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

SRSF7 promotes pulmonary fibrosis through regulating PKM alternative splicing in lung fibroblasts.

SRSF7 通过调节肺成纤维细胞中的 PKM 选择性剪接来促进肺纤维化

Jin Tongzhu, Gao Huiying, Wang Yuquan, Ning Zhiwei, Bing Danyang, Wang Yan, Chen Yi, Tian Xiaomu, Liu Qiudi, Niu Zhihui, Guo Jiayu, Sun Jian, Yang Ruoxuan, Wang Qianqian, Li Shifen, Li Tianyu, Zhou Yuhong, He Wenxin, Lu Yanjie, Gu Yunyan, Liang Haihai

TIPE2 deficiency enhances macrophage phagocytosis of tumor cells

TIPE2缺陷增强巨噬细胞对肿瘤细胞的吞噬作用

Ma, Zelong; Wang, Yingyue; Dong, Yanlei; Yuan, Hong; Yang, Ruoxuan; Xiao, Ying; Guo, Chun; Wang, Ruirui; Wang, Jianing; Wang, Xiaoyan; Zhu, Faliang; Zhang, Lining; Fan, Yuchen; Shi, Yongyu

IGFBP3 enhances adipose-derived stem cell function in soft tissue injury repair via ITGB1 and ERK pathway activation.

IGFBP3 通过激活 ITGB1 和 ERK 通路增强脂肪来源干细胞在软组织损伤修复中的功能

Tian Sirui, Yu Haiyang, Yang Ruoxuan, Wang Heshi, Zhao Baohong, Wang Danning

Clinical significance and prognostic value of SIRT1 genetic variants in sepsis: a multicenter hospital-based case-control study.

SIRT1 基因变异在脓毒症中的临床意义和预后价值:一项基于多中心医院的病例对照研究

He Junbing, Yang Meiting, Lin Yao, Qin Wanbing, Yang Ruoxuan, Qin Yuting, Liu Lizhen, Xu Mingwei, Shao Yiming, Liu Qinghua

Mesenchymal stem cells ameliorate silica-induced pulmonary fibrosis by inhibition of inflammation and epithelial-mesenchymal transition

间充质干细胞通过抑制炎症和上皮-间充质转化改善二氧化硅诱导的肺纤维化

Jingjing Wei, Qiuyan Zhao, Guo Yang, Ruoxuan Huang, Chao Li, Yuanmeng Qi, Changfu Hao, Wu Yao

Investigation of Association of Complement 5 Genetic Polymorphisms with Sepsis and Sepsis-Induced Inflammatory Responses

补体5基因多态性与脓毒症及脓毒症诱导的炎症反应相关性的研究

Chen, Kaidian; Lin, Yao; Liu, Yuchun; Liao, Shuanglin; Yang, Ruoxuan; Huang, Jiefeng; Xu, Mingwei; He, Junbing

Therapeutic effect of oligomeric proanthocyanidin in cuprizone-induced demyelination

低聚原花青素对铜宗所致脱髓鞘的治疗作用

Qing Wang, Jing Wang, Zhichao Yang, Ruoxuan Sui, Qiang Miao, Yanhua Li, Jiezhong Yu, Chunyun Liu, Guangxian Zhang, Baoguo Xiao, Cungen Ma