Lipid Metabolism in Cancer Pathogenesis

Displaying 1 - 17 of 17CSV
McIntire, L. B., Wartchow, K. M., Costa, A. P., Krumsiek, J., Mares, J., Menon, V., Lazarian, A., Bartelo, N., & Dartora, W. (2024). Discovery of region‐specific lipid biomarkers characterized by distinct changes over time in the brains of APPsw mice. Alzheimer’s & Dementia, 20(S2). Portico. https://doi.org/10.1002/alz.091901
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Wu, H.-C., Lai, Y., Liao, Y., Deyssenroth, M., Miller, G. W., Santella, R. M., & Terry, M. B. (2024). Plasma metabolomics profiles and breast cancer risk. Breast Cancer Research, 26(1). https://doi.org/10.1186/s13058-024-01896-5
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Plumber, S. A., Tate, T., Al-Ahmadie, H., Chen, X., Choi, W., Basar, M., Lu, C., Viny, A., Batourina, E., Li, J., Gretarsson, K., Alija, B., Molotkov, A., Wiessner, G., Lee, B. H. L., McKiernan, J., McConkey, D. J., Dinney, C., Czerniak, B., & Mendelsohn, C. L. (2024). Rosiglitazone and trametinib exhibit potent anti-tumor activity in a mouse model of muscle invasive bladder cancer. Nature Communications, 15(1). https://doi.org/10.1038/s41467-024-50678-2
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Reyes-Soffer, G., Yeang, C., Michos, E. D., Boatwright, W., & Ballantyne, C. M. (2024). High lipoprotein(a): Actionable strategies for risk assessment and mitigation. American Journal of Preventive Cardiology, 18, 100651. https://doi.org/10.1016/j.ajpc.2024.100651
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Pian, X., Tang, Y., Sun, Y., Sheng, Y., Yan, S., Yuan, H., Sun, Y., Cui, J., & Li, Y. (2024). Danggui Shaoyao powder improves hepatic lipid metabolism in atherosclerosis mice via PPARγ-LXRα-ABCA1 pathway regulation. Journal of Traditional Chinese Medical Sciences, 11(2), 199–206. https://doi.org/10.1016/j.jtcms.2024.03.010
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Johansson, H., Guerrieri-Gonzaga, A., Gandini, S., Bertelsen, B.-E., Macis, D., Serrano, D., Mellgren, G., Lazzeroni, M., Thomas, P. S., Crew, K. D., Kumar, N. B., Briata, I. M., Galimberti, V., Viale, G., Vornik, L. A., Aristarco, V., Buttiron Webber, T., Spinaci, S., Brown, P. H., … DeCensi, A. (2024). Alternative dosing regimen of exemestane in a randomized presurgical trial: the role of obesity in biomarker modulation. Npj Breast Cancer, 10(1). https://doi.org/10.1038/s41523-024-00616-8
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Yuan, M., Mahmud, I., Katsushima, K., Joshi, K., Saulnier, O., Pokhrel, R., Lee, B., Liyanage, W., Kunhiraman, H., Stapleton, S., Gonzalez-Gomez, I., Kannan, R. M., Eisemann, T., Kolanthai, E., Seal, S., Garrett, T. J., Abbasi, S., Bockley, K., Hanes, J., … Perera, R. J. (2023). miRNA-211 maintains metabolic homeostasis in medulloblastoma through its target gene long-chain acyl-CoA synthetase 4. Acta Neuropathologica Communications, 11(1). https://doi.org/10.1186/s40478-023-01684-w
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Upadhyayula, P. S., Higgins, D. M., Mela, A., Banu, M., Dovas, A., Zandkarimi, F., Patel, P., Mahajan, A., Humala, N., Nguyen, T. T. T., Chaudhary, K. R., Liao, L., Argenziano, M., Sudhakar, T., Sperring, C. P., Shapiro, B. L., Ahmed, E. R., Kinslow, C., Ye, L. F., … Canoll, P. (2023). Dietary restriction of cysteine and methionine sensitizes gliomas to ferroptosis and induces alterations in energetic metabolism. Nature Communications, 14(1). https://doi.org/10.1038/s41467-023-36630-w
