Siegel, R. L., et al. (2023). Cancer statistics, 2023. CA: a Cancer Journal for Clinicians, 73(1), 17–48.
Akhtar, M., et al. (2019). Paget’s “seed and soil” theory of cancer metastasis: An idea whose time has come. Advances in Anatomic Pathology, 26(1), 69–74.
Article CAS PubMed Google Scholar
Chambers, A. F., Groom, A. C., & MacDonald, I. C. (2002). Dissemination and growth of cancer cells in metastatic sites. Nature Reviews. Cancer, 2(8), 563–572.
Article CAS PubMed Google Scholar
Ribatti, D., Mangialardi, G., & Vacca, A. (2006). Stephen Paget and the 'seed and soil' theory of metastatic dissemination. Clinical and Experimental Medicine, 6(4), 145–149.
Article CAS PubMed Google Scholar
Fragomeni, S. M., Sciallis, A., & Jeruss, J. S. (2018). Molecular subtypes and local-regional control of breast cancer. Surgical Oncology Clinics, 27(1), 95–120.
Jones, R. L., Constantinidou, A., & Reis-Filho, J. S. (2012). Molecular classification of breast cancer. Surgical Pathology, Clinical, 5(3), 701–717.
Dent, R., et al. (2007). Triple-negative breast cancer: Clinical features and patterns of recurrence. Clinical Cancer Research, 13(15 Pt 1), 4429–4434.
André, F., & Zielinski, C. C. (2012). Optimal strategies for the treatment of metastatic triple-negative breast cancer with currently approved agents. Annals of Oncology, 23, vi46.
Shiovitz, S., & Korde, L. A. (2015). Genetics of breast cancer: A topic in evolution. Annals of Oncology, 26(7), 1291–1299.
Article CAS PubMed PubMed Central Google Scholar
Shahbandi, A., Nguyen, H. D., & Jackson, J. G. (2020). TP53 mutations and outcomes in breast cancer: Reading beyond the headlines. Trends Cancer, 6(2), 98–110.
Article CAS PubMed PubMed Central Google Scholar
Corso, G., et al. (2018). Prognosis and outcome in CDH1-mutant lobular breast cancer. European Journal of Cancer Prevention, 27(3), 237–238.
Article PubMed PubMed Central Google Scholar
Corso, G., et al. (2016). CDH1 germline mutations and hereditary lobular breast cancer. Familial Cancer, 15(2), 215–219.
Article CAS PubMed Google Scholar
Kechagioglou, P., et al. (2014). Tumor suppressor PTEN in breast cancer: Heterozygosity, mutations and protein expression. Anticancer Research, 34(3), 1387–1400.
Chen, J., & Lindblom, A. (2000). Germline mutation screening of the STK11/LKB1 gene in familial breast cancer with LOH on 19p. Clinical Genetics, 57(5), 394–397.
Article CAS PubMed Google Scholar
Hanahan, D., & Weinberg, R. A. (2011). Hallmarks of cancer: The next generation. Cell, 144(5), 646–674.
Article CAS PubMed Google Scholar
van Denderen, B. J., & Thompson, E. W. (2013). Cancer: The to and fro of tumour spread. Nature, 493(7433), 487–488.
Chaffer, C. L., & Weinberg, R. A. (2011). A perspective on cancer cell metastasis. Science, 331(6024), 1559–1564.
Article CAS PubMed Google Scholar
Gupta, G. P., & Massagué, J. (2006). Cancer metastasis: Building a framework. Cell, 127(4), 679–695.
Article CAS PubMed Google Scholar
Fares, J., et al. (2020). Molecular principles of metastasis: A hallmark of cancer revisited. Signal Transduction and Targeted Therapy, 5(1), 28.
Article PubMed PubMed Central Google Scholar
Klein, C. A. (2009). Parallel progression of primary tumours and metastases. Nature Reviews. Cancer, 9(4), 302–312.
Article CAS PubMed Google Scholar
Jin, X., & Mu, P. (2015). Targeting breast cancer metastasis. Breast Cancer (Auckl.), 9(Suppl 1), 23–34.
