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

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

Histone Lactylation-Mediated Metabolic Remodeling in Vascular Smooth Muscle Cells Aggravates Aortic Aneurysm and Dissection by Promoting Lactate Accumulation

组蛋白乳酸化介导的血管平滑肌细胞代谢重塑通过促进乳酸积累加剧主动脉瘤和主动脉夹层

Liu, Liwei; Zhang, Jinyan; Dong, Zhen; Cui, Yikai; Zou, Xiaoyi; Lai, Hao; Gu, Jiawei; Weng, Xinyu; Jin, Xuejuan; Qiu, Tianyi; Pei, Zhiqiang; Hong, Wenxuan; Huang, Ya; Luo, Wei; Pan, Lihong; Sun, Xiaolei; Zhang, Beijian; Shalamu, Adilan; Sun, Aijun; Ge, Junbo

When Smell Drives Swell: Olfr2 Fuels Inflammation in AAA

嗅觉引发肿胀:Olfr2 加剧腹主动脉瘤炎症

Stuttgen, Gage M; Chang, Michael; Williams, Jesse W

Deep learning based volumetric analysis of infrarenal abdominal aortic aneurysms characterized on CTA

基于深度学习的CTA影像下肾下腹主动脉瘤体积分析

Weiss, David; Hager, Thomas; Lin, MingDe; Sritharan, Durga; Bousabarah, Khaled; Renninghoff, Daniel; Holler, Wolfgang; Simmons, Kathryn; Haubold, Johannes; Loh, Sarah; Fischer, Uwe; Chapiro, Julius; Deuschl, Cornelius; Aboian, Mariam; Aboian, Edouard; Aneja, Sanjay

Physics constrained graph neural network for real time prediction of intracranial aneurysm hemodynamics

基于物理约束的图神经网络用于实时预测颅内动脉瘤血流动力学

Lannelongue, Vincent; Garnier, Paul; Jeken-Rico, Pablo; Goetz, Aurèle; Meliga, Philippe; Chau, Yves; Hachem, Elie

NFS1 Regulates IDH2 to Attenuate Abdominal Aortic Aneurysms via Interacting With SP2.

NFS1 通过与 SP2 相互作用来调节 IDH2,从而减轻腹主动脉瘤。

Zhang Luzheng, Zhang Yu, Wen Dezhong, Guo Suxiang, Qi Xiaohui, Wang Heng, Sun Yujin, Yang Guangdong, Wang Yuehong, Xue Song

Ythdc1-p300-Klf5 Complex-Mediated Golgi Dysfunction Promotes Aortic Aneurysm.

Ythdc1-p300-Klf5复合物介导的高尔基体功能障碍促进主动脉瘤的发生。

Wang Wen-Li, Song Zhi-Xue, Bu Si-Ming, Liu Yi-Mei, Li Qing, Zhang Wen-Xia, Sun Xu-Rong, Zhang Xin, Xiao Yu-Xuan, Bo Di, Miao Xu-Bin, Liu Chao, Zhang Xin-Hua, Zheng Lei, Zhao Hong-Ye, Zhang Bao-Lian, Jia Wen, Chi Kui, Liu Yu, Zhao Yong-Bo, Zheng Bin, Ma Dong, Wen Jin-Kun

Expanding clones, expanding aneurysms through macrophage-to-osteoclast differentiation

克隆细胞扩增,动脉瘤通过巨噬细胞向破骨细胞分化而扩大。

Regan, Jessica A; Shah, Svati H

Tet2-driven clonal hematopoiesis drives aortic aneurysm via macrophage-to-osteoclast-like differentiation.

Tet2 驱动的克隆造血通过巨噬细胞向破骨细胞样分化驱动主动脉瘤的形成。

Yonekawa Jun, Yura Yoshimitsu, Luo Junmiao, Kato Katsuhiro, Ikeda Shuta, Kawai Yohei, Hattori Tomoki, Okamoto Ryotaro, Kizuki Mari, Miura-Yura Emiri, Horitani Keita, Min Kyung-Duk, Emoto Takuo, Banno Hiroshi, Takefuji Mikito, Walsh Kenneth, Murohara Toyoaki

Galectin7 attenuates abdominal aortic aneurysm progression by resisting disturbed flow induced endothelial-to-mesenchymal transition.

Galectin7 通过抵抗紊乱血流诱导的内皮-间质转化来减弱腹主动脉瘤的进展。

Wang Yanbing, Zhou Yilin, Zhang Yeshen, Tu Danni, Chen Guojun, Han Yuan, Wei Xiaomin, Chen Yanmei, Huang Senlin, Liao Yulin, Liao Wangjun, Xiu Jiancheng, Wang Yuegang, Bin Jianping, Li Xinzhong