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

Receptor binding domain-independent pancoronavirus vaccine design by fusion of conserved T/B Epitopes.

通过融合保守的T/B表位设计不依赖于受体结合域的泛冠状病毒疫苗。

Yang Yunru, Chen Yetian, Hong Mengyu, Zou Ronghua, Yao Jingxue, Li Entao, Wang Jiayi, Ye Xiaodong, Xing Yixiang, Tang Yangming, Lu Xiaojie, Ding Chengchao, He Hongliang, Tong Dali, Shang Yuhua, Wang Jian, Zhao Guangyu, Huang Xiaoxue, Feng Fuli, Cheng Qingyu, Li Bofeng, Huang Baoying, Tan Wenjie, Chiu Sandra, Jin Tengchuan

Reprogramming the Tumor Immune Microenvironment with ICAM-1-Targeted Antibody‒Drug Conjugates and B7-H3-CD3 Bispecific Antibodies.

利用 ICAM-1 靶向抗体药物偶联物和 B7-H3-CD3 双特异性抗体对肿瘤免疫微环境进行重编程

Zhou Shoubing, Hong Mengyu, Zhao Dan, Li Wenyu, Yuan Xiaolong, Wang Yinghong, Li Hualong, Yang Yang, Jin Tengchuan, Pan Jing

Plant polysaccharides utilized by gut microbiota: New players in ameliorating cognitive impairment

肠道菌群利用的植物多糖:改善认知障碍的新角色

Sun, Ying; Ho, Chi-Tang; Zhang, Yuting; Hong, Mengyu; Zhang, Xin

A Natural Plant Source-Tea Polyphenols, a Potential Drug for Improving Immunity and Combating Virus

天然植物来源——茶多酚,一种提高免疫力和对抗病毒的潜在药物

Hong, Mengyu; Cheng, Lu; Liu, Yanan; Wu, Zufang; Zhang, Peng; Zhang, Xin

Tea Polyphenols as Prospective Natural Attenuators of Brain Aging

茶多酚作为潜在的天然脑老化减缓剂

Hong, Mengyu; Yu, Jing; Wang, Xuanpeng; Liu, Yanan; Zhan, Shengnan; Wu, Zufang; Zhang, Xin

Mechanisms Underlying the Interaction Between Chronic Neurological Disorders and Microbial Metabolites via Tea Polyphenols Therapeutics

茶多酚疗法揭示慢性神经系统疾病与微生物代谢产物相互作用的机制

Hong, Mengyu; Cheng, Lu; Liu, Yanan; Wu, Zufang; Zhang, Peng; Zhang, Xin

Direct Charge Trapping Multilevel Memory with Graphdiyne/MoS(2) Van der Waals Heterostructure

基于石墨炔/MoS₂范德华异质结构的直接电荷俘获多级存储器

Wen, Jialing; Tang, Wenhui; Kang, Zhuo; Liao, Qingliang; Hong, Mengyu; Du, Junli; Zhang, Xiankun; Yu, Huihui; Si, Haonan; Zhang, Zheng; Zhang, Yue

Overexpression of Ubiquitin-Specific Protease 2 (USP2) in the Heart Suppressed Pressure Overload-Induced Cardiac Remodeling

心脏中泛素特异性蛋白酶 2 (USP2) 的过度表达可抑制压力超负荷引起的心脏重塑

Junhui Xing, Pengcheng Li, Jin Hong, Mengyu Wang, Yuzhou Liu, Yueqiao Gao, Jianzeng Dong, Heping Gu, Ling Li