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

Novel carbon dots with dual Modulatory effects on the bone marrow and spleen as a potential therapeutic candidate for treating spinal cord injury

一种新型碳点对骨髓和脾脏具有双重调节作用,有望成为治疗脊髓损伤的潜在候选药物。

Li, Junjin; Wang, Hongda; Li, Yuanquan; Wang, Chunzhen; Feng, Haiwen; Pang, Yilin; Ren, Jie; Li, Chuanhao; Gao, Erke; Zhang, Dejing; Hu, Dunxu; Zhao, Pengtian; Ding, Han; Fan, Baoyou; Zhang, Tao; Song, Xiaomeng; Wei, Zhijian; Ning, Guangzhi; Li, Yong-Qiang; Feng, Shiqing

Targeted disruption of PRC1.1 complex enhances bone remodeling.

靶向破坏 PRC1.1 复合物可增强骨骼重塑

Xing Liangyu, Xu Jinxin, Gong Meihan, Liu Yunzhi, Li Xuanyuan, Meng Lingyu, Du Ruyue, Zhou Ying, Ouyang Zhaoguang, Liu Xu, Tao Shaofei, Cao Yuxin, Liu Chunyi, Gao Feng, Han Ruohui, Shen Hui, Dong Yan, Xu Yong, Li Tao, Chen He, Zhao Yingying, Fan Baoyou, Sui Lei, Feng Shiqing, Liu Jinsong, Liu Dayong, Wu Xudong

Targeted delivery of the GPX4 activator via HUCMSC-derived exosomes inhibits ferroptosis in spinal cord injury.

通过 HUCMSC 衍生的外泌体靶向递送 GPX4 激活剂可抑制脊髓损伤中的铁死亡。

Fan Baoyou, Gao Xiang, Chen Xiaoyang, Liu Xinjie, Wen Pengyu, Ren Yifei, Huang Boya, Li Junjin, Ran Ning, Ding Han, Ren Yiming, Shi Zhongju, Sun Chunyang, Wang Fengyu, Hao Yan, Liu Tao, Ning Guangzhi, Yao Xue, Feng Shiqing

GPX4 activator enhances neuroprotection and functional recovery in spinal cord injury.

GPX4 激活剂可增强脊髓损伤的神经保护和功能恢复

Liu Xinjie, Pang Yilin, Fan Baoyou, Zhang Jiawei, Liu Shen, Deng Xiaobing, Li Yun, Liu Ying, Zhang Xu, Zhao Chenxi, Wang Xiaoyu, Wu Xudong, Lai Luhua, Feng Shiqing, Liu Wenpeng, Ning Guangzhi, Yao Xue

Omaveloxolone promotes functional recovery of spinal cord injury by reducing inflammatory response and regulating macrophage polarization.

奥马维洛酮通过减少炎症反应和调节巨噬细胞极化来促进脊髓损伤的功能恢复。

Zhao Pengtian, Yuan Wenlu, Zhang Jiayi, Gao Erke, Zhang Dejing, Wu Zhuolin, Zhang Yue, Chen Junbo, Hu Dunxu, Fan Baoyou, Li Junjin, Dai Wenchao, Wei Zhijian, Zhang Tao

Progression in translational research on spinal cord injury based on microenvironment imbalance

基于微环境失衡的脊髓损伤转化研究进展

Fan, Baoyou; Wei, Zhijian; Feng, Shiqing

N6-methyladenosine modification: A potential regulatory mechanism in spinal cord injury

N6-甲基腺苷修饰:脊髓损伤中一种潜在的调节机制

Liu, Derong; Fan, Baoyou; Li, Jinze; Sun, Tao; Ma, Jun; Zhou, Xianhu; Feng, Shiqing

Potential of different cells-derived exosomal microRNA cargos for treating spinal cord injury

不同细胞来源的外泌体microRNA载荷在治疗脊髓损伤方面的潜力

Pan, Dayu; Liu, Weixiao; Zhu, Shibo; Fan, Baoyou; Yu, Nanxi; Ning, Guangzhi; Feng, Shiqing

Identification of adhesion-associated DNA methylation patterns in the peripheral nervous system

鉴定周围神经系统中粘附相关的 DNA 甲基化模式

Shanhuai Zuo, Guidong Shi, Jianchao Fan, Baoyou Fan, Xiaolei Zhang, Shen Liu, Yan Hao, Zhijian Wei, Xianhu Zhou, Shiqing Feng

Cytokine expressions of spinal cord injury treated by neurotropin and nafamostat mesylate

神经营养素和萘莫司他甲磺酸盐治疗脊髓损伤的细胞因子表达

Sun, Chao; Li, Bo; Duan, Huiquan; Tao, Bo; Zhao, Chenxi; Li, Wenxiang; Pang, Yilin; Fan, Baoyou; Feng, Shiqing