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

Mechanistic insights and therapeutic interventions of mitochondrial quality control in chemotherapy-related cognitive impairment

化疗相关认知障碍中线粒体质量控制的机制研究及治疗干预

Chen, Jie; Chu, Xinyu; Wu, Yue; Su, Li; Wang, Mingqi; Zhao, Xuemei; Wei, Xiaohong; Xia, Guiyang; Xia, Huan; Lin, Sheng; Zhang, Mei

Untargeted metabolomics reveals the effect of MYH9 on the metabolism of vascular endothelial cells.

非靶向代谢组学揭示了MYH9对血管内皮细胞代谢的影响。

Yuan Ruqiang, Guo Lina, Song Huiyi, Zhang Xiaoru, Wang Mingqi, Wang Xiuli

Sensitivity analysis in Bayesian clinical trials was underused and poorly reported: a systematic survey

贝叶斯临床试验中的敏感性分析未得到充分利用且报告不完整:一项系统性调查

Yao, Minghong; Huan, Jiayidaer; Liang, Qigao; Jie, Wan; Wang, Mingqi; Ma, Yu; Mei, Fan; Liu, Yanmei; Xiong, Yiquan; Li, Ling; Sun, Xin

TIBC, PLR, and EBV DNA load correlate with hepatic injury in EBV-associated infectious mononucleosis

TIBC、PLR 和 EBV DNA 载量与 EBV 相关传染性单核细胞增多症的肝损伤相关

Sun, Shengfeng; Wang, Mingqi; Yang, Shuyan; Huang, Yuanyuan

Design, Conduct, and Analysis of Externally Controlled Trials

外部对照试验的设计、实施和分析

Liu, Jiali; Yao, Minghong; Wang, Mingqi; Jie, Wan; Liu, Yanmei; Luo, Xiaochao; Huan, Jiayidaer; Deng, Kelin; Deng, Ke; Zou, Kang; Zhang, Ying; Li, Ling; Sun, Xin

A novel mechanism of radiation-induced lung injury: METTL3 mediates fibrogenesis through N6-methyladenosine modification of YY1

辐射诱导肺损伤的新机制:METTL3 通过 N6-甲基腺苷修饰 YY1 介导纤维化

Weiqiang Xu,Junxuan Yi,Xinfeng Wei,Mingwei Wang,Mingqi Zhao,Mengdie Zhao,Xinyan Wang,Yannan Shen,Zhicheng Wang,Shunzi Jin

A vascularized 3D bioengineered lung tumor model for anticancer drug screening.

用于抗癌药物筛选的血管化3D生物工程肺肿瘤模型。

Wang Mingqi, Ye Yunming, Yuan Ruqiang, Zheng Xu, Li Xuelu, Han Yinhe, Guo Lina, Lei Ting, Wang Xiuli

Loss of BAP31 Is Detrimentally Aging Photoreceptors Through ER Stress-Mediated Retinal Degeneration

BAP31的缺失通过内质网应激介导的视网膜退化,对感光细胞造成有害的衰老影响。

Fei Gao,Yuqiang Zheng,Tianyi Wang,Mingqi Zhang,Yuanlong An,Zhuoshi Wang,Bing Wang

Betulinic Acid Reduces Intestinal Inflammation and Enhances Intestinal Tight Junctions by Modulating the PPAR-γ/NF-κB Signaling Pathway in Intestinal Cells and Organoids.

桦木酸通过调节肠道细胞和类器官中的 PPAR-γ/NF-γB 信号通路来减少肠道炎症并增强肠道紧密连接

Zheng Xu, Cao Zhen, Wang Mingqi, Yuan Ruqiang, Han Yinhe, Li Ang, Wang Xiuli

L-Theanine attenuates oxidative damage induced by heat stress through the PI3K/AKT/Nrf2 signaling pathway in skeletal muscle cells

L-茶氨酸通过PI3K/AKT/Nrf2信号通路减轻热应激诱导的骨骼肌细胞氧化损伤。

Qiong Wu ,Xiaochun Wan ,Dongxu Wang ,Mingqi Ma ,Xinru Hu ,Xingyong Chen ,Xiaoling Ding ,Cheng Zhang