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Cellular Physiology and Biochemistry : International Journal of Experimental Cellular Physiology, Biochemistry, and Pharmacology|February 14, 2018
Hoxa5 Promotes Adipose Differentiation via Increasing DNA Methylation Level and Inhibiting PKA/HSL Signal Pathway in MiceWeina Cao, Yatao Xu, Dan Luo, et al.Scientific Reports|August 28, 2015
FABP4 reversed the regulation of leptin on mitochondrial fatty acid oxidation in mice adipocytesLu Gan, Zhenjiang Liu, Weina Cao, et al.Frontiers in Immunology|April 14, 2018
Homeobox a5 Promotes White Adipose Tissue Browning Through Inhibition of the Tenascin C/Toll-Like Receptor 4/Nuclear Factor Kappa B Inflammatory Signaling in MiceWeina Cao, Hongtao Huang, Tianyu Xia, et al.Current Issues in Molecular Biology|April 26, 2024
Analysis of microRNA Expression Profiles in Broiler Muscle Tissues by Feeding Different Levels of Guanidinoacetic AcidMengqian Liu, Mengyuan Li, Jinrui Ruan, et al.Poultry Science|December 31, 2025
Transcriptomic and metabolomic insights into lipid metabolism genes underlying meat quality differences between yellow-feathered and white-feathered broilers in ChinaMengyuan Li, Mengqian Liu, Yu Yang, et al.Journal of Cellular and Molecular Medicine|August 24, 2019
Hoxa5 alleviates obesity-induced chronic inflammation by reducing ER stress and promoting M2 macrophage polarization in mouse adipose tissueWeina Cao, Tiantian Zhang, Ruonan Feng, et al.Oncotarget|April 8, 2017
αMSH prevents ROS-induced apoptosis by inhibiting Foxo1/mTORC2 in mice adipose tissueWeina Cao, Meihang Li, Tianjiao Wu, et al.Frontiers in Veterinary Science|February 16, 2026
Effects of guanidinoacetic acid on gene expression in adipose tissue of broiler chickens: a differential expression analysis based on small RNA sequencingMengqian Liu, Jinrui Ruan, Yu Yang, et al.Genomics|December 29, 2023
Multiple omics analysis reveals the regulation of SIRT5 on mitochondrial function and lipid metabolism during the differentiation of bovine preadipocytesJieyun Hong, Sayed Haidar Abbas Raza, Hongming Ma, et al.Scientific Reports|February 19, 2016
Mark4 promotes oxidative stress and inflammation via binding to PPARγ and activating NF-κB pathway in mice adipocytesZhenjiang Liu, Lu Gan, Yizhe Chen, et al.Pageof 2