Talmadge, J. E., & Fidler, I. J. (2010). AACR centennial series: The biology of cancer metastasis: historical perspective. Cancer Research, 70(14), 5649–5669.
Article CAS PubMed PubMed Central Google Scholar
Nguyen, D. X., Bos, P. D., & Massagué, J. (2009). Metastasis: From dissemination to organ-specific colonization. Nature Reviews. Cancer, 9(4), 274–284.
Article CAS PubMed Google Scholar
Pantel, K., & Brakenhoff, R. H. (2004). Dissecting the metastatic cascade. Nature Reviews. Cancer, 4(6), 448–456.
Article CAS PubMed Google Scholar
Valastyan, S., & Weinberg, R. A. (2011). Tumor metastasis: Molecular insights and evolving paradigms. Cell, 147(2), 275–292.
Article CAS PubMed PubMed Central Google Scholar
Labelle, M., & Hynes, R. O. (2012). The initial hours of metastasis: The importance of cooperative host-tumor cell interactions during hematogenous dissemination. Cancer Discovery, 2(12), 1091–1099.
Article CAS PubMed PubMed Central Google Scholar
Leber, M. F., & Efferth, T. (2009). Molecular principles of cancer invasion and metastasis (review). International Journal of Oncology, 34(4), 881–895.
Mouw, J. K., Ou, G., & Weaver, V. M. (2014). Extracellular matrix assembly: A multiscale deconstruction. Nature Reviews. Molecular Cell Biology, 15(12), 771–785.
Article CAS PubMed PubMed Central Google Scholar
Cheung, K. J., & Ewald, A. J. (2016). A collective route to metastasis: Seeding by tumor cell clusters. Science, 352(6282), 167–169.
Article CAS PubMed PubMed Central Google Scholar
Friedl, P., & Wolf, K. (2003). Tumour-cell invasion and migration: Diversity and escape mechanisms. Nature Reviews. Cancer, 3(5), 362–374.
Article CAS PubMed Google Scholar
Brabletz, T., et al. (2018). EMT in cancer. Nature Reviews. Cancer, 18(2), 128–134.
Article CAS PubMed Google Scholar
Acloque, H., et al. (2009). Epithelial-mesenchymal transitions: The importance of changing cell state in development and disease. The Journal of Clinical Investigation, 119(6), 1438–1449.
Article CAS PubMed PubMed Central Google Scholar
Thiery, J. P., et al. (2009). Epithelial-mesenchymal transitions in development and disease. Cell, 139(5), 871–890.
Article CAS PubMed Google Scholar
Charpentier, M., & Martin, S. (2013). Interplay of stem cell characteristics, EMT, and microtentacles in circulating breast tumor cells. Cancers (Basel), 5(4), 1545–1565.
Onder, T. T., et al. (2008). Loss of E-cadherin promotes metastasis via multiple downstream transcriptional pathways. Cancer Research, 68(10), 3645–3654.
Article CAS PubMed Google Scholar
Chao, Y. L., Shepard, C. R., & Wells, A. (2010). Breast carcinoma cells re-express E-cadherin during mesenchymal to epithelial reverting transition. Molecular Cancer, 9, 179.
Article PubMed PubMed Central Google Scholar
Bonnomet, A., et al. (2012). A dynamic in vivo model of epithelial-to-mesenchymal transitions in circulating tumor cells and metastases of breast cancer. Oncogene, 31(33), 3741–3753.
Article CAS PubMed Google Scholar
Moreno-Bueno, G., Portillo, F., & Cano, A. (2008). Transcriptional regulation of cell polarity in EMT and cancer. Oncogene, 27(55), 6958–6969.
Article CAS PubMed Google Scholar
Si, W., et al. (2015). Dysfunction of the reciprocal feedback loop between GATA3- and ZEB2-nucleated repression programs contributes to breast cancer metastasis. Cancer Cell, 27(6), 822–836.
Article CAS PubMed Google Scholar
Duan, H., et al. (2017). TET1 inhibits EMT of ovarian cancer cells through activating Wnt/β-catenin signaling inhibitors DKK1 and SFRP2. Gynecologic Oncology, 147(2)
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