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

From pathogenesis to treatment: the role of autophagic cell death in GONFH and its potential mitigation by naringenin.

从发病机制到治疗:自噬性细胞死亡在 GONFH 中的作用及其通过柚皮苷的潜在缓解作用。

Xu Huihui, Huang Haipeng, Zou Kaiao, Yu Xingfang, Zeng Qinghe, Wu Congzi, Chen Wenzhe, Wang Pinger, He Bangjian, Xiao Luwei, Chen Jiali, Tong Peijian, Jin Hongting

HISTAI: a valuable dataset with a valuable lesson

HISTAI:一个有价值的数据集,蕴含着宝贵的经验教训

Hewitt, Katherine J; Reitsam, Nic G; Foersch, Sebastian; Erber, Ramona; Zeng, Qinghe; Kather, Jakob Nikolas

Corrigendum to "Treatment of hemophilic arthropathy by immunomodulatory extracellular vesicle delivered by liposome hybrid nanoparticles" [Bioact. Mater. 40 (2024) 47-63]

对“通过脂质体杂化纳米颗粒递送免疫调节细胞外囊泡治疗血友病性关节病”的更正[Bioact. Mater. 40 (2024) 47-63]

Wang, Dong; Chen, Wenzhe; Chen, Jiali; He, Du; Pan, Yanli; Wang, Pinger; Zeng, Qinghe; Gu, Mancang; Tong, Peijian; Chen, Di; Jin, Hongting

Disrupted brain networks underlying high-fidelity memory retrieval in subjective cognitive decline: A task-based fMRI study

主观认知衰退中高保真记忆提取相关的脑网络紊乱:一项基于任务的功能磁共振成像研究

Tang, Wei; Zeng, Qinghe; Xie, Kaiqi; Cui, Xiaoyu; Jin, Xinhu; Han, Ying; Li, Juan

Dihydroartemisinin ameliorates hemarthrosis-induced cartilage degeneration by suppressing chondrocyte senescence via activation of Keap1-Nrf2 signaling pathway.

双氢青蒿素通过激活 Keap1-Nrf2 信号通路抑制软骨细胞衰老,从而改善关节积血引起的软骨退化

Zeng Qinghe, Feng Yongjia, Huang Haipeng, Zou Kaiao, Chen Wenzhe, Li Xuefeng, Huang Yuliang, Wang Weidong, Yuan Wenhua, Wang Pinger, Tong Peijian, Jin Hongting, Chen Jiali

Myristic Acid Remodels Sphingolipid Metabolism via Dual Pathways: Canonical d18-Sphingolipid Regulation and Non-Canonical d16-Sphingolipid Synthesis

肉豆蔻酸通过双途径重塑鞘脂代谢:经典的d18-鞘脂调控和非经典的d16-鞘脂合成

You, Yunfei; Zeng, Qinghe; Hu, Zhenying; Chen, Yu; Zhan, Mengmin; Wang, Yanlu; Duan, Jingjing

Fufang Duzhong Jiangu granule (FFDZ) ameliorates osteoarthritis development through maintaining subchondral bone homeostasis.

复方杜仲抗骨颗粒(FFDZ)通过维持软骨下骨稳态来改善骨关节炎的发展

Ling Houfu, Xu Jianbo, Zeng Qinghe, Fang Zhen, Cheng Liangyan, Yuan Wenhua, Chen Jiali, Huang Yuliang, Hu Songfeng, Jin Hongting, Tong Peijian, Lu Ke, Wang Pinger

Programmable microparticles rewire CAR signaling to enable super-physiological expansion of human T cells in vitro

可编程微粒重塑CAR信号通路,从而在体外实现人T细胞的超生理扩增

Zeng, Qinghe; Flemming, Landon; Chen, Yuanzhou; Mazumder, Thomas; Hammerlindl, Heinz; Allen, Greg M; Almeida, Ricardo; Williams, Jasper Z; Hernández-López, Rogelio A; Eyquem, Justin; Ye, Chun J; Lim, Wendell A; Tang, Qizhi; Desai, Tejal A; Huang, Xiao

Author Correction: Regression-based Deep-Learning predicts molecular biomarkers from pathology slides

作者更正:基于回归的深度学习从病理切片中预测分子生物标志物

El Nahhas, Omar S M; Loeffler, Chiara M L; Carrero, Zunamys I; van Treeck, Marko; Kolbinger, Fiona R; Hewitt, Katherine J; Muti, Hannah S; Graziani, Mara; Zeng, Qinghe; Calderaro, Julien; Ortiz-Brüchle, Nadina; Yuan, Tanwei; Hoffmeister, Michael; Brenner, Hermann; Brobeil, Alexander; Reis-Filho, Jorge S; Kather, Jakob Nikolas

Regression-based Deep-Learning predicts molecular biomarkers from pathology slides

基于回归的深度学习从病理切片中预测分子生物标志物

El Nahhas, Omar S M; Loeffler, Chiara M L; Carrero, Zunamys I; van Treeck, Marko; Kolbinger, Fiona R; Hewitt, Katherine J; Muti, Hannah S; Graziani, Mara; Zeng, Qinghe; Calderaro, Julien; Ortiz-Brüchle, Nadina; Yuan, Tanwei; Hoffmeister, Michael; Brenner, Hermann; Brobeil, Alexander; Reis-Filho, Jorge S; Kather, Jakob Nikolas