近期论文
查看导师新发文章
(温馨提示:请注意重名现象,建议点开原文通过作者单位确认)
1. Li Longlong, Wang Hongjun, Yao yao, Cao Ji, Jiang Zhihao, Yan Weiyuan, Chu Xu, Li Qian,
Lu Miaomiao, Ma Haitian*. The sex steroid precursor dehydroepiandrosterone prevents
nonalcoholic steatohepatitis by activating the AMPK pathway mediated by GPR30. Redox Biology,
2021, 48:102187. doi: 10.1016/j.redox.2021.102187 (IF 5y= 12.038).
2. Cao Ji, Lu Miaomiao, Yan Weiyuan, Li Longlong, Ma Haitian*. Dehydroepiandrosterone
alleviates intestinal inflammatory damage via GPR30-mediated Nrf2 activation and NLRP3
inflammasome inhibition in colitis mice. Free Radical Biology and Medicine, 2021, 172:386-402
(IF 5y= 7.934).
3. Cao Ji, Li Qian, Shen Xuehuai, Yao Yao, Li Longlong, Ma Haitian*. Dehydroepiandrosterone
attenuates LPS-induced inflammatory responses via activation of Nrf2 in RAW264.7 macrophages.
Molecular Immunology, 2021, 131: 97-111(IF 5y= 4.227).
4. Jiang Zhihao, Yang Zhongmiao, Zhang Huihui, Yao Yao, Ma Haitian*. Genistein activated
adenosine 5 '-monophosphate-activated protein kinase-sirtuin1/peroxisome proliferator-activated
receptor gamma coactivator-1 alpha pathway potentially through adiponectin and estrogen receptor
beta signaling to suppress fat deposition in broiler chickens. Poultry Science, 2021, 100 (1): 246-
255 (IF 5y= 3.679).
5. Li Longlong, Chu, Xu, Yao Yao, Cao Ji, Li Qian, Ma Haitian*. (-)-Hydroxycitric Acid
Alleviates Oleic Acid-Induced Steatosis, Oxidative Stress, and Inflammation in Primary Chicken
Hepatocytes by Regulating AMP-Activated Protein Kinase-Mediated Reactive Oxygen Species
Levels. Journal of Agricultural and Food Chemistry, 2020, 68(40): 11229-11241 (IF 5y= 5.269).
6. Zhao Jinlong, Cao Ji, Yu Lei, Ma Haitian*. Dehydroepiandrosterone resisted E. Coli
O157:H7-induced inflammation via blocking the activation of p38 MAPK and NF-kappa B
pathways in mice. Cytokine, 2020, 127:154955 (IF 5y= 4.257).
7. Cao Ji, Zhang Huihu, Yang Zhongmiao, Zhao Jinlong, Ma Haitian*. Effect of
dehydroepiandrosterone on the immune response and gut microbiota in dextran sulfate sodiuminduced colitis mice. Molecular Immunology, 2020, 118:60-72 (IF 5y= 4.227).
8. Li Longlong, Yao Yao, Zhao Jinlong, Cao Ji, Ma Haitian*. Dehydroepiandrosterone protects
against hepatic glycolipid metabolic disorder and insulin resistance induced by high fat via
activation of AMPK-PGC-1 alpha-NRF-1 and IRS1-AKT-GLUT2 signaling pathways.
International Journal of Obesity, 2020, 44(5):1075-1086 (IF 5y= 5.804).
9. Li Longlong, Jiang Zhihao, Yao Yao, Yang Zhongmiao, Ma Haitian*. (-)-Hydroxycitric acid
regulates energy metabolism by activation of AMPK - PGC1alpha - NRF1 signal pathway in
primary chicken hepatocytes. Life Sciences, 2020, 254:117785 (IF 5y= 4.689).
10. Peng Mengling, He Qianqian, Li Shennan, Li Longlong, Ma Haitian*. Integrated analysis of
proteomics‐delineated and metabolomics‐delineated hepatic metabolic responses to (-)‐
hydroxycitric acid in chick embryos. Journal of Cellular Biochemistry, 2019, 120:1258‐1270 (IF
5y= 3.771).
11. Li Longlong,Zhang Huihui, Yao Yao, Yang Zhongmiao, Ma Haitian*. (−)-Hydroxycitric
Acid Suppresses Lipid Droplet Accumulation and Accelerates Energy Metabolism via Activation
of the Adiponectin-AMPK Signaling Pathway in Broiler Chickens. Journal of Agricultural and
Food Chemistry, 2019, 67(11):3188-3197 (IF 5y= 4.289).
12. Li Longlong, Yao Yao, Jiang,Zhihao Zhao Jinlong, Cao Ji, Ma Haitian*.
Dehydroepiandrosterone Prevents H2O2-Induced BRL-3A Cell Oxidative Damage through
Activation of PI3K/Akt Pathways rather than MAPK Pathways. Oxidative Medicine and Cellular
Longevity, 2019, Volume 2019, doi:10.1155/2019/2985956(IF 5y= 5.608).
13. Li Shengnan; Yang Zhongmiao; Zhang Huihui; Peng Mengling, Ma Haitian*. Potential role
of ALDH3A2 on the lipid and glucose metabolism regulated by (-)-hydroxycitric acid in chicken
embryos. Animal Science Journal, 2019, 90:961-976 (IF 5y= 1.479).
14. Cao Ji; Yu Lei; Zhao Jinlong, Ma Haitian*. Effect of dehydroepiandrosterone on the immune
function of mice in vivo and in vitro. Molecular Immunology, 2019, 112:283-290 (IF 5y= 3.353).
