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Minmin Hu

Showing results (51-60 of 67) with videos related to

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Nucleic Acids Research|February 7, 2019
MiRNA-891a-5p mediates HIV-1 Tat and KSHV Orf-K1 synergistic induction of angiogenesis by activating NF-κB signalingShuihong Yao, Minmin Hu, Tingting Hao, et al.
Frontiers in Neuroscience|June 2, 2020
Curdlan Prevents the Cognitive Deficits Induced by a High-Fat Diet in Mice via the Gut-Brain AxisXiaoying Yang, Mingxuan Zheng, Shanshan Hao, et al.
Nucleic Acids Research|August 9, 2014
HIV-1 Nef and KSHV oncogene K1 synergistically promote angiogenesis by inducing cellular miR-718 to regulate the PTEN/AKT/mTOR signaling pathwayMin Xue, Shuihong Yao, Minmin Hu, et al.
Microbiome|February 27, 2026
Early risperidone exposure impairs cognitive function by perturbation of the gut microbiome and bile acids/tyrosine-PTP1B axisHuaiyu Ye, Xiaoying Yang, Mingxuan Zheng, et al.
Experimental Neurology|March 27, 2026
Senolytic therapy ameliorates high-fat diet-induced hippocampal senescence and cognitive decline in miceXinyi Xia, Fangfang Yi, Ruihang Zhang, et al.
Microbiome|October 3, 2020
β-glucan attenuates cognitive impairment via the gut-brain axis in diet-induced obese miceHongli Shi, Yinghua Yu, Danhong Lin, et al.
Microbiome|November 11, 2021
A fiber-deprived diet causes cognitive impairment and hippocampal microglia-mediated synaptic loss through the gut microbiota and metabolitesHongli Shi, Xing Ge, Xi Ma, et al.
Behavioural Brain Research|January 31, 2024
Olanzapine attenuates 5-HT2cR and GHSR1a interaction to increase orexigenic hypothalamic NPY: Implications for neuronal molecular mechanism of metabolic side effects of antipsychoticsXiaoli Liu, Xia Lan, Xinyou Zhang, et al.
Microbiome|March 21, 2023
Correction: Dimethyl itaconate ameliorates cognitive impairment induced by a high-fat diet via the gut-brain axis in miceWei Pan, Jinxiu Zhao, Jiacheng Wu, et al.
Microbiome|February 22, 2023
Dimethyl itaconate ameliorates cognitive impairment induced by a high-fat diet via the gut-brain axis in miceWei Pan, Jinxiu Zhao, Jiacheng Wu, et al.
Pageof 7

Showing results (51-60 of 67) with videos related to

Sort By:
Pageof 7
Nucleic Acids Research|February 7, 2019
MiRNA-891a-5p mediates HIV-1 Tat and KSHV Orf-K1 synergistic induction of angiogenesis by activating NF-κB signalingShuihong Yao, Minmin Hu, Tingting Hao, et al.
Frontiers in Neuroscience|June 2, 2020
Curdlan Prevents the Cognitive Deficits Induced by a High-Fat Diet in Mice via the Gut-Brain AxisXiaoying Yang, Mingxuan Zheng, Shanshan Hao, et al.
Nucleic Acids Research|August 9, 2014
HIV-1 Nef and KSHV oncogene K1 synergistically promote angiogenesis by inducing cellular miR-718 to regulate the PTEN/AKT/mTOR signaling pathwayMin Xue, Shuihong Yao, Minmin Hu, et al.
Microbiome|February 27, 2026
Early risperidone exposure impairs cognitive function by perturbation of the gut microbiome and bile acids/tyrosine-PTP1B axisHuaiyu Ye, Xiaoying Yang, Mingxuan Zheng, et al.
Experimental Neurology|March 27, 2026
Senolytic therapy ameliorates high-fat diet-induced hippocampal senescence and cognitive decline in miceXinyi Xia, Fangfang Yi, Ruihang Zhang, et al.
Microbiome|October 3, 2020
β-glucan attenuates cognitive impairment via the gut-brain axis in diet-induced obese miceHongli Shi, Yinghua Yu, Danhong Lin, et al.
Microbiome|November 11, 2021
A fiber-deprived diet causes cognitive impairment and hippocampal microglia-mediated synaptic loss through the gut microbiota and metabolitesHongli Shi, Xing Ge, Xi Ma, et al.
Behavioural Brain Research|January 31, 2024
Olanzapine attenuates 5-HT2cR and GHSR1a interaction to increase orexigenic hypothalamic NPY: Implications for neuronal molecular mechanism of metabolic side effects of antipsychoticsXiaoli Liu, Xia Lan, Xinyou Zhang, et al.
Microbiome|March 21, 2023
Correction: Dimethyl itaconate ameliorates cognitive impairment induced by a high-fat diet via the gut-brain axis in miceWei Pan, Jinxiu Zhao, Jiacheng Wu, et al.
Microbiome|February 22, 2023
Dimethyl itaconate ameliorates cognitive impairment induced by a high-fat diet via the gut-brain axis in miceWei Pan, Jinxiu Zhao, Jiacheng Wu, et al.
Pageof 7