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

Engineered TIGIT-Blockade Membrane Vesicles Synergize with Microwave Ablation to Mediate Liver Metastases Eradication

工程化TIGIT阻断膜囊泡与微波消融协同作用,介导肝转移瘤的根除

Li, Shaoyue; Xu, Weichen; Shen, Yuting; Shan, Xuexia; Sun, Jiawei; Ding, Shisi; Hou, Xiaodong; Zhang, Shaoning; Niu, Zhiyuan; Wang, Taixia; Guan, Xin; Li, Xiao; Ren, Weiwei; Du, Dou; Xu, Huixiong; Yue, Wenwen; Sun, Liping

Ultrasound-Triggered Nanocomposite "Lever" Hydrogels with a Full Repair System Accelerates Diabetic Foot Ulcer Repair

超声触发的纳米复合“杠杆”水凝胶及其完整的修复系统可加速糖尿病足溃疡的修复

Shen, Yuting; Li, Shaoyue; Hou, Xiaodong; Yu, Jifeng; Zhu, Yuli; Zhao, Chongke; Niu, Zhiyuan; Guan, Xin; Xiong, Bing; Wang, Sirui; Yang, Yifei; Li, Xiao; Sun, Liping; Wu, Shengbo; Huang, Bin; Xu, Huixiong; Yin, Haohao

Targeting Splenic Myeloid Cells with Nanobiologics to Prevent Postablative Pancreatic Cancer Recurrence via Inducing Antitumor Peripheral Trained Immunity.

利用纳米生物制剂靶向脾脏髓系细胞,通过诱导抗肿瘤外周训练免疫来预防胰腺癌消融术后复发

Wu Shengbo, Xu Weichen, Shan Xuexia, Sun Liping, Liu Shuo, Sun Xixi, Li Shaoyue, Hou Xiaodong, Bo Xiaowan, Peng Chengzhong, Huang Bin, Xu Huixiong, Yue Wenwen

Pre-activation of T cell immunity potentiates ferroptotic cell death through arachidonic acid hybridized nanovesicles

T细胞免疫的预激活通过花生四烯酸杂交纳米囊泡增强铁死亡作用

Lyu, Qi; Liu, Chang; Li, Shaoyue; Shan, Dandan; Han, Hong; Wang, Liying; Xu, Huixiong

Sono-triggered endoplasmic reticulum-targeted ROS burst silencing CD300ld to alleviate polymorphonuclear myeloid-derived suppressor cells for breast cancer treatment.

声波触发内质网靶向 ROS 爆发沉默 CD300ld 以减轻多形核髓系来源抑制细胞对乳腺癌治疗的影响。

Chen Xuejun, Li Shaoyue, Lu Qing, Li Yitong, Zhu Mingrui, Zhang Shen, Fang Yan, Wen Congjian, Yang Daohui, Fan Peili, Xu Huixiong, Yin Haohao

Sonogenetics in the Treatment of Chronic Diseases: A New Method for Cell Regulation

超声遗传学在慢性疾病治疗中的应用:一种新的细胞调控方法

Zhu, Mingrui; Fang, Yan; Sun, Yikang; Li, Shaoyue; Yu, Jifeng; Xiong, Bing; Wen, Congjian; Zhou, Boyang; Huang, Bin; Yin, Haohao; Xu, Huixiong

Losartan-based nanocomposite hydrogel overcomes chemo-immunotherapy resistance by remodeling tumor mechanical microenvironment

以氯沙坦为基础的纳米复合水凝胶通过重塑肿瘤机械微环境克服化学免疫治疗耐药性

Xiaodong Hou #, Yuting Shen #, Bin Huang #, Qiuyan Li, Shaoyue Li, Tingting Jiang, Xuexia Shan, Weichen Xu, Shuo Liu, Shengbo Wu, De Zhao, Anqi Zhu, Liping Sun, Huixiong Xu, Wenwen Yue2