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

Case Report: An imported severe case of paediatric scrub typhus with Karp B subgenotype in non-endemic Northern China, Beijing

病例报告:北京一例输入性重症儿童恙虫病病例(非流行区中国北方)

van Kammen, Caren; Brink, Myrthe; Minnion, Magdalena; Feelisch, Martin; Schiffelers, Raymond; Lely, Titia; Terstappen, Fieke; Mao, Yiyang; Lv, Qiuchi; Chen, Siqi; Wang, Lijuan; Li, Kechun; Xie, Zhengde; Yin, Feifei; Xu, Lili; Wang, Quan; Zhao, Chengsong

Circulating Nitrite in Severe Asthma: Just Another Biomarker or Novel Treatment Target?

重度哮喘患者体内循环的亚硝酸盐:仅仅是另一种生物标志物还是新的治疗靶点?

Freeman, Anna; Minnion, Magdalena; Lee, Paul H; Haitchi, Hans Michael; Kurukulaaratchy, Ramesh; Wilkinson, Tom; Feelisch, Martin

Chronic inorganic nitrate supplementation does not improve metabolic health and worsens disease progression in mice with diet-induced obesity.

长期补充无机硝酸盐并不能改善饮食诱导肥胖小鼠的代谢健康,反而会加剧疾病进展

Sowton Alice P, Holzner Lorenz M W, Krause Fynn N, Baxter Ruby, Mocciaro Gabriele, Krzyzanska Dominika K, Minnion Magdalena, O'Brien Katie A, Harrop Matthew C, Darwin Paula M, Thackray Benjamin D, Vacca Michele, Feelisch Martin, Griffin Julian L, Murray Andrew J

The effects of major abdominal surgery on skeletal muscle mitochondrial respiration in relation to systemic redox status and cardiopulmonary fitness

重大腹部手术对骨骼肌线粒体呼吸作用的影响及其与全身氧化还原状态和心肺功能的关系

Stevens, Jia L; McKenna, Helen T; Minnion, Magdalena; Murray, Andrew J; Feelisch, Martin; Martin, Daniel S

mRNA therapy corrects defective glutathione metabolism and restores ureagenesis in preclinical argininosuccinic aciduria

mRNA疗法可纠正临床前精氨酸琥珀酸尿症中谷胱甘肽代谢缺陷并恢复尿素生成。

Gurung, Sonam; Timmermand, Oskar Vilhelmsson; Perocheau, Dany; Gil-Martinez, Ana Luisa; Minnion, Magdalena; Touramanidou, Loukia; Fang, Sherry; Messina, Martina; Khalil, Youssef; Spiewak, Justyna; Barber, Abigail R; Edwards, Richard S; Pinto, Patricia Lipari; Finn, Patrick F; Cavedon, Alex; Siddiqui, Summar; Rice, Lisa; Martini, Paolo G V; Ridout, Deborah; Heywood, Wendy; Hargreaves, Ian; Heales, Simon; Mills, Philippa B; Waddington, Simon N; Gissen, Paul; Eaton, Simon; Ryten, Mina; Feelisch, Martin; Frassetto, Andrea; Witney, Timothy H; Baruteau, Julien

Oxidative stress, redox status and surfactant metabolism in mechanically ventilated patients receiving different approaches to oxygen therapy (MecROX): An observational study protocol for mechanistic evaluation

机械通气患者接受不同氧疗方案(MecROX)后氧化应激、氧化还原状态和肺表面活性物质代谢:一项机制评估的观察性研究方案

Dushianthan, Ahilanandan; Martin, Daniel; Mouncey, Paul; Shahid, Tasnin; Lampro, Lamprini; Johnson, Amelia Francis; Goss, Victoria; Cazley, Angelica; Herbert, William; Jones, William; Lamond, Mark; Neyroud, Florence; Salmon, Karen; Lentaigne, Julian; Minnion, Magdalena; Panchal, Madhuri; Koster, Grielof; Moyses, Helen; Postle, Anthony D; Feelisch, Martin; Grocott, Michael P W

Individualised Exercise Training Enhances Antioxidant Buffering Capacity in Idiopathic Pulmonary Fibrosis

个体化运动训练可增强特发性肺纤维化患者的抗氧化缓冲能力

Wallis, Tim J M; Minnion, Magdalena; Freeman, Anna; Bates, Andrew; Otto, James M; Wootton, Stephen A; Fletcher, Sophie V; Grocott, Michael P W; Feelisch, Martin; Jones, Mark G; Jack, Sandy

On the origin of nitrosylated hemoglobin in COVID-19: Endothelial NO capture or redox conversion of nitrite?: Experimental results and a cautionary note on challenges in translational research

关于 COVID-19 中亚硝基化血红蛋白的起源:内皮细胞捕获 NO 还是亚硝酸盐的氧化还原转化?:实验结果及转化研究挑战的警示

Nogueira, Renato C; Minnion, Magdalena; Clark, Anna D; Dyson, Alex; Tanus-Santos, José E; Feelisch, Martin

Divergent trajectories of cellular bioenergetics, intermediary metabolism and systemic redox status in survivors and non-survivors of critical illness.

危重症幸存者和非幸存者的细胞生物能量学、中间代谢和系统氧化还原状态的差异轨迹

McKenna Helen T, O'Brien Katie A, Fernandez Bernadette O, Minnion Magdalena, Tod Adam, McNally Ben D, West James A, Griffin Julian L, Grocott Michael P, Mythen Michael G, Feelisch Martin, Murray Andrew J, Martin Daniel S

Exercise Training Induces a Shift in Extracellular Redox Status with Alterations in the Pulmonary and Systemic Redox Landscape in Asthma.

运动训练可引起细胞外氧化还原状态的转变,从而改变哮喘患者的肺部和全身氧化还原环境

Freeman Anna, Cellura Doriana, Minnion Magdalena, Fernandez Bernadette O, Spalluto Cosma Mirella, Levett Denny, Bates Andrew, Wallis Timothy, Watson Alastair, Jack Sandy, Staples Karl J, Grocott Michael P W, Feelisch Martin, Wilkinson Tom M A