Cancer Stem Cells and Tumor Metastasis

Displaying 1 - 26 of 26CSV
Kondo, Y., Ohashi, S., Katada, C., Nakai, Y., Yamamoto, Y., Tamaoki, M., Kikuchi, O., Yamada, A., Hirohashi, K., Mitani, Y., Kataoka, S., Saito, T., Vu, T. H. N., Kondo, T., Uneno, Y., Sunami, T., Yokoyama, A., Matsubara, J., Matsuda, T., … Muto, M. (2025). Aldh2 and the tumor suppressor Trp53 play important roles in alcohol-induced squamous field cancerization. Journal of Gastroenterology. https://doi.org/10.1007/s00535-024-02210-y
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Daigle, S. R., Elliott, G., Boiko, S., Sommerhalder, D., Noel, M. S., Sharma, S., Balaraman, R., Gutierrez, M., Demel, K., Moy, R. H., Ciccone, D., Zhang, X., Scheuber, A., & Kumar, P. (2024). 83 Tumor immune microenvironment characterization from pre- and post-dose tumors collected from a phase 1/2 study of NDI-101150, a hematopoietic progenitor kinase 1 (HPK1) inhibitor. Regular and Young Investigator Award Abstracts, A91–A91. https://doi.org/10.1136/jitc-2024-sitc2024.0083
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Baldassarri, I., Tavakol, D. N., Graney, P. L., Chramiec, A. G., Hibshoosh, H., & Vunjak-Novakovic, G. (2024). An engineered model of metastatic colonization of human bone marrow reveals breast cancer cell remodeling of the hematopoietic niche. Proceedings of the National Academy of Sciences, 121(42). https://doi.org/10.1073/pnas.2405257121
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Fine, R. E., Gilmore, R. C., Tomkovich, K. R., Dietz, J. R., Berry, M. P., Hernandez, L. E., Columbus, K. S., Seedman, S. A., Fisher, C. S., Han, L. K., Manahan, E. R., Hicks, R. D., Vaidya, R. P., Curcio, L. D., Sevrukov, A. B., Kenler, A. S., Taback, B., Chen, M., Miller, M. E., … Boolbol, S. K. (2024). Cryoablation Without Excision for Early-Stage Breast Cancer: ICE3 Trial 5-Year Follow-Up on Ipsilateral Breast Tumor Recurrence. Annals of Surgical Oncology, 31(11), 7273–7283. https://doi.org/10.1245/s10434-024-16181-0
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Kabeer, F., Tran, H., Andronescu, M., Singh, G., Lee, H., Salehi, S., Wang, B., Biele, J., Brimhall, J., Gee, D., Cerda, V., O’Flanagan, C., Algara, T., Kono, T., Beatty, S., Zaikova, E., Lai, D., Lee, E., … Moore, R. (2024). Single-cell decoding of drug induced transcriptomic reprogramming in triple negative breast cancers. Genome Biology, 25(1). https://doi.org/10.1186/s13059-024-03318-3
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Ali, A. M., & Raza, A. (2024). scRNAseq and High-Throughput Spatial Analysis of Tumor and Normal Microenvironment in Solid Tumors Reveal a Possible Origin of Circulating Tumor Hybrid Cells. Cancers, 16(7), 1444. https://doi.org/10.3390/cancers16071444
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Okolo, O., Honzel, E., Britton, W. R., Yu, V. X., Flashner, S., Martin, C., Nakagawa, H., & Parikh, A. S. (2023). Experimental Modeling of Host–Bacterial Interactions in Head and Neck Squamous Cell Carcinoma. Cancers, 15(24), 5810. https://doi.org/10.3390/cancers15245810
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Manieri, E., Tie, G., Malagola, E., Seruggia, D., Madha, S., Maglieri, A., Huang, K., Fujiwara, Y., Zhang, K., Orkin, S. H., Wang, T. C., He, R., McCarthy, N., & Shivdasani, R. A. (2023). Role of PDGFRA+ cells and a CD55+ PDGFRALo fraction in the gastric mesenchymal niche. Nature Communications, 14(1). https://doi.org/10.1038/s41467-023-43619-y
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Ghandhi, S. A., Morton, S. R., Shuryak, I., Lee, Y., Soni, R. K., Perrier, J. R., Bakke, J., Gahagan, J., Bujold, K., Authier, S., Amundson, S. A., Brenner, D. J., Nishita, D., Chang, P., & Turner, H. C. (2023). Longitudinal multi-omic changes in the transcriptome and proteome of peripheral blood cells after a 4 Gy total body radiation dose to Rhesus macaques. BMC Genomics, 24(1). https://doi.org/10.1186/s12864-023-09230-7
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Decker-Farrell, A. R., Ma, A., Li, F., Muir, A., & Olive, K. P. (2023). Generation and ex vivo culture of murine and human pancreatic ductal adenocarcinoma tissue slice explants. STAR Protocols, 4(4), 102711. https://doi.org/10.1016/j.xpro.2023.102711
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Cruz-Acuña, R., Kariuki, S. W., Sugiura, K., Karaiskos, S., Plaster, E. M., Loebel, C., Efe, G., Karakasheva, T., Gabre, J. T., Hu, J., Burdick, J. A., & Rustgi, A. K. (2023). Engineered hydrogel reveals contribution of matrix mechanics to esophageal adenocarcinoma and identifies matrix-activated therapeutic targets. Journal of Clinical Investigation, 133(23). https://doi.org/10.1172/jci168146