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Laing, K. K., McQuaid, C., Lao, P. J., Chagnot, A., Stefancova, D., Garcia, D. J., Fialova, N., Brickman, A. M., Wardlaw, J. M., & Montagne, A. (2023). Apolipoprotein E Status Mediates Pericyte Recruitment Mechanisms in the Presence of Excess Cholesterol. Alzheimer’s & Dementia, 19(S14). Portico. https://doi.org/10.1002/alz.078978
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Arakawa, Y., Goldlust, S. A., Colman, H., Reardon, D. A., Welch, M. R., Yamaguchi, S., Butowski, N. A., Li, J., Iino, S., Song, G., Jackman, A., Xie, Y., Wagle, M.-C., Lebedinsky, C., & Narita, Y. (2023). 10007-ACT-2 FIRST IN HUMAN STUDY OF DSP-0390, AN ORAL EMOPAMIL BINDING PROTEIN (EBP) INHIBITOR, IN RECURRENT HIGH-GRADE GLIOMA (HGG): PRELIMINARY RESULTS. Neuro-Oncology Advances, 5(Supplement_5), v2–v2. https://doi.org/10.1093/noajnl/vdad141.006
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Madan, R. A., Bilusic, M., Stein, M. N., Donahue, R. N., Arlen, P. M., Karzai, F., Plimack, E., Wong, Y.-N., Geynisman, D. M., Zibelman, M., Mayer, T., Strauss, J., Chen, G., Rauckhorst, M., McMahon, S., Couvillon, A., Steinberg, S., Figg, W. D., Dahut, W. L., … Gulley, J. L. (2023). Flutamide With or Without PROSTVAC in Non-metastatic Castration Resistant (M0) Prostate Cancer. The Oncologist, 28(7), 642-e561. https://doi.org/10.1093/oncolo/oyad058
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Liang, D., Feng, Y., Zandkarimi, F., Wang, H., Zhang, Z., Kim, J., Cai, Y., Gu, W., Stockwell, B. R., & Jiang, X. (2023). Ferroptosis surveillance independent of GPX4 and differentially regulated by sex hormones. Cell, 186(13), 2748-2764.e22. https://doi.org/10.1016/j.cell.2023.05.003
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Sánchez-Vinces, S., Garcia, P. H. D., Silva, A. Ap. R., Fernandes, A. M. A. de P., Barreto, J. A., Duarte, G. H. B., Antonio, M. A., Birbrair, A., Porcari, A. M., & Carvalho, P. de O. (2023). Mass-Spectrometry-Based Lipidomics Discriminates Specific Changes in Lipid Classes in Healthy and Dyslipidemic Adults. Metabolites, 13(2), 222. https://doi.org/10.3390/metabo13020222
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Cholesterol Triggers Nuclear Co-Association of Androgen Receptor, p160 Steroid Coactivators, and p300/CBP-Associated Factor Leading to Androgenic Axis Transactivation in Castration-Resistant Prostate Cancer. (2022). Cellular Physiology and Biochemistry, 56(S4), 1–15. https://doi.org/10.33594/000000592
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Liu, Y., Liu, Y., Ye, S., Feng, H., & Ma, L. (2022). Development and validation of cuproptosis-related gene signature in the prognostic prediction of liver cancer. Frontiers in Oncology, 12. https://doi.org/10.3389/fonc.2022.985484
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Jin, J., Schorpp, K., Samaga, D., Unger, K., Hadian, K., & Stockwell, B. R. (2022). Machine Learning Classifies Ferroptosis and Apoptosis Cell Death Modalities with TfR1 Immunostaining. ACS Chemical Biology, 17(3), 654–660. https://doi.org/10.1021/acschembio.1c00953
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