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

PTEN Loss Promotes PI3Kβ Phosphorylation and EPHA2/SRC/p-PI3KβY962 Complex Assembly to Drive Tumorigenesis.

PTEN 缺失促进 PI3Kβ 磷酸化和 EPHA2/SRC/p-PI3KβY962 复合物组装,从而驱动肿瘤发生。

Tang Shuang, Zhou Qian, Bergholz Johann S, Jiang Tao, Wang Weihua, Ji Renlei, Huang Wendi, Wu Jiachen, Li Yutong, Wan Xiaochun, He Xiadi, Jing Qianchen, Sun Menghong, Johnson Jared L, Yaron-Barir Tomer M, Li Da-Qiang, Dai Bo, Wang Zefeng, Li Xiaoling, Cantley Lewis C, Roberts Thomas M, Zhao Jean J

TRIM11 potentiates antitumor immunity via inhibition of the IFN-γ/PD-L1 axis.

TRIM11 通过抑制 IFN-γ/PD-L1 轴增强抗肿瘤免疫力。

Xu Yingying, Cai Runjie, Liu Maoxuan, Fan Xiaokai, Wan Xiaochun, Yang Xiaolu, Bi Jiacheng, Chen Liang

Targeted inhibition of Nrf2 potentiates antitumor immunity and enhances the efficacy of immunotherapy in hepatocellular carcinoma.

靶向抑制 Nrf2 可增强抗肿瘤免疫力,提高肝细胞癌免疫疗法的疗效。

Zhu Yan, Liu Maoxuan, Fan Xiaokai, Xu Yingying, Diao Xueling, Bi Jiacheng, Wan Xiaochun, Assaraf Yehuda G, Kwok Hang Fai, Chen Liang

A bio-inspired computational pipeline for antibody screening and repurposing.

一种受生物启发的抗体筛选和再利用计算流程。

Li Junxin, Ige Mark A, Zhang Chao, Liao Linbu, Rasul Faiz, Ren Xiaohu, Wan Xiaochun, Chen Youhai, Zhang Haiping

TIPE2 gene knockdown in mice attenuates experimental colitis by diminishing inflammatory cell infiltration.

敲除小鼠体内的 TIPE2 基因可通过减少炎症细胞浸润来减轻实验性结肠炎。

Tang Yexiao, Li Ping, Li Minghui, Zhang Pengchao, Lu Zhen, Qiao Hang, Wei Jing, Xu Zhiming, Wan Xiaochun, Xu Shu, Chen Youhai H, Zhang Guizhong

Modulatory Effects of Tea Components with Different Fermentation Degrees on Fluoride Bioavailability in Rats

不同发酵程度茶叶成分对大鼠氟化物生物利用度的调节作用

Li, Jingjing; Xu, Zhichao; Hu, Yanan; Huang, Ying; Hu, Pengcheng; Hou, Chaoyuan; Hou, Ruyan; Peng, Chuanyi; Li, Daxiang; Wan, Xiaochun; Chen, Guijie; Cai, Huimei

Pangenome analyses of tea plants reveal structural variations driving gene expression alterations and agronomic trait diversification

茶树泛基因组分析揭示了驱动基因表达改变和农艺性状多样化的结构变异

Tao, Lingling; Zhu, Junyan; Hu, Jianbing; Xu, Qi; Wu, Jun; Chen, Chunlin; Li, Youyong; Li, Fangdong; Chen, Hongrong; Huang, Songyan; Zhou, Qianqian; Zhao, Yuanyan; Hu, Yanping; Liu, Shengrui; Dong, Kun; Chen, Linbo; Liu, Benying; Wan, Xiaochun; Xia, Enhua; Zhou, Yongfeng; Wei, Chaoling

CD28 is superior to 4-1BB costimulation in generating CAR-NK cells for tumor immunotherapy

CD28 在生成用于肿瘤免疫治疗的 CAR-NK 细胞方面优于 4-1BB 共刺激。

Zhang, Pengchao; Feng, Xuejia; Niu, Xiangyun; Liu, Zhongming; Li, Minghui; Liu, Maoxuan; Yan, Dehong; Zhang, Guizhong; Wan, Xiaochun

Mesothelin-targeted CAR-T cells secreting NKG2D-BiTEs exhibit potent efficacy against triple-negative breast cancer

靶向间皮素并分泌NKG2D-BiTEs的CAR-T细胞对三阴性乳腺癌表现出强大的疗效

Saliu, Muhammad Auwal; Wang, Qi; Salisu, Mansur Dabai; Ren, Yuanfeng; Zhang, Pengchao; Suleiman, Rabiatu Bako; Cao, Bingbing; Xu, Yiqiao; Liu, Xudong; Lluis, Frederic; Liu, Maoxuan; Wan, Xiaochun

Flagellin engineering enhances CAR-T cell function by reshaping tumor microenvironment in solid tumors

鞭毛蛋白工程通过重塑实体瘤的肿瘤微环境来增强CAR-T细胞的功能

Niu, Xiangyun; Zhang, Pengchao; Dai, Liujiang; Peng, Xixia; Liu, Zhongming; Tang, Yexiao; Zhang, Guizhong; Wan, Xiaochun