鲁东大学水产学院
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刘强德

时间:2024年12月30日

 


  刘强德 男,19964月生,博士,讲师


  研究方向


  水生动物营养生理与营养免疫


  学习经历


博士:2018.8-2024.6,中国海洋大学,水产养殖


学士:2014.9-2018.6,烟台大学,海洋渔业科学与技术


  工作经历


   2024.12-至今,鲁东大学水产学院


  发表论文


目前,以第一及共同作者已发表论文20余篇:

1. Liu, Q.D., Tang, X., Yang, B.Y., Hao, T.T., Han, S.Z., Xu, X., Zhao, Z.Q., Lai, W.C., Li, Y.R., Du, J.L., Mai, K.S., & Ai, Q.H. (2025). Autophagy and Endoplasmic Reticulum Stress-Related Protein Homeostasis Links Palmitic Acid to Hepatic Lipotoxicity in Zebrafish (Danio rerio), Counteracted by Linoleic Acid. Free Radical Biology and Medicine, 233, 148-161.

2. Liu, Q.D., Hao, T.T., Yang, B.Y., Zhang, J.Z., Pan, S.J., Wu, C.X., Tang, Y.H., Zhou, Y., Zhao, Z.Q., Du, J.L., Li, Y.R., Mai, K.S., & Ai, Q.H. (2025). Autophagy dysfunction links palmitic acid with macrophage inflammatory responses in large yellow croaker (Larimichthys crocea). Fish & shellfish immunology.

3. Liu, Q.D., Zhu, S., Zhao, Z.Q., Hao, T.T., Xu, X., Han, S.Z., Li, Y.R., Mai, K.S., & Ai, Q.H. (2023). Transcription factor EB (TFEB) participates in antiviral immune responses independent of mTORC1 in macrophage of large yellow croaker (Larimichthys crocea). Fish & shellfish immunology, 134, 108609.

4. Liu, Q.D., Chen, Z.W., Zhang, J.Z., Pan, S.J., Zhou, Y., Tang, Y.H., Wu, C.X., Wang, H.R., Zhao, Z.Q., Li, Y.R., Mai, K.S., & Ai, Q.H. (2024). Involvement of mitochondrial fatty acid β-oxidation in the antiviral innate immune response in head kidney macrophages of large yellow croaker (Larimichthys crocea). Fish & shellfish immunology, 109829.

5. Zhu, S., Liu, Q.D., Xiang, X., Cui, K., Zhao, F., Mai, K.S., Ai, Q.H. (2022). Docosahexaenoic Acid Ameliorates the Toll-Like Receptor 22-Triggered Inflammation in Fish by Disrupting Lipid Raft Formation. The Journal of Nutrition, 152(8), 19912002.

6. Zhao Z.Q., Chen, Q., Xiang, X.J., Dai, W.W., Fang, W., Cui, K., Li, B.L., Liu, Q.D., Liu, Y.T., Shen, Y.N. Li, Y.R., Xu, W., Mai, K.S., Ai, Q.H. Tip60-mediated Rheb acetylation links palmitic acid with mTORC1 activation and insulin resistance. J Cell Biol. 2024 Dec 2;223(12):e202309090.

7. Hao, T.T., Fang, W., Xu, D., Chen, Q., Liu, Q.D., Cui, K., Cao, X.F., Li, Y.R., Mai, K.S., Ai, Q.H. (2023). Phosphatidylethanolamine alleviates OX-LDL-induced macrophage inflammation by upregulating autophagy and inhibiting NLRP1 inflammasome activation. Free radical biology & medicine, 208, 402417.

8. Hao, T.T., Zhang, X.W., Liu, Q.D., Zhan, R., Tang, Y.H., Bu, X.Y., Li, W.J., Du, J.L., Li, Y.R., Mai, K.S., Ai, Q.H. Phosphatidylethanolamine exerts anti-inflammatory action by regulating mitochondrial function in macrophages of large yellow croaker (Larimichthys crocea). FASEB J. 2024 Nov 30;38(22):e70180.

9. Hao, T.T., Xu, D., Cao, X.F., Chen, Q.C., Chen, F., Liu, Q.D., Tang, Y.H., Zhou, Y., Li, Y.R., Mai, K.S., Ai, Q.H. (2023). Regulation of low-density lipoprotein on lipid metabolism in macrophages of large yellow croaker (Larimichthys crocea). Biochimica et Biophysica Acta-Molecular and cell biology of lipids, 1868(12), 159397.

