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

Targeting engineered cell membrane camouflaged gallic acid-cerium nanozyme for intercepting the inflammation-free radical vicious cycle in atherosclerosis

靶向工程化细胞膜伪装的没食子酸-铈纳米酶以阻断动脉粥样硬化中的炎症自由基恶性循环

Han, Zhiqiang; Chen, Qiao; Duan, Xinmei; He, Zhigui; Mou, Nianlian; Cao, Yu; Ou, Yangsipei; He, Houhua; Zhang, Can; Yang, Xu; Qu, Kai; Zhang, Kun; Malashicheva, Anna; Zhong, Yuan; Li, Chuanwei; Fu, Li; Wang, Guixue; Wu, Wei

Mesothelial Cells in Fibrosis: Focus on Intercellular Crosstalk

纤维化中的间皮细胞:聚焦细胞间相互作用

Bakalenko, Nadezhda; Kuznetsova, Evdokiya; Dergilev, Konstantin; Beloglazova, Irina; Malashicheva, Anna

Mesenchymal stem cell membrane-coated kaempferol biomimetic nanoformulation for the treatment of atherosclerosis

间充质干细胞膜包覆的山奈酚仿生纳米制剂用于治疗动脉粥样硬化

Zhang, Qianting; Wang, Xiangxiu; Zhang, Hongping; He, Keqiao; Pu, Daojun; Chen, Hong; Malashicheva, Anna; Han, Wenbo; Zhao, Chuanrong; Wang, Guixue

Surface Charge-Determined Protein Coronas of Nanoparticles Control Endothelial Cells Uptake Under Low Magnitude Shear Stress

纳米颗粒表面电荷决定的蛋白质冠层在低剪切应力下控制内皮细胞的摄取

Zhang, Hongping; Zhao, Shuang; Zhang, Qianting; Deng, Chengchen; Zhao, Chuanrong; Wang, Xiangxiu; Malashicheva, Anna; Wang, Yi; Qiu, Juhui; Wang, Guixue

Gut microbiota-derived butyric acid regulates calcific aortic valve disease pathogenesis by modulating GAPDH lactylation and butyrylation

肠道菌群来源的丁酸通过调节GAPDH的乳酸化和丁酸化来调控钙化性主动脉瓣疾病的发病机制。

Wang, Chunli; Liu, Zongtao; Zhou, Tingwen; Wu, Jiaqin; Feng, Fan; Wang, Shunshun; Chi, Qingjia; Sha, Yongqiang; Zha, Shuai; Shu, Songren; Qu, Linghang; Du, Qianqian; Yu, Huiming; Yang, Li; Malashicheva, Anna; Dong, Nianguo; Xie, Fei; Wang, Guixue; Xu, Kang

Similar, but not the same: multiomics comparison of human valve interstitial cells and osteoblast osteogenic differentiation expanded with an estimation of data-dependent and data-independent PASEF proteomics

相似但不相同:人类瓣膜间质细胞和成骨细胞成骨分化的多组学比较扩展,并估计了数据依赖和数据独立的 PASEF 蛋白质组学

Arseniy Lobov, Polina Kuchur, Nadezhda Boyarskaya, Daria Perepletchikova, Ivan Taraskin, Andrei Ivashkin, Daria Kostina, Irina Khvorova, Vladimir Uspensky, Egor Repkin, Evgeny Denisov, Tatiana Gerashchenko, Rashid Tikhilov, Svetlana Bozhkova, Vitaly Karelkin, Chunli Wang, Kang Xu, Anna Malashicheva

Endothelial-mesenchymal crosstalk drives osteogenic differentiation of human osteoblasts through Notch signaling

内皮-间质细胞相互作用通过Notch信号通路驱动人类成骨细胞的成骨分化

Perepletchikova, Daria; Kuchur, Polina; Basovich, Liubov; Khvorova, Irina; Lobov, Arseniy; Azarkina, Kseniia; Aksenov, Nikolay; Bozhkova, Svetlana; Karelkin, Vitaliy; Malashicheva, Anna

Correction to: Endothelial-mesenchymal crosstalk drives osteogenic differentiation of human osteoblasts through Notch signaling

更正:内皮-间充质细胞相互作用通过Notch信号通路驱动人类成骨细胞的成骨分化

Perepletchikova, Daria; Kuchur, Polina; Basovich, Liubov; Khvorova, Irina; Lobov, Arseniy; Azarkina, Kseniia; Aksenov, Nikolay; Bozhkova, Svetlana; Karelkin, Vitaliy; Malashicheva, Anna

Communication between endothelial cells and osteoblasts in regulation of bone homeostasis: Notch players

内皮细胞与成骨细胞之间的通讯在骨稳态调节中的作用:Notch信号通路参与者

Perepletchikova, Daria; Malashicheva, Anna

Human Pericardial Fluid-Derived Cells Exhibit Mesothelial-like Properties and Exert Proangiogenic Effects on Endothelial Cells

人心包液来源细胞表现出间皮样特性,并对内皮细胞发挥促血管生成作用

Dergilev, Konstantin; Zubko, Alexander; Beloglazova, Irina; Tsokolaeva, Zoya; Azimova, Ekaterina; Dolgodvorova, Aleria; Iarushkina, Irina; Andreev, Alexander; Shiryaev, Andrey; Docshin, Pavel; Malashicheva, Anna; Parfyonova, Yelena