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

A Comparison of Long-Term Outcomes in Patients Managed With Venovenous Extracorporeal Membrane Oxygenation in the First and Second Waves of the COVID-19 Pandemic in the United Kingdom

英国新冠肺炎疫情第一波和第二波期间采用静脉-静脉体外膜肺氧合治疗患者的长期疗效比较

Garfield, Benjamin E; Bianchi, Paolo; Arachchillage, Deepa J; Caetano, Francisca; Desai, Sujal; Doyle, James; Hernandez Caballero, Clara; Doyle, Anne-Marie; Mehta, Sachin; Law, Alexander; Jaggar, Sian; Kokosi, Maria; Molyneaux, Philip L; Passariello, Maurizio; Naja, Meena; Ridge, Carole; Alçada, Joana; Patel, Brijesh; Singh, Suveer; Ledot, Stephane

miR-1-5p targets TGF-βR1 and is suppressed in the hypertrophying hearts of rats with pulmonary arterial hypertension.

miR-1-5p 靶向 TGF-βR1,在患有肺动脉高压的大鼠肥大心脏中受到抑制

Connolly Martin, Garfield Benjamin E, Crosby Alexi, Morrell Nick W, Wort Stephen J, Kemp Paul R

Growth/differentiation factor 15 causes TGFβ-activated kinase 1-dependent muscle atrophy in pulmonary arterial hypertension

生长/分化因子15导致肺动脉高压患者出现TGFβ激活激酶1依赖性肌肉萎缩

Garfield, Benjamin E; Crosby, Alexi; Shao, Dongmin; Yang, Peiran; Read, Cai; Sawiak, Steven; Moore, Stephen; Parfitt, Lisa; Harries, Carl; Rice, Martin; Paul, Richard; Ormiston, Mark L; Morrell, Nicholas W; Polkey, Michael I; Wort, Stephen John; Kemp, Paul R

miR-322-5p targets IGF-1 and is suppressed in the heart of rats with pulmonary hypertension

miR-322-5p靶向IGF-1,并在肺动脉高压大鼠心脏中表达受到抑制。

Connolly, Martin; Garfield, Benjamin E; Crosby, Alexi; Morrell, Nick W; Wort, Stephen J; Kemp, Paul R

MicroRNA-542 Promotes Mitochondrial Dysfunction and SMAD Activity and Is Elevated in Intensive Care Unit-acquired Weakness

MicroRNA-542促进线粒体功能障碍和SMAD活性,并在重症监护室获得性肌无力中升高

Garros, Roser Farre; Paul, Richard; Connolly, Martin; Lewis, Amy; Garfield, Benjamin E; Natanek, S Amanda; Bloch, Susannah; Mouly, Vincent; Griffiths, Mark J; Polkey, Michael I; Kemp, Paul R

Growth differentiation factor-15 is associated with muscle mass in chronic obstructive pulmonary disease and promotes muscle wasting in vivo.

生长分化因子-15 与慢性阻塞性肺病中的肌肉质量有关,并促进体内肌肉萎缩

Patel Mehul S, Lee Jen, Baz Manuel, Wells Claire E, Bloch Susannah, Lewis Amy, Donaldson Anna V, Garfield Benjamin E, Hopkinson Nicholas S, Natanek Amanda, Man William D-C, Wells Dominic J, Baker Emma H, Polkey Michael I, Kemp Paul R