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

Pharmacology and therapeutics of bile acid synthesis and modification enzymes in metabolic diseases

代谢性疾病中胆汁酸合成和修饰酶的药理学和治疗学

Ding, Lili; Jin, Lihua; Huang, Wendong

Untargeted Metabolomics Unravel the Effect of SlPBB2 on Tomato Fruit Quality and Associated Plant Metabolism

非靶向代谢组学揭示SlPBB2对番茄果实品质及相关植物代谢的影响

Wang, Cuicui; Jin, Lihua; Fu, Daqi; Tian, Weina

Bile acid signaling, metabolism, and aging

胆汁酸信号传导、代谢和衰老

Sun, Ji; Zhang, Shili; Jin, Lihua; Huang, Wendong

Comment regarding 'gut microbiota, circadian rhythms and their interactions: implications for the pathogenesis and treatment of depression'

关于“肠道菌群、昼夜节律及其相互作用:对抑郁症发病机制和治疗的意义”的评论

Quan, Hongyu; Jin, Lihua; Li, Yongmei

A Printed Microscopic Universal Gradient Interface for Super Stretchable Strain-Insensitive Bioelectronics

一种用于超可拉伸、应变不敏感生物电子器件的印刷式微观通用梯度界面

Song, Kaidong; Zhou, Jingyuan; Wei, Chen; Ponnuchamy, Ashok; Bappy, Md Omarsany; Liao, Yuxuan; Jiang, Qiang; Du, Yipu; Evans, Connor J; Wyatt, Brian C; O' Sullivan, Thomas; Roeder, Ryan K; Anasori, Babak; Hoffman, Anthony J; Jin, Lihua; Duan, Xiangfeng; Zhang, Yanliang

Schisantherin A interacts with gut bacteria to stimulate adipose tissue thermogenesis in obese mice via a TGR5‒p-CREB‒STAT6 signaling pathway.

五味子素 A 与肠道细菌相互作用,通过 TGR5-p-CREB-STAT6 信号通路刺激肥胖小鼠的脂肪组织产热。

Wang Xunjiang, Wang Xu, Yu Shenglan, Huang Luyao, Xue Qiongwen, Yang Xinru, Wang Zixuan, Lin Wenyuan, Jiang Yaping, Xu Ying, Liao Qi, Jin Lihua, Wang Zhengtao, Tao Feng, Yang Li, Huang Wendong, Ding Lili

Differential roles of individual bile acid in physiology and disease

不同胆汁酸在生理和疾病中的差异性作用

Fan, Mingjie; Yang, Zhiyu; Jin, Lihua; Huang, Wendong

EP300 compromises antitumor immunity by increasing SOCS1 expression

EP300 通过增加 SOCS1 表达来削弱抗肿瘤免疫力。

Yanqiong Zeng,Ying Zhou,Jiayin Ruan,Wancheng Liu,Huimin Fan,Na Liu,Lili Li,Jiayuan Ma,Xiaoxia Jin,Lihua Duan,Youguo Chen,Genhong Cheng,Heng Yang

Fracture of liquid crystal elastomers

液晶弹性体的断裂

Zhou, Yu; Wei, Chen; Jin, Lihua

CO confers neuroprotection via activating the PERK-calcineurin pathway and inhibiting necroptosis

一氧化碳通过激活PERK-钙调磷酸酶通路和抑制坏死性凋亡发挥神经保护作用。

Park, Jeongmin; Jin, LiHua; Song, Hyun-Chul; Chen, Yingqing; Jang, Eun Young; Park, Gyu Hwan; Yang, Chae Ha; Ryter, Stefan W; Park, Jeong Woo; Zheng, Min; Joe, Yeonsoo; Chung, Hun Taeg