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

BMX inhibition overcomes small cell lung cancer chemoresistance by stabilizing E2F1 via ERK1/2-Cyclin D1/CDK4/6 axis.

BMX抑制剂通过ERK1/2-Cyclin D1/CDK4/6轴稳定E2F1,从而克服小细胞肺癌的化疗耐药性。

Wu Ting, Qi Shuang, Shi Chenliang, Wu Chao, Liu Qingwang, Hu Chen, Hu Jie, Wang Aoli, Liu Jing, Qi Ziping, Wang Wenchao, Liu Qingsong

MAPK14 converges on key transcriptional machinery to promote vascular smooth muscle cell degeneration in abdominal aortic aneurysm.

MAPK14 作用于关键转录机制,促进腹主动脉瘤血管平滑肌细胞退化。

Wu Xiaoliang, Wang Chunhui, Ishimwe Nestor, Zhang Wei, Doja Jaser, Shan Shengshuai, Ge Chunyu, Sun Yong, Zhao Jinjing, Castillo Micah, Sotonyi Peter, Gyurok Gergo, Csanyi Gabor, Bryant W Bart, Dong Kunzhe, Chen Yabing, Vazquez-Padron Roberto, Miano Joseph M, Long Xiaochun

MAPK-driven epithelial cell plasticity drives colorectal cancer therapeutic resistance.

MAPK驱动的上皮细胞可塑性导致结直肠癌治疗耐药。

Translational selenium nanoparticles trigger apoptosis in triple-negative breast cancer cells through the MAPKs/Bcl2 pathway

硒纳米颗粒通过 MAPK/Bcl2 通路诱导三阴性乳腺癌细胞凋亡。

Zou, Binhua; Li, Shuoshan; Luk, Kar-Him; Dong, Xiaoli; Chun-Him Lai, Nathanael; Cheng, Wai-Yin; Liu, Gang; Wong, Ka-Hing; Chen, Tianfeng

Single chiral center epimerization-modulated multi-carrier-free oral hydrogel for remolding inflammatory microenvironment via PI3K/Akt/NF-κB and MAPK signaling pathways

单手性中心异构化调控的多载体无口腔水凝胶,可通过PI3K/Akt/NF-κB和MAPK信号通路重塑炎症微环境

Pi, Wenmin; Li, Gen; Qiu, Hailing; Zhao, Yihang; Zhang, Yaozhi; Tan, Xinru; Lu, Jihui; Wang, Zhijia; Huang, Xuemei; Wang, Penglong

Geometry-driven immunomodulation in 3D-printed bioceramics: Negative curvature promotes macrophage M2 polarization via Ras-MAPK/HIF-1α signaling for vascularized osteogenesis.

几何形状驱动的 3D 打印生物陶瓷免疫调节:负曲率通过 Ras-MAPK/HIF-1α 信号传导促进巨噬细胞 M2 极化,从而促进血管化骨生成。

Lu Qiji, Kuang Yudi, Diao Jingjing, Zheng Jiaqian, Zhao Naru, Du Chang, Wang Yingjun

Nanozyme hydrogels remodel pathological microenvironment for temporomandibular joint osteoarthritis therapy via inhibiting MAPK signal pathway.

纳米酶水凝胶通过抑制 MAPK 信号通路重塑颞下颌关节骨关节炎的病理微环境。

Xing Min, Chen Shuhan, Zhu Mengjiao, Cao Yuanming, Feng Jiayin, Qian Wenhao, Ye Kuicai, Liu Xuanyong, Qiu Jiajun

Prolonged KRAS-MAPK Inhibition Induces Interferon Signaling that Promotes Cell State Transition and Confers Therapeutic Vulnerabilities

长期抑制KRAS-MAPK会诱导干扰素信号传导,从而促进细胞状态转变并赋予治疗脆弱性

Bulle, Ashenafi; Chen, Yali; Li, Huaping; Chen, Timothy Hung-Po; Khawar, Iftikhar Ali; Li, Lin; Wang, Yu; Liu, Peng; Somani, Vikas Kumar; Kurupi, Richard; Geng, Yutong; Pereye, Ofejiro Blessing; Bansod, Sapana; Le, Son B; Ruzinova, Marianna B; Tran, David D; Lim, Kian-Huat

KRASG12R-Mutant Pancreatic Cancer Features Limited ERK/MAPK Transcriptional Activity and a Distinctive Tumor Microenvironment

KRASG12R突变型胰腺癌具有ERK/MAPK转录活性受限和独特的肿瘤微环境。

Burge, Rachel A; Le Roux, Ozgun; Popow, Olesja; Spadafora, Victoria K; Rajesh, Christabelle; Adair, Sara J; Bialousow, Lucas; Murphy, Cailey; Saberi, Samaneh; Vaena, Silvia G; Taquey, Margaret C; Allen, Sarah; Han, Lu; Helke, Kristi L; Sharma, Sudarshana; Ostrowski, Michael C; Guttridge, Denis C; Dincman, Toros A; Bauer, Todd W; Kashatus, David F; McFall, Thomas; Haigis, Kevin M; Hollingsworth, Michael A; Counter, Christopher M; Der, Channing J; Hobbs, G Aaron

p38 MAPK orchestrates cross-tissue potassium homeostasis for survival

p38 MAPK 协调跨组织钾稳态以维持生存

Huang, Rong; Hu, Fangchao; Li, Yiyao; Gao, Qifei; Huang, Jintao; Wang, Jiarui; Lu, Wei; Wang, Liping; Fang, Yapeng; Blackwell, T Keith; Wu, Ziyun