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

Activation of USP30 Disrupts Endothelial Cell Function and Aggravates Acute Lung Injury Through Regulating the S-Adenosylmethionine Cycle.

USP30 的激活通过调节 S-腺苷甲硫氨酸循环破坏内皮细胞功能并加重急性肺损伤。

Baoyinna Baoyinna, He Jinshan, Miao Jiaxing, Shaheen Nargis, Xia Boyu, Wang Cankun, Ma Qin, Bernier Matthew C, Whitson Bryan A, Sun Nuo, Zhao Jing, Zhao Yutong

Multifaceted Role of Microbiota-Derived Indole-3-Acetic Acid in Human Diseases and Its Potential Clinical Application

微生物群来源的吲哚-3-乙酸在人类疾病中的多重作用及其潜在的临床应用

Shaheen, Nargis; Miao, Jiaxing; Xia, Boyu; Zhao, Yutong; Zhao, Jing

Geraniin attenuates isoproterenol-induced cardiac hypertrophy by inhibiting inflammation, oxidative stress and cellular apoptosis.

香叶苷通过抑制炎症、氧化应激和细胞凋亡来减轻异丙肾上腺素引起的心脏肥大

Ding Jiaqi, Zhang Shenjie, Li Qi, Xia Boyu, Wu Jingjing, Lu Xu, Huang Chao, Yuan Xiaomei, You Qingsheng

Pericardio-diaphragmatic rupture after blunt trauma: a case report

钝性创伤后心包膈破裂:病例报告

Xing, Dayi; Xia, Boyu; Yang, Jiandong; Zhao, Yuansheng

L-theanine alleviates myocardial ischemia/reperfusion injury by suppressing oxidative stress and apoptosis through activation of the JAK2/STAT3 pathway in mice

L-茶氨酸通过激活JAK2/STAT3通路抑制氧化应激和细胞凋亡,从而减轻小鼠心肌缺血/再灌注损伤。

Li, Qi; Ding, Jiaqi; Xia, Boyu; Liu, Kun; Zheng, Koulong; Wu, Jingjing; Huang, Chao; Yuan, Xiaomei; You, Qingsheng

Indole-3-Acetic Acid Protects Against Lipopolysaccharide-induced Endothelial Cell Dysfunction and Lung Injury through the Activation of USP40

吲哚-3-乙酸通过激活USP40来保护内皮细胞免受脂多糖诱导的内皮细胞功能障碍和肺损伤。

Shaheen, Nargis; Miao, Jiaxing; Li, Donna; Xia, Boyu; Baoyinna, Boina; Zhao, Yutong; Zhao, Jing

FBXL19 in endothelial cells protects the heart from influenza A infection by enhancing antiviral immunity and reducing cellular senescence programs.

内皮细胞中的 FBXL19 通过增强抗病毒免疫力和减少细胞衰老程序来保护心脏免受甲型流感病毒感染

Xia Boyu, Chen Huilong, Taleb Sarah J, Xi Xiaoqing, Shaheen Nargis, Baoyinna Boina, Soni Sourabh, Mebratu Yohannes A, Yount Jacob S, Zhao Jing, Zhao Yutong

Unraveling Novel Strategies: Targeting Miz1 for Degradation to Enhance Antiviral Defense against Influenza A Virus

揭示全新策略:靶向降解 Miz1 以增强对甲型流感病毒的抗病毒防御能力

Xia, Boyu; Zhao, Jing