日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

TSP50 attenuates metabolic dysfunction-associated steatotic liver disease via SCD1 degradation-mediated suppression of hepatocyte lipogenesis

TSP50通过SCD1降解介导的肝细胞脂肪生成抑制作用,减轻代谢功能障碍相关的脂肪肝疾病。

Liang, Jiujia; Luan, Zhihui; Jin, Rong; Su, Rina; Ge, Jiarong; Tian, Xiao; Niu, Chunxue; Li, Jiawei; Li, Xiaoli; Gao, Feng; Song, Zhenbo; Sun, Luguo; Wang, Guannan; Zheng, Lihua; Sun, Ying; Liu, Lei; Bao, Yongli; Wang, Shuyue; Yang, Xiaoguang

TSP50 deficiency in neural stem cells aggravates colitis in mice by altering intestinal microbiome.

神经干细胞中 TSP50 缺乏会通过改变肠道微生物群加剧小鼠的结肠炎

Li Xiaoli, Jin Rong, Wang Zhaoxia, Niu Chunxue, Song Zhenbo, Liu Xiaoling, Huang Jian, Zhang Huan, Qian Xia, Gao Feng, Wang Shuyue, Yu Chunlei, Sun Luguo, Huang Yanxin, Zheng Lihua, Wang Guannan, Sun Ying, Yang Xiaoguang, Bao Yongli, Li Jiawei

TSP50 in Neural Stem Cells Regulates Aging-Related Cognitive Decline and Neuroinflammation by Altering the Gut Microbiota.

神经干细胞中的 TSP50 通过改变肠道菌群来调节与衰老相关的认知衰退和神经炎症。

Li Xiaoli, Chen Yuecong, Gao Zhuoyi, Liu Xiaoling, Song Zhenbo, Gao Feng, Wang Shuyue, Yu Chunlei, Sun Luguo, Huang Yanxin, Zheng Lihua, Wang Guannan, Sun Ying, Li Jiawei, Yang Xiaoguang, Bao Yongli

Unraveling Glypican-3: From Structural to Pathophysiological Roles and Mechanisms-An Integrative Perspective

揭示糖蛋白聚糖-3:从结构到病理生理作用及机制——一个整合的视角

Piao, Qianling; Bian, Xiaona; Zhao, Qi; Sun, Luguo

TSP50 facilitates breast cancer stem cell-like properties maintenance and epithelial-mesenchymal transition via PI3K p110α mediated activation of AKT signaling pathway

TSP50通过PI3K p110α介导的AKT信号通路激活,促进乳腺癌干细胞样特性的维持和上皮-间质转化。

Gao, Feng; Liu, Sichen; Wang, Jing; Wei, Gang; Yu, Chunlei; Zheng, Lihua; Sun, Luguo; Wang, Guannan; Sun, Ying; Bao, Yongli; Song, Zhenbo

Analysis of Bulk RNA Sequencing Data Reveals Novel Transcription Factors Associated With Immune Infiltration Among Multiple Cancers

大量RNA测序数据分析揭示了与多种癌症免疫浸润相关的新型转录因子

Liu, Lei; Zhao, Qiuchen; Cheng, Chao; Yi, Jingwen; Sun, Hongyan; Wang, Qi; Quan, Weili; Xue, Yaqiang; Sun, Luguo; Cong, Xianling; Zhang, Yi

Ursolic Acid Targets Glucosyltransferase and Inhibits Its Activity to Prevent Streptococcus mutans Biofilm Formation

熊果酸靶向葡萄糖基转移酶并抑制其活性,从而阻止变形链球菌生物膜的形成

Liu, Yucui; Huang, Yanxin; Fan, Cong; Chi, Zhongmei; Bai, Miao; Sun, Luguo; Yang, Li; Yu, Chunlei; Song, Zhenbo; Yang, Xiaoguang; Yi, Jingwen; Wang, Shuyue; Liu, Lei; Wang, Guannan; Zheng, Lihua

SUVA: splicing site usage variation analysis from RNA-seq data reveals highly conserved complex splicing biomarkers in liver cancer

SUVA:基于RNA-seq数据的剪接位点使用变异分析揭示了肝癌中高度保守的复杂剪接生物标志物

Cheng, Chao; Liu, Lei; Bao, Yongli; Yi, Jingwen; Quan, Weili; Xue, Yaqiang; Sun, Luguo; Zhang, Yi

Anti-biofilm Activities from Bergenia crassifolia Leaves against Streptococcus mutans

岩白菜叶片对变形链球菌的抗生物膜活性

Liu, Yucui; Xu, Yanjie; Song, Qiuhang; Wang, Fei; Sun, Luguo; Liu, Lei; Yang, Xiaoguang; Yi, Jingwen; Bao, Yongli; Ma, Haifeng; Huang, Honglan; Yu, Chunlei; Huang, Yanxin; Wu, Yin; Li, Yuxin

CaMK IV phosphorylates prohibitin 2 and regulates prohibitin 2-mediated repression of MEF2 transcription

CaMK IV 磷酸化prohibitin 2 并调节prohibitin 2介导的MEF2转录抑制

Sun, Luguo; Cao, Xia; Liu, Bin; Huang, Honglan; Wang, Xu; Sui, Liyan; Yin, Weimin; Ma, Kewei