15. Li Shengnan; Yang Zhongmiao; Zhang Huihui; Peng Mengling, Ma Haitian*. (-)-
Hydroxycitric Acid Influenced Fat Metabolism via Modulating of Glucose-6-phosphate Isomerase
Expression in Chicken Embryos. Journal of Agricultural and Food Chemistry, 2019, 67:7336-
7347 (IF 5y= 4.289).
16. Zhao Jinlong; Cao Ji; Yu Lei, Ma Haitian*. Dehydroepiandrosterone alleviates E. Coli
O157:H7-induced inflammation by preventing the activation of p38 MAPK and NF-κB pathways
in mice peritoneal macrophages. Molecular Immunology, 2019, 114:114-122 (IF 5y= 3.353).
17. Li Longlong, Ge Chongyang, Wang Dian, Yu Lei, Zhao Jinlong, Ma Haitian*.
Dehydroepiandrosterone reduces accumulation of lipid droplets in primary chicken hepatocytes by
biotransformation mediated via the cAMP/PKA-ERK1/2 signaling pathway. BBA-Molecular and
Cell Biology of Lipids, 2018, 1863:625-638 (IF 5y= 5.231).
18. Li Longlong, Zhao Jinlong, Ge Chongyang, Yu Lei, Ma Haitian*. Dehydroepiandrosterone
rehabilitate BRL-3A cells oxidative stress damage induced by hydrogen peroxide. Journal of
Cellular Physiology, 2018,1–11 (IF 5y= 4.085).
19. Peng Mengling, Li Shengnan, He Qianian, Zhao Jinlong, Li Longlong, Ma Haitian*.
Proteomics reveals changes in hepatic proteins during chicken embryonic development: an
alternative model to study human obesity. BMC Genomics, 2018, 19:29 (IF 5y= 4.142).
20. Peng Mengling, Han Jing, Li Longlong, Ma Haitian*. Metabolomics reveals the mechanism
of (−)-hydroxycitric acid promotion of protein synthesis and inhibition of fatty acid synthesis in
broiler chickens, Animal, 2018, 12: 774–783 (IF 5y= 2.401).
21. Peng Mengling, Li Longlong, Yu Lei, Ge Chongyang, Ma Haitian*. Effects of (-)-
hydroxycitric acid on lipid droplet accumulation in chicken embryos. Animal Science Journal,
2018, 89:237-249 (IF 5y= 1.372).
22. Peng Mengling, Li Shengnan, He Qianqian, Zhao Jinlong, Li Longlong, Ma Haitian*. Based
serum metabolomics analysis reveals simultaneous interconnecting changes during chicken
embryonic development. Journal of Animal Physiology and Animal Nutrition, 2018, 102(5):1210-
1219 (IF 5y= 1.786).
23. Li Longlong, Peng Mengling, Ge Chongyang, Yu Lei, Ma Haitian*. (-)-Hydroxycitric Acid
Reduced Lipid Droplets Accumulation Via Decreasing Acetyl-Coa Supply and Accelerating Energy
Metabolism in Cultured Primary Chicken Hepatocytes. Cellular Physiology and Biochemistry,
2017, 43:812-831 (IF 5y= 4.354).
24. Peng Mengling, Han Jing, Li Longlong, Ma Haitian*. Suppression of fat deposition in broiler
chickens by (-)-hydroxycitric acid supplementation: A proteomics perspective. Scientific Reports,
2016, 6:32580, doi: 10.1038/srep32580 (2016) (IF 5y= 4.847).
25. Ding Xiao, Wang Dian, Li Longlong, Ma Haitian*. Dehydroepiandrosterone ameliorates
H2O2-induced Leydig cellsoxidation damage and apoptosis through inhibition of ROS
productionand activation of PI3K/Akt pathways. The International Journal of Biochemistry &
Cell Biology, 2016, 70:126–139 (IF 5y= 4.092).
26. Han Jing, Li Longlong, Wang Dian, Ma Haitian*. (−)-Hydroxycitric acid reduced fat
deposition via regulating lipid metabolism related gene expression in broiler chickens. Lipids in
Health and Disease, 2016, 15:37-50 (IF 5y= 2.531).
27. Chen Di, Kang Jian, Li Longlong, Ma Haitian*. Long-term administration of DHEA prevents
fat deposition in rats under fed high-fat diet. Czech Journal Animal Sciences, 2016, 61 (4): 177–
185 (IF 5y= 0.966).
28. Liu Lin, Wang Dian, Li Longlong, Ding Xiao, Ma Haitian*. Dehydroepiandrosterone inhibits
cell proliferation and improves viability by regulating S phase and mitochondrial permeability in
primary rat Leydig cells. Molecular Medicine Reports, 2016, 14: 705-714 (IF 5y= 1.718).
29. Han Ningning, Li Longlong, Peng Mengling, Ma Haitian*. (-)-hydroxycitric acid nourishes
protein synthesis via altering metabolic directions of amino acids in male rats. Phytotherapy
Research, 2016, 30(8):1316-1329 (IF 5y= 2.737).
30. Kang Jian, Ge Chongyang, Yu Lei, Li Longlong, Ma Haitian*. Long-term administration of
dehydroepiandrosterone accelerates glucose catabolism via activation of PI3K/Akt-PFK-2 signaling
pathway in rats fed a high-fat diet. PLoS ONE, 2016, 11(7):e0159077.
doi:10.1371/journal.pone.0159077 (IF 5y= 3.394).