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Liverani C, De Vita A, Minardi S, Kang Y, Mercatali L, Amadori D, et al. A biomimetic 3D model of hypoxia-driven cancer progression. Sci Rep. 2019 ;9(1):12263.
Esposito M, Mondal N, Greco TM, Wei Y, Spadazzi C, Lin S-C, et al. Bone vascular niche E-selectin induces mesenchymal-epithelial transition and Wnt activation in cancer cells to promote bone metastasis. Nat Cell Biol. 2019 ;21(5):627-639.
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Oberstein A, Shenk T. Cellular responses to human cytomegalovirus infection: Induction of a mesenchymal-to-epithelial transition (MET) phenotype. Proc Natl Acad Sci U S A. 2017 ;114(39):E8244-E8253.
Aiello NM, Kang Y. Context-dependent EMT programs in cancer metastasis. J Exp Med. 2019 ;216(5):1016-1026.
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Celià-Terrassa T, Kang Y. Distinctive properties of metastasis-initiating cells. Genes Dev. 2016 ;30(8):892-908.
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Yang J, Antin P, Berx G, Blanpain C, Brabletz T, Bronner M, et al. Guidelines and definitions for research on epithelial-mesenchymal transition. Nat Rev Mol Cell Biol. 2020 ;21(6):341-352.
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Celià-Terrassa T, Bastian C, Liu DD, Ell B, Aiello NM, Wei Y, et al.. Hysteresis control of epithelial-mesenchymal transition dynamics conveys a distinct program with enhanced metastatic ability. Nat Commun. 2018 ;9(1):5005.
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Celià-Terrassa T, Kang Y. Metastatic niche functions and therapeutic opportunities. Nat Cell Biol. 2018 ;20(8):868-877.
Weng M, Wieschaus E. Myosin-dependent remodeling of adherens junctions protects junctions from Snail-dependent disassembly. J Cell Biol. 2016 ;212(2):219-29.
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Shen M, Kang Y. Role Reversal: A Pro-metastatic Function of E-Cadherin. Dev Cell. 2019 ;51(4):417-419.
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Pang M-F, Georgoudaki A-M, Lambut L, Johansson J, Tabor V, Hagikura K, et al. TGF-β1-induced EMT promotes targeted migration of breast cancer cells through the lymphatic system by the activation of CCR7/CCL21-mediated chemotaxis. Oncogene. 2016 ;35(6):748-60.