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

Adamts1 and Cyst Expansion in Polycystic Kidney Disease

Adamts1 与多囊肾病中的囊肿扩张

Vijayakumar R Kakade ,Zafer Akman ,Manga Motrapu ,Marcelo F Cassini ,Leyuan Xu ,Gilbert Moeckel ,Stefan Somlo ,Lloyd G Cantley

The matricellular protein ADAMTS-like 2 regulates differentiation of skeletal muscle-resident fibro-adipogenic progenitor cells

细胞外基质蛋白ADAMTS样蛋白2调控骨骼肌驻留纤维脂肪祖细胞的分化。

Charlene Redhead ,Nandaraj Taye ,Britney Chin-Young ,Kasoorelope Oguntuyo ,James H Cummins ,Kevin J Hart ,Woojin M Han ,Dirk Hubmacher

Transcription factor FOXC2 regulates miR-145/ADAMTS5 axis to inhibit angiogenesis in hepatocellular carcinoma via circular RNA 0002898

转录因子FOXC2通过环状RNA 0002898调控miR-145/ADAMTS5轴,从而抑制肝细胞癌的血管生成。

Jiangbei Yuan ,Zixiang Pan # ,Fei Lv # ,Yue Zhao ,Wei Zheng ,Qiaoqiao Yin ,LanJie Wu ,Jianli Yu ,Cheng'an Xu ,Qiang He ,Hongying Pan

Gene delivery of AGAT and GAMT boosts creatine levels in creatine transporter deficiency patient fibroblasts

AGAT和GAMT基因导入可提高肌酸转运蛋白缺乏症患者成纤维细胞中的肌酸水平

Chloe Wells ,Jon Sorgenfrei ,Sadie L Johnson ,Devin Albertson ,Jared Rutter ,Steven Andrew Baker

Evaluating the potential for iodinated radiocontrast agents to interfere with ADAMTS13 activity testing via fluorescence resonance energy transfer methodology

评估碘化放射造影剂干扰ADAMTS13活性检测(通过荧光共振能量转移法)的可能性

Jeremy W Jacobs ,Melissa S Stuart ,Julie I Tange ,Rachel R Leger ,Aneel A Ashrani ,Dong Chen ,Rajiv K Pruthi ,Meera Sridharan ,Jansen N Seheult

An Expendable Player in Positive Vascular Remodeling? ADAMTS13 Deficiency Does Not Affect Arteriogenesis or Angiogenesis

ADAMTS13缺陷在血管重塑中是否可有可无?它并不影响动脉生成或血管生成。

Carolin Baur ,Amanda Geml ,Kira-Sofie Wimmer ,Franziska Heim ,Anja Holschbach ,Katharina Elbs ,Michael R Rohrmoser ,Dominic van den Heuvel ,Alexander T Bauer ,Stefan W Schneider ,Daphne Merkus ,Elisabeth Deindl

LAMTOR1 decreased exosomal PD-L1 to enhance immunotherapy efficacy in non-small cell lung cancer

LAMTOR1通过降低外泌体PD-L1水平来增强非小细胞肺癌的免疫治疗疗效

Bo Wu ,Xin Huang ,Xiang Shi ,Meixi Jiang ,Hongxu Liu ,Li Zhao

Chromosome-scale pearl millet genomes reveal CLAMT1b as key determinant of strigolactone pattern and Striga susceptibility

染色体尺度的珍珠粟基因组揭示CLAMT1b是独脚金内酯模式和独脚金易感性的关键决定因素

Hendrik N J Kuijer # ,Jian You Wang # ,Salim Bougouffa # ,Michael Abrouk ,Muhammad Jamil ,Roberto Incitti ,Intikhab Alam ,Aparna Balakrishna ,Derry Alvarez ,Cristina Votta ,Guan-Ting Erica Chen ,Claudio Martínez ,Andrea Zuccolo ,Lamis Berqdar ,Salim Sioud ,Valentina Fiorilli ,Angel R de Lera ,Luisa Lanfranco ,Takashi Gojobori ,Rod A Wing ,Simon G Krattinger ,Xin Gao ,Salim Al-Babili

ADAMTS12 promotes fibrosis by restructuring extracellular matrix to enable activation of injury-responsive fibroblasts

ADAMTS12通过重塑细胞外基质促进纤维化,从而激活损伤反应性成纤维细胞。

Konrad Hoeft,Lars Koch,Susanne Ziegler,Ling Zhang,Steffen Luetke,Maria C Tanzer,Debashish Mohanta,David Schumacher,Felix Schreibing  ,Qingqing Long,Hyojin Kim,Barbara M Klinkhammer,Carla Schikarski,Sidrah Maryam,Mathijs Baens,Juliane Hermann,Sarah Krieg,Fabian Peisker,Laura De Laporte    ,Gideon Jl Schaefer,Sylvia Menzel,Joachim Jankowski,Benjamin D Humphreys,Adam Wahida,Rebekka K Schneider  0 ,Matthias Versele,Peter Boor  ,Matthias Mann,Gerhard Sengle,Sikander Hayat,Rafael Kramann

Electroacupuncture Inhibits Cartilage Degeneration in a Rat Knee Osteoarthritis (KOA) Model by Suppressing ADAMTS5 Expression

电针疗法通过抑制ADAMTS5表达来抑制大鼠膝骨关节炎(KOA)模型中的软骨退化。

Oyunchimeg Chuluunbat ,Hideshi Ikemoto ,Takayuki Okumo ,Naoki Adachi ,Tadashi Hisamitsu ,Masataka Sunagawa