoplastic effect of cyclooxygenases and develop prostaglandin-targeted strategies for breast cancer chemoprevention or therapy. Immunohistochemical analysis revealed that either thromboxane A2 synthase 1 or the thromboxane A2 receptor is highly expressed in human breast tumors as well as premalignant lesions, but not in normal mammary tissues. Clinically, the thromboxane A2 pathway might be associated with HER2-positive and axillary lymph node metastasis in human breast cancer. We found that the thromboxane A2 pathway was required for breast cancer cell growth, anchorage-independent growth and invasion capabilities. Importantly, we discovered that switching off thromboxane A2 biosynthesis effectively suppressed either MMTV-HER2-driven mammary tumorigenesis or breast cancer metastasis in preclinical animal models. Taken together, this study established a critical pathophysiological role of the thromboxane A2 pathway in breast cancer, and provided a rationale for introducing a strategy targeting thromboxane A2 for breast cancer chemoprevention and therapy.Entities:
Year: 2017 PMID: 29872696 PMCID: PMC5859468 DOI: 10.1038/s41698-017-0011-4
Source DB: PubMed Journal: NPJ Precis Oncol ISSN: 2397-768X
Fig. 1Pathophysiological role of the TXA2 pathway in human breast cancer. a Immuno-histochemical staining of TBXAS1 in human breast cancer tissues. (a) normal adjacent breast tissues; (b) adenosis of breast; (c) atypical hyperplasia of duct epithelium; (d) infiltrating duct carcinoma. Original magnification: 200×. b Immunohistochemical staining of TBXA2R in human breast cancer. (a) normal adjacent breast tissues; (b–d) infiltrating duct carcinoma. Original magnification: 200×. c Clinical relevance of TBXA2R in human breast cancer. For a, b, c, the graphs show the staining of TBXAS1 (a) or TBXA2R (b, c) and the horizontal line indicates the mean value. The asterisks indicate a significant difference compared with the NAT (normal adjacent tissue) group (*p < 0.05; **p < 0.01; ***p < 0.001)
Fig. 2The TXA2 pathway is required for maintenance of malignant characteristics of MCF-7, T47D, and SK-BR-3 breast cancer cells. a Knockdown of TBXAS1 inhibits anchorage-independent growth of human breast cancer cells. b Knockdown of TBXA2R inhibits anchorage-independent growth of human breast cancer cells. Knockdown of TBXAS1 or TBXA2R in breast cancer cells was analyzed by Western blot. Anchorage-independent cell growth was evaluated by colony formation in soft-agar. Data are presented as mean values ± S.E.M. from three independent experiments. The asterisks (***) indicate a significant (p < 0.001) decrease compared to the Mock group. c Effect of ectopic expression of TBXAS1 on anchorage-independent cell growth and invasion. At 50–60% confluence, 4T1 cells were transiently transfected with either an empty vector (pcDNA3.1) or a TBXAS1 plasmid (pcDNA3.1-V5-TBXAS1). After 24 h, G418 (1200 ng/mL) was added for selection of stable subclones. After 3 week, the stable clones obtained were verified by Western blot. Anchorage-independent cell growth was evaluated by colony formation in soft-agar. Cell invasion was determined by transwell assay. Data are presented as mean values ± S.E.M. from three independent experiments. The asterisks indicate a significant difference compared with vector group (**p < 0.01; ***p < 0.001). d Effect of NSAIDs on cell invasion. 4T1 cells were plated in a Matrigel-coated upper chamber with or without NSAIDs in the medium. After incubation for 24 h, non-migrated cells on the upper surface of the filter were wiped out, and cells on the lower surface of the membrane were stained with crystal violet and counted under a light microscope. The asterisks indicate a significant difference compared with the control group (*p < 0.05; **p < 0.01; ***p < 0.001)
Fig. 3Chemoprevention of HER2-positive breast cancer by targeting theTXA2 pathway. a TBXAS1 is up-regulated in HER2-driven mammary tumorigenesis in an MMTV-Her2/neu transgenic mouse mammary tumor model. Immunohistochemical staining of TBXAS1 in mouse mammary tumors or normal mammary tissues. Original magnification: 200×. b Switching off TXA2 biosynthesis attenuates HER2-driven breast tumorigenesis. MMTV-HER2/neu transgenic mice were treated with EPA for a total of 60 weeks. c Effects of EPA intake on circulating TXA2 and PGE2 levels. d Effects of EPA intake on TBXAS1 or TBXA2R in the MMTV-neu mammary glands and tumors. Because the FVB background of MMTV-Her2/neu transgenic mice, matched non-transgenic FVB mice were used as a baseline to minimize the genetic differences. Production of serum PGs was measured by ELISA as described in “Materials and Methods”. Data are presented as mean values ± S.E.M. The asterisks indicate a significant difference among groups (*p < 0.05, ***p < 0.001)
Fig. 4Breast cancer metastasis is attenuated by targeting the TXA2 pathway. a Murine 4T1 tumor cells spontaneously metastasize from the primary tumor (mammary gland) to the lung. Immunohistochemical staining showed that metastatic foci in lung strongly express TBXAS1. b Compared with parental cells, 4T1sub-line cells isolated from lung metastatic foci generally express much higher levels of TBXAS1. c Knockdown of TBXAS1 decreases the ability of 4T1 cells to metastasize to the lung. Data are presented as mean values ± S.E.M. (n = 6). The asterisks indicate a significant difference compared with Mock control (**p < 0.01; ***p < 0.001). d Ectopic expression of TBXAS1 increases the ability of 4T1 cells to metastasize to the lung. Data are presented as mean values ± S.E.M. (n = 6). The asterisks indicate a significant difference compared with vector control (**p < 0.01). e Pharmacological blockage of TXA2 biosynthesis suppresses breast cancer metastasis to the lung. Drug treatment: 1, vehicle; 2, aspirin (100 mg/kg); 3, indomethacin (1 mg/kg); 4, celecoxib (10 mg/kg); 5, ozagrel sodium (100 mg/kg), 6, fish oil (500 mg/kg). Data are presented as mean values ± S.E.M. (n = 10). The asterisks indicate a significant difference compared with vehicle control (*p < 0.05, **p < 0.01, ***p < 0.001)