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

Oncolytic virotherapy potentiates chemo-PD-1 immunotherapy by engaging chemo-resistant bystander CD8(+) T cells.

溶瘤病毒疗法通过激活耐药的旁观者 CD8(+) T 细胞来增强化疗-PD-1 免疫疗法的效果。

Yang Yang, He Junjian, Liang Texi, Li Kaiyi, Lin Yao, Wang Hairu, Xi Wenwen, Ye Shusen, Qiu Ding, Xie Chunyang, Hao Yaxing, Li Teming, Yue Shuai, Ye Lilin, Chen Xiangyu

Targeting Mettl8-Tcf1 axis promotes CD8+ TPEX differentiation and antitumor immunity.

靶向 Mettl8-Tcf1 轴可促进 CD8+ TPEX 分化和抗肿瘤免疫。

Song Jiaxi, Cui Dan, Wang Jiabao, Qi Xuewei, Ma Jiaxin, Liu Qing, Yang Jing, Yu Haoyu, Ye Lilin, Huang Qizhao, Li Jia, Li Fengyin

Oncolytic virotherapy mobilizes tumor-resident, granzyme B-producing bystander CD4(+) T cells to inhibit systemic microbial infection

溶瘤病毒疗法可动员肿瘤内驻留的、产生颗粒酶B的旁观者CD4(+) T细胞,从而抑制全身性微生物感染。

Yue, Shuai; He, Junjian; Ye, Shusen; Lin, Yao; Yang, Yang; Hao, Yaxing; Liang, Texi; Qiu, Ding; Li, Kaiyi; Xie, Chunyang; Wang, Hairu; Xi, Wenwen; Yang, Xiaofan; Xiong, Yanli; Xu, Yu; Xu, Wenyue; Yang, Yi; Zhang, Guozhong; Zhao, Jing; Ye, Lilin; Li, Mengxia; Chen, Xiangyu

CCR2(+) monocytes promote memory CD8(+) T-cell differentiation via membrane-bound TGF-β

CCR2(+)单核细胞通过膜结合的TGF-β促进记忆性CD8(+) T细胞分化。

Sun, Lina; Zhang, Cangang; Jiao, Anjun; Su, Yanhong; Zhang, Tianzhe; Wang, Qianhao; Ge, Yao; Yang, Chen; Yuan, Ning; Zhang, Lianjun; Sun, Chenming; Chen, Liang; Ye, Lilin; Zhang, Baojun

Chromatin landscape alteration uncovers multiple transcriptional circuits during memory CD8+ T-cell differentiation

染色质结构改变揭示了记忆性CD8+ T细胞分化过程中的多个转录回路

Liu, Qiao; Dong, Wei; Liu, Rong; Xu, Luming; Ran, Ling; Xie, Ziying; Lei, Shun; Su, Xingxing; Yue, Zhengliang; Xiong, Dan; Wang, Lisha; Wen, Shuqiong; Zhang, Yan; Hu, Jianjun; Qin, Chenxi; Chen, Yongchang; Zhu, Bo; Chen, Xiangyu; Wu, Xia; Xu, Lifan; Huang, Qizhao; Cao, Yingjiao; Ye, Lilin; Tang, Zhonghui

Tissue-Resident Memory CD8+ T Cells: Differentiation, Phenotypic Heterogeneity, Biological Function, Disease, and Therapy

组织驻留记忆CD8+ T细胞:分化、表型异质性、生物学功能、疾病和治疗

Xu, Luming; Ye, Lilin; Huang, Qizhao

FXR-mediated antigen-specific CD8(+) T cell enhances antitumor immunity in intrahepatic cholangiocarcinoma

FXR介导的抗原特异性CD8(+) T细胞增强肝内胆管癌的抗肿瘤免疫

Liu, Shanshan; Liang, Zhixing; Zhu, Lisi; Zheng, Yuhao; Yu, Haoyuan; Ye, Shusen; Liang, Texi; Huang, Linzi; Ouyang, Jiayi; Cao, Yingjiao; Ye, Lilin; Ye, Linsen

Commensal bacteria education history calibrates the naivety and activation threshold of adaptive antiviral immune system

共生细菌的教育历史校准了适应性抗病毒免疫系统的幼稚性和激活阈值。

Li, Baohua; Sha, Zhou; Mou, Li; Zhang, Feng; Jia, Lifeng; Zhu, Yan; Guo, Yan; Deng, Guohong; Wu, Haibo; Wei, Hong; Wu, Yuzhang; Ye, Lilin; Liu, Changjiang; Li, Jian; Zhang, Yanyan

DOCK2 protects against bacterial sepsis by constraining T helper 1 response

DOCK2通过抑制T辅助细胞1的反应来抵抗细菌性败血症。

Ye, Shusen; Huang, Linzi; Zheng, Yuhao; Liu, Shanshan; Wang, Xiangyang; Yu, Haoyuan; Zhu, Lisi; Liang, Texi; Wang, Yifei; Zhang, Chunmin; Wu, Fan; Ye, Lilin; Cao, Yingjiao

Bcl6 controls the stability and suppressive function of regulatory T cells in head and neck squamous cell carcinoma

Bcl6 控制头颈部鳞状细胞癌中调节性 T 细胞的稳定性和抑制功能

Wen, Shuqiong; Su, Xingxing; Guo, Junyi; Ou, Zhanpeng; Wang, Lisha; Yue, Zhengliang; Zhao, Jing; Ran, Ling; Hu, Jianjun; Wang, Yuzhu; Ran, Mengqu; He, Qinyi; Ji, Ping; Ye, Lilin; Chen, Zhiyu; Xu, Lifan; Huang, Qizhao