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Parikh, A. S., Li, Y., Mazul, A., Yu, V. X., Thorstad, W., Rich, J., Paniello, R. C., Caruana, S. M., Troob, S. H., Jackson, R. S., Pipkorn, P., Zolkind, P., Qi, Z., Adkins, D., Ding, L., & Puram, S. V. (2023). Immune Cell Deconvolution Reveals Possible Association of γδ T Cells with Poor Survival in Head and Neck Squamous Cell Carcinoma. Cancers, 15(19), 4855. https://doi.org/10.3390/cancers15194855
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Sugiura, K., Masuike, Y., Suzuki, K., Shin, A. E., Sakai, N., Matsubara, H., Otsuka, M., Sims, P. A., Lengner, C. J., & Rustgi, A. K. (2023). LIN28B promotes cell invasion and colorectal cancer metastasis via CLDN1 and NOTCH3. JCI Insight, 8(14). https://doi.org/10.1172/jci.insight.167310
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Okolo, O., Yu, V., Flashner, S., Martin, C., Nakagawa, H., Lin, D. T., Puram, S. V., & Parikh, A. S. (2023). Protocol for tumor dissociation and fluorescence-activated cell sorting of human head and neck cancers. STAR Protocols, 4(2), 102294. https://doi.org/10.1016/j.xpro.2023.102294
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Lemmetyinen, T. T., Viitala, E. W., Wartiovaara, L., Kaprio, T., Hagström, J., Haglund, C., Katajisto, P., Wang, T. C., Domènech-Moreno, E., & Ollila, S. (2023). Fibroblast-derived EGF ligand neuregulin 1 induces fetal-like reprogramming of the intestinal epithelium without supporting tumorigenic growth. Disease Models & Mechanisms, 16(4). https://doi.org/10.1242/dmm.049692
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Parejo-Alonso, B., Royo-García, A., Espiau-Romera, P., Courtois, S., Curiel-García, Á., Zagorac, S., Villaoslada, I., Olive, K. P., Heeschen, C., & Sancho, P. (2023). Pharmacological targeting of the receptor ALK inhibits tumorigenicity and overcomes chemoresistance in pancreatic ductal adenocarcinoma. Biomedicine & Pharmacotherapy, 158, 114162. https://doi.org/10.1016/j.biopha.2022.114162
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Curiel-Garcia, A., Decker-Farrell, A. R., Sastra, S. A., & Olive, K. P. (2022). Generation of orthotopic patient-derived xenograft models for pancreatic cancer using tumor slices. STAR Protocols, 3(4), 101899. https://doi.org/10.1016/j.xpro.2022.101899
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Park, K. W., Yang, H., Wi, H., Ock, S. A., Lee, P., Hwang, I.-S., & Lee, B. R. (2022). Effect of Wnt signaling pathway activation on the efficient generation of bovine intestinal organoids. Journal of Animal Reproduction and Biotechnology, 37(2), 136–143. https://doi.org/10.12750/jarb.37.2.136
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Obradovic, A., Graves, D., Korrer, M., Wang, Y., Roy, S., Naveed, A., Xu, Y., Luginbuhl, A., Curry, J., Gibson, M., Idrees, K., Hurley, P., Jiang, P., Liu, X. S., Uppaluri, R., Drake, C. G., Califano, A., & Kim, Y. J. (2022). Immunostimulatory Cancer-Associated Fibroblast Subpopulations Can Predict Immunotherapy Response in Head and Neck Cancer. Clinical Cancer Research, 28(10), 2094–2109. https://doi.org/10.1158/1078-0432.ccr-21-3570
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Wang, F., Liu, Y., Qiu, W., Shum, E., Feng, M., Zhao, D., Zheng, D., Borczuk, A., Cheng, H., & Halmos, B. (2022). Functional Analysis of MET Exon 14 Skipping Alteration in Cancer Invasion and Metastatic Dissemination. Cancer Research, 82(7), 1365–1379. https://doi.org/10.1158/0008-5472.can-21-1327
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Alhesa, A., Awad, H., Bloukh, S., Al-Balas, M., El-Sadoni, M., Qattan, D., Azab, B., & Saleh, T. (2022). PD-L1 expression in breast invasive ductal carcinoma with incomplete pathological response to neoadjuvant chemotherapy. International Journal of Immunopathology and Pharmacology, 36. https://doi.org/10.1177/03946320221078433
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Das, S., Feng, Q., Balasubramanian, I., Lin, X., Liu, H., Pellón-Cardenas, O., Yu, S., Zhang, X., Liu, Y., Wei, Z., Bonder, E. M., Verzi, M. P., Hsu, W., Zhang, L., Wang, T. C., & Gao, N. (2022). Colonic healing requires Wnt produced by epithelium as well as Tagln+ and Acta2+ stromal cells. Development, 149(1). https://doi.org/10.1242/dev.199587
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