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

Scaffold-mediated miRNA-155 inhibition promotes regenerative macrophage polarisation leading to anti-inflammatory, angiogenic and neurogenic responses for wound healing.

支架介导的 miRNA-155 抑制促进再生巨噬细胞极化,从而产生抗炎、血管生成和神经生成反应,促进伤口愈合。

Palomeque Chávez Juan Carlos, Dobricic Marko, McGrath Matthew, O'Connor Cian, McGuire Tara, Maughan Jack, Dervan Adrian, Dixon James E, Kearney Cathal J, Browne Shane, O'Brien Fergal J

Development of a VEGF-activated scaffold with enhanced angiogenic and neurogenic properties for chronic wound healing applications.

开发一种具有增强的血管生成和神经生成特性的 VEGF 激活支架,用于慢性伤口愈合

Palomeque Chávez Juan Carlos, McGrath Matthew, O'Connor Cian, Dervan Adrian, Dixon James E, Kearney Cathal J, Browne Shane, O'Brien Fergal J

Enhanced localized pressure-mediated non-viral gene delivery.

增强局部压力介导的非病毒基因递送

Dixon James E, Wellington Vanessa, Elnima Alaa, Savers Amelie, Ferreras Lia A Blokpoel, Jalal Aveen R, Eltaher Hoda M

THE CO-EVOLUTION OF LONELINESS AND COMPANIONSHIPS IN AN ASSISTED LIVING COMMUNITY: A SOCIAL NETWORK ANALYSIS

辅助生活社区中孤独感与陪伴关系的共同演化:一项社会网络分析

An, Shan; Intini, Claudio; O'Shea, Donagh; Dixon, James E; Zheng, Yiran; O'Brien, Fergal J; Mauldin, Rebecca; Kirsh, Jaclyn; Fujimoto, Kayo

A Modified Cell-Penetrating Peptide Enhances Insulin and Oxytocin Delivery across an RPMI 2650 Nasal Epithelial Cell Barrier In Vitro.

改良的细胞穿透肽可增强胰岛素和催产素在体外穿过 RPMI 2650 鼻上皮细胞屏障的递送

Wong Sara, Brown Alexander D, Abrahams Abigail B, Nurzak An Nisaa, Eltaher Hoda M, Sykes David A, Veprintsev Dmitry B, Fone Kevin C F, Dixon James E, King Madeleine V

Dual Exosite-binding Inhibitors of Insulin-degrading Enzyme Challenge Its Role as the Primary Mediator of Insulin Clearance in Vivo

胰岛素降解酶的双重外部结合抑制剂挑战其作为体内胰岛素清除的主要介质的作用

Timothy B Durham, James L Toth, Valentine J Klimkowski, Julia X C Cao, Angela M Siesky, Jesline Alexander-Chacko, Ginger Y Wu, Jeffrey T Dixon, James E McGee, Yong Wang, Sherry Y Guo, Rachel Nicole Cavitt, John Schindler, Stefan J Thibodeaux, Nathan A Calvert, Michael J Coghlan, Dana K Sindelar, Mic

Directed differentiation of human embryonic stem cells to interrogate the cardiac gene regulatory network.

定向分化人类胚胎干细胞以研究心脏基因调控网络

Dixon James E, Dick Emily, Rajamohan Divya, Shakesheff Kevin M, Denning Chris

Axolotl Nanog activity in mouse embryonic stem cells demonstrates that ground state pluripotency is conserved from urodele amphibians to mammals.

墨西哥钝口螈 Nanog 在小鼠胚胎干细胞中的活性表明,从有尾两栖动物到哺乳动物,基本多能性是保守的

Dixon James E, Allegrucci Cinzia, Redwood Catherine, Kump Kevin, Bian Yuhong, Chatfield Jodie, Chen Yi-Hsien, Sottile Virginie, Voss S Randal, Alberio Ramiro, Johnson Andrew D