Molecular Metabolism

Displaying 1 - 11 of 11
Muturi, H. T., Ghadieh, H. E., Asalla, S., Lester, S. G., Belew, G. D., Zaidi, S., Abdolahipour, R., Shrestha, A. P., Portuphy, A. O., Stankus, H. L., Helal, R. A., Verhulst, S., Duarte, S., Zarrinpar, A., van Grunsven, L. A., Friedman, S. L., Schwabe, R. F., Hinds, T. D., Kumarasamy, S., & Najjar, S. M. (2024). Conditional deletion of CEACAM1 in hepatic stellate cells causes their activation. Molecular Metabolism, 88, 102010. https://doi.org/10.1016/j.molmet.2024.102010
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Suda, N., Bartolomé, A., Liang, J., Son, J., Yagishita, Y., Siebel, C., Accili, D., Ding, H., & Pajvani, U. B. (2024). β-cell Jagged1 is sufficient but not necessary for islet Notch activity and insulin secretory defects in obese mice. Molecular Metabolism, 81, 101894. https://doi.org/10.1016/j.molmet.2024.101894
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Dedic, N., Wang, L., Hajos-Korcsok, E., Hecksher-Sørensen, J., Roostalu, U., Vickers, S. P., Wu, S., Anacker, C., Synan, C., Jones, P. G., Milanovic, S., Hopkins, S. C., Bristow, L. J., & Koblan, K. S. (2024). TAAR1 agonists improve glycemic control, reduce body weight and modulate neurocircuits governing energy balance and feeding. Molecular Metabolism, 80, 101883. https://doi.org/10.1016/j.molmet.2024.101883
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Zhang, Y., Sui, L., Du, Q., Haataja, L., Yin, Y., Viola, R., Xu, S., Nielsson, C. U., Leibel, R. L., Barbetti, F., Arvan, P., & Egli, D. (2024). Permanent neonatal diabetes-causing insulin mutations have dominant negative effects on beta cell identity. Molecular Metabolism, 80, 101879. https://doi.org/10.1016/j.molmet.2024.101879
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Petersen, J. E., Pedersen, M. H., Dmytriyeva, O., Nellemose, E., Arora, T., Engelstoft, M. S., Asher, W. B., Javitch, J. A., Schwartz, T. W., & Trauelsen, M. (2023). Free fatty acid receptor 1 stimulates cAMP production and gut hormone secretion through Gq-mediated activation of adenylate cyclase 2. Molecular Metabolism, 74, 101757. https://doi.org/10.1016/j.molmet.2023.101757
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Neri, D., Ramos-Lobo, A. M., Lee, S., Lafond, A., & Zeltser, L. M. (2023). Rearing mice at 22°C programs increased capacity to respond to chronic exposure to cold but not high fat diet. Molecular Metabolism, 73, 101740. https://doi.org/10.1016/j.molmet.2023.101740
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Parra-Vargas, M., Bouret, S. G., Bruning, J. C., de Moura, E. G., Garland, T., Lisboa, P. C., Ozanne, S. E., Patti, M.-E., Plagemann, A., Speakman, J. R., Tena-Sempere, M., Vergely, C., Zeltser, L. M., & Jiménez-Chillarón, J. C. (2023). The long-lasting shadow of litter size in rodents: litter size is an underreported variable that strongly determines adult physiology. Molecular Metabolism, 71, 101707. https://doi.org/10.1016/j.molmet.2023.101707
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Emiliano, A. B. (2023). Mining the mechanistic underpinnings of bariatric surgery: A gateway to novel and non-invasive obesity therapies? Molecular Metabolism, 68, 101663. https://doi.org/10.1016/j.molmet.2022.101663
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Kitamoto, T., Lee, Y.-K., Sultana, N., Watanabe, H., McKimpson, W. M., Du, W., Fan, J., Diaz, B., Lin, H. V., Leibel, R. L., Belvedere, S., & Accili, D. (2022). Chemical induction of gut β-like-cells by combined FoxO1/Notch inhibition as a glucose-lowering treatment for diabetes. Molecular Metabolism, 66, 101624. https://doi.org/10.1016/j.molmet.2022.101624
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Lee, Y.-K., Du, W., Nie, Y., Diaz, B., Sultana, N., Kitamoto, T., Leibel, R. L., Accili, D., & Belvedere, S. (2022). Single-agent FOXO1 inhibition normalizes glycemia and induces gut β-like cells in streptozotocin-diabetic mice. Molecular Metabolism, 66, 101618. https://doi.org/10.1016/j.molmet.2022.101618
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Ha, E. E., Quartuccia, G. I., Ling, R., Xue, C., Karikari, R. A., Hernandez-Ono, A., Hu, K. Y., Matias, C. V., Imam, R., Cui, J., Pellegata, N. S., Herzig, S., Georgiadi, A., Soni, R. K., & Bauer, R. C. (2022). Adipocyte-specific tribbles pseudokinase 1 regulates plasma adiponectin and plasma lipids in mice. Molecular Metabolism, 56, 101412. https://doi.org/10.1016/j.molmet.2021.101412
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