10. Chen, Q., Liu, Q.D., Hao, T.T., Cui, K., Zhao, Z.Q., Mai, K.S., Ai, Q.H. (2022). Long-chain fatty acids regulate sirt3 expression by affecting intracellular NAD+ levels in large yellow croaker (Larimichthys crocea). Aquaculture, 553, 738015.

11. Yin, Z.Y., Liu, Q.D., Liu, Y.T., Gao, S.N., He, Y.L., Yao, C.W., Huang, W.X., Gong, Y., Mai, K.S., Ai, Q.H. (2021). Early Life Intervention Using Probiotic Clostridium butyricum Improves Intestinal Development, Immune Response, and Gut Microbiota in Large Yellow Croaker (Larimichthys crocea) Larvae. Frontiers in immunology, 12, 640767.

12. Zhang, J.Z., Liu, Q.D., Pang, Y.N., Xu, X., Cui, K., Zhang, Y.J., Mai, K.S., Ai, Q.H. (2020). Molecular cloning and the involvement of IRE1α-XBP1s signaling pathway in palmitic acid induced-Inflammation in primary hepatocytes from large yellow croaker (Larimichthys crocea). Fish & shellfish immunology, 98, 112121.

13. Hao, T.T., Li, J.Q., Liu, Q.D., Cui, K., Ai, Q.H. (2020). Fatty acid translocase (FAT/CD36) in large yellow croaker (Larimichthys crocea): molecular cloning, characterization and the response to dietary fatty acids. Aquaculture, 528, 735557.

14. Kong, A.D., Xu, D., Hao, T.T., Liu, Q.D., Zhan, R., Mai, K.S., Ai, Q.H. (2022). Role of acyl-coenzyme A oxidase 1 (ACOX1) on palmitate-induced inflammation and ROS production of macrophages in large yellow croaker (Larimichthys crocea). Developmental and comparative immunology, 136, 104501.

15. Fang, W., Liu, Y.T., Chen, Q.C., Xu, D., Liu, Q.D., Cao, X.F., Hao, T.T., Zhang, L., Mai, K.S., Ai, Q.H. (2022). Palmitic acid induces intestinal lipid metabolism disorder, endoplasmic reticulum stress and inflammation by affecting phosphatidylethanolamine content in large yellow croaker Larimichthys crocea. Frontiers in immunology, 13, 984508.

16. Xu, N., Ding, T., Liu, Y.T., Zheng, W.C., Liu, Q.D., Yin, Z.Y., Xiang, X.J., Xu, D., Mai, K.S., Ai, Q.H. (2021). Effects of dietary tributyrin on growth performance, body composition, serum biochemical indexes and lipid metabolismrelated genes expression of juvenile large yellow croaker (Larimichthys crocea) fed with high level soybean oil diets. Aquaculture Nutrition, 27(2).

17. Zhao, Z.Q., Pan, S.J., Zhang, J.Z., Li, X.W., Xu, Y.R., Liu, Q.D., Du, J.L., Li, Y.R., Mai, K.S., Ai, Q.H. Effects of nuciferine on growth performance, body composition, lipid metabolism and antioxidant capacity of juvenile large yellow croaker (Larmichthys crocea) fed diets with high palm oil level. Aquaculture, 586, 740821.

18. Ding, T., Xu, N., Liu, Y.T., Du, J.L., Xiang, X.J., Xu, D., Liu, Q.D., Yin, Z.Y., Li, J.B., Mai, K.S., Ai, Q.H. (2020). Effect of dietary bile acid (BA) on the growth performance, body composition, antioxidant responses and expression of lipid metabolism-related genes of juvenile large yellow croaker (Larimichthys crocea) fed high-lipid diets. Aquaculture, 518.

19. Pang, Y.N., Xu, X., Xiang, X.J., Li, Y.N., Zhao, Z.Q., Li, J.M., Gao, S.N., Liu, Q.D., Mai, K.S., Ai, Q.H. (2021). High Fat Activates O-GlcNAcylation and Affects AMPK/ACC Pathway to Regulate Lipid Metabolism. Nutrients, 13(6), 1740.

20. Ding, T., Xu, N., Liu, Y.T., Li, X.S., Xiang, X.J., Xu, D., Yao, C.W., Liu, Q.D., Yin, Z.Y., Mai, K.S., Ai, Q.H. (2020). Optimal amounts of coconut oil in diets improve the growth, antioxidant capacity and lipid metabolism of large yellow croaker (Larimichthys crocea). Marine Life Science & Technology, 2(4), 10.



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