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

Stabilisation of HIF signalling in the mouse epicardium extends embryonic potential and neonatal heart regeneration

稳定小鼠心外膜中的HIF信号通路可延长胚胎发育潜能并促进新生儿心脏再生。

Gamen, Elisabetta; Price, Eleanor L; Pezzolla, Daniela; De Villiers, Carla; Gunadasa-Rohling, Mala; Lokman, Adam B; Cosma, Maria-Alexa; Sayers, Judith; Silva, Carolina Roque; Salama, Rafik; Mole, David Robert; Bishop, Tammie; Pugh, Chris W; Choudhury, Robin P; Carr, Carolyn A; Vieira, Joaquim Miguel; Riley, Paul R

MicroRNA-210 Enhances Cell Survival and Paracrine Potential for Cardiac Cell Therapy While Targeting Mitophagy

MicroRNA-210通过靶向线粒体自噬增强细胞存活率和旁分泌潜能,用于心脏细胞治疗

Alonaizan, Rita; Purnama, Ujang; Malandraki-Miller, Sophia; Gunadasa-Rohling, Mala; Lewis, Andrew; Smart, Nicola; Carr, Carolyn

A Langendorff-heart discovery pipeline demonstrates cardiomyocyte targeting by extracellular vesicles functionalized with beta-blockers using click-chemistry

Langendorff心脏发现流程展示了利用点击化学方法,通过β受体阻滞剂功能化的细胞外囊泡靶向心肌细胞。

Park, Kyung Chan; Jaafari, Amir Mashia; Smith, Christopher Anthony; Lobo, Althea Rennisa; Errichelli, Lorenzo; Şimşek, Gül; Gunadasa-Rohling, Mala; Marchant, Alexander; Levitin, Maria O; Castilla-Llorente, Virginia; Vilela, Patrick; Swietach, Pawel

Cardiac lymphatics retain LYVE-1-dependent macrophages during neonatal mouse heart regeneration

新生小鼠心脏再生过程中,心脏淋巴管内保留了LYVE-1依赖性巨噬细胞。

Chapman, Benjamin G; Klaourakis, Konstantinos; de Villiers, Carla; Gunadasa-Rohling, Mala; Cosma, Maria-Alexa; Cooper, Susanna T E; Mohan, Kshitij; Weinberger, Michael; Carr, Carolyn A; Greaves, David R; Jackson, David G; Pezzolla, Daniela; Choudhury, Robin P; Vieira, Joaquim M; Riley, Paul R

Rapid neutrophil mobilization by VCAM-1+ endothelial cell-derived extracellular vesicles

VCAM-1+内皮细胞衍生的细胞外囊泡可快速动员中性粒细胞

Akbar, Naveed; Braithwaite, Adam T; Corr, Emma M; Koelwyn, Graeme J; van Solingen, Coen; Cochain, Clément; Saliba, Antoine-Emmanuel; Corbin, Alastair; Pezzolla, Daniela; Møller Jørgensen, Malene; Bæk, Rikke; Edgar, Laurienne; De Villiers, Carla; Gunadasa-Rohling, Mala; Banerjee, Abhirup; Paget, Daan; Lee, Charlotte; Hogg, Eleanor; Costin, Adam; Dhaliwal, Raman; Johnson, Errin; Krausgruber, Thomas; Riepsaame, Joey; Melling, Genevieve E; Shanmuganathan, Mayooran; Bock, Christoph; Carter, David R F; Channon, Keith M; Riley, Paul R; Udalova, Irina A; Moore, Kathryn J; Anthony, Daniel C; Choudhury, Robin P

Disrupted propionate metabolism evokes transcriptional changes in the heart by increasing histone acetylation and propionylation

丙酸代谢紊乱通过增加组蛋白乙酰化和丙酰化引起心脏转录变化

Kyung Chan Park, Nicholas T Crump, Niamh Louwman, Steve Krywawych, Yuen Jian Cheong, Iolanda Vendrell, Eleanor K Gill, Mala Gunadasa-Rohling, Kerrie L Ford, David Hauton, Marjorie Fournier, Elisabete Pires, Lydia Watson, Gerald Roseman, James Holder, Andreas Koschinski, Ricardo Carnicer, M Kate Curt

Regenerative potential of epicardium-derived extracellular vesicles mediated by conserved miRNA transfer

保守 miRNA 转移介导的心外膜来源细胞外囊泡的再生潜力

Cristina Villa Del Campo, Norman Y Liaw, Mala Gunadasa-Rohling, Moritz Matthaei, Luca Braga, Tahnee Kennedy, Gabriela Salinas, Niels Voigt, Mauro Giacca, Wolfram-Hubertus Zimmermann, Paul Richard Riley

Acidic environments trigger intracellular H+-sensing FAK proteins to re-balance sarcolemmal acid-base transporters and auto-regulate cardiomyocyte pH

酸性环境会触发细胞内 H+ 感应 FAK 蛋白,重新平衡肌膜酸碱转运体并自动调节心肌细胞 pH 值

Abigail D Wilson, Mark A Richards, M Kate Curtis, Mala Gunadasa-Rohling, Stefania Monterisi, Aminah A Loonat, Jack J Miller, Vicky Ball, Andrew Lewis, Damian J Tyler, Anna Moshnikova, Oleg A Andreev, Yana K Reshetnyak, Carolyn Carr, Pawel Swietach

Alkaline nucleoplasm facilitates contractile gene expression in the mammalian heart

碱性核质促进哺乳动物心脏收缩基因表达

Alzbeta Hulikova, Kyung Chan Park #, Aminah A Loonat #, Mala Gunadasa-Rohling #, M Kate Curtis, Yu Jin Chung, Abigail Wilson, Carolyn A Carr, Andrew W Trafford, Marjorie Fournier, Anna Moshnikova, Oleg A Andreev, Yana K Reshetnyak, Paul R Riley, Nicola Smart, Thomas A Milne, Nicholas T Crump, Pawel

Macrophages directly contribute collagen to scar formation during zebrafish heart regeneration and mouse heart repair

在斑马鱼心脏再生和鼠心脏修复过程中,巨噬细胞直接参与胶原蛋白的形成,促进瘢痕形成。

Filipa C Simões # ,Thomas J Cahill # ,Amy Kenyon ,Daria Gavriouchkina ,Joaquim M Vieira ,Xin Sun ,Daniela Pezzolla ,Christophe Ravaud ,Eva Masmanian ,Michael Weinberger ,Sarah Mayes ,Madeleine E Lemieux ,Damien N Barnette ,Mala Gunadasa-Rohling ,Ruth M Williams ,David R Greaves ,Le A Trinh ,Scott E Fraser ,Sarah L Dallas ,Robin P Choudhury ,Tatjana Sauka-Spengler ,Paul R Riley