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

Methionine induced placental angiogenesis through activating WNT3A/CTNNB1-PIGF-VEGFR1 pathway

蛋氨酸通过激活WNT3A/CTNNB1-PIGF-VEGFR1通路诱导胎盘血管生成。

Yijin Zou #,Jiayu Tu #,Ziqi Wang,Shuang Quan,Linlu Zhao,Yiwen Yang,Xiangzhou Zeng,Shiyan Qiao,Xiangfang Zeng,Shuang Cai

sVEGFR1 up-regulation via EGR1 impairs vascular repair in SFTSV-induced hemorrhage

EGR1介导的sVEGFR1上调会损害SFTSV诱导出血中的血管修复

Na Jiang #,Jing Wu #,Yating He #,Rui Zhang,Mengmeng Ji,Linjing Zhu,Shengwei Cui,Qiao You,Yurong Cai,Bingxin Liu,Ruining Lyu,Yuxin Chen,Jin Zhu,Zhiwei Wu

EPYC promotes laryngeal cancer carcinogenesis and angiogenesis by docking to VEGFR1: A novel therapeutic target.

EPYC 通过与 VEGFR1 结合促进喉癌的发生和血管生成:一种新的治疗靶点。

Impact of ligand binding on VEGFR1, VEGFR2, and NRP1 localization in human endothelial cells

配体结合对人内皮细胞中VEGFR1、VEGFR2和NRP1定位的影响

Sarabipour, Sarvenaz; Kinghorn, Karina; Quigley, Kaitlyn M; Kovacs-Kasa, Anita; Annex, Brian H; Bautch, Victoria L; Mac Gabhann, Feilim

REG4 induces angiogenesis in ulcerative colitis by upregulating MMP-7 expression and downregulating sVEGFR1 level.

REG4 通过上调 MMP-7 表达和下调 sVEGFR1 水平诱导溃疡性结肠炎中的血管生成。

Critical Roles of VEGFR1, VEGFR2, VEGFR3, BAX, and BCL-2 in the Pathogenesis of Varicose Veins: Unveiling Molecular Mechanisms

VEGFR1、VEGFR2、VEGFR3、BAX 和 BCL-2 在静脉曲张发病机制中的关键作用:揭示分子机制

Abedinzadeh, Mehdi; Nazari, Alireza; Vahidi, Seraj-Aldin; Pourmasumi, Soheila; Khorramdelazad, Hossein

Inhibition of VEGFR1 TK Signaling in Peritoneal Macrophages Suppresses Endometriosis Development

抑制腹膜巨噬细胞中的VEGFR1 TK信号传导可抑制子宫内膜异位症的发展

Furue, Akiko; Honda, Masako; Hattori, Kyoko; Sato, Erina; Yamashita, Atsushi; Osada, Mayuko; Hosono, Kanako; Kamata, Mariko; Ito, Yoshiya; Shibuya, Masabumi; Kato, Kazuyoshi; Amano, Hideki

Molecular basis of VEGFR1 autoinhibition at the plasma membrane

质膜上VEGFR1自身抑制的分子基础

Chakraborty, Manas Pratim; Das, Diptatanu; Mondal, Purav; Kaul, Pragya; Bhattacharyya, Soumi; Kumar Das, Prosad; Das, Rahul

Potential inhibitors of VEGFR1, VEGFR2, and VEGFR3 developed through Deep Learning for the treatment of Cervical Cancer.

利用深度学习开发出可用于治疗宫颈癌的 VEGFR1、VEGFR2 和 VEGFR3 潜在抑制剂。

Trafficking dynamics of VEGFR1, VEGFR2, and NRP1 in human endothelial cells

人内皮细胞中VEGFR1、VEGFR2和NRP1的转运动态

Sarabipour, Sarvenaz; Kinghorn, Karina; Quigley, Kaitlyn M; Kovacs-Kasa, Anita; Annex, Brian H; Bautch, Victoria L; Mac Gabhann, Feilim