Cholesterol Metabolism and Atherosclerosis

Displaying 1 - 7 of 7CSV
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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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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Yalcinkaya, M., Liu, W., Xiao, T., Abramowicz, S., Wang, R., Wang, N., Westerterp, M., & Tall, A. R. (2024). Cholesterol trafficking to the ER leads to the activation of CaMKII/JNK/NLRP3 and promotes atherosclerosis. Journal of Lipid Research, 65(4), 100534. https://doi.org/10.1016/j.jlr.2024.100534
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Huang, P., Ran, J., Zhu, W., Dai, W., Tang, Y., Lian, P., Huang, X., & Li, R. (2024). PCSK9 dysregulates cholesterol homeostasis and triglyceride metabolism in olanzapine‐induced hepatic steatosis via both receptor‐dependent and receptor‐independent pathways. The FASEB Journal, 38(4). Portico. https://doi.org/10.1096/fj.202301748r
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Patra, K., Almeida, F., Giannisis, A., Niesnerova, A., Nandakumar, R., Ellis, E., Oliveira, T. G., & Nielsen, H. M. (2023). APOE genotype‐specific lipidomic signatures in primary human hepatocytes. Alzheimer’s & Dementia, 19(S13). Portico. https://doi.org/10.1002/alz.076471
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Zhu, W., Ding, C., Huang, P., Ran, J., Lian, P., Tang, Y., Dai, W., & Huang, X. (2022). Metformin Ameliorates Hepatic Steatosis induced by olanzapine through inhibiting LXRα/PCSK9 pathway. Scientific Reports, 12(1). https://doi.org/10.1038/s41598-022-09610-1
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Kim, J. Y., Wang, L. Q., Sladky, V. C., Oh, T. G., Liu, J., Trinh, K., Eichin, F., Downes, M., Hosseini, M., Jacotot, E. D., Evans, R. M., Villunger, A., & Karin, M. (2022). PIDDosome-SCAP crosstalk controls high-fructose-diet-dependent transition from simple steatosis to steatohepatitis. Cell Metabolism, 34(10), 1548-1560.e6. https://doi.org/10.1016/j.cmet.2022.08.005
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