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

The Combination of Vascular Endothelial Growth Factor A (VEGF-A) and Fibroblast Growth Factor 1 (FGF1) Modified mRNA Improves Wound Healing in Diabetic Mice: An Ex Vivo and In Vivo Investigation.

血管内皮生长因子 A (VEGF-A) 和成纤维细胞生长因子 1 (FGF1) 修饰的 mRNA 的组合可改善糖尿病小鼠的伤口愈合:一项离体和体内研究

Tejedor Sandra, Wågberg Maria, Correia Cláudia, à vall Karin, Hölttä Mikko, Hultin Leif, Lerche Michael, Davies Nigel, Bergenhem Nils, Snijder Arjan, Marlow Tom, Dönnes Pierre, Fritsche-Danielson Regina, Synnergren Jane, Jennbacken Karin, Hansson Kenny

Direct intramyocardial injection of VEGF mRNA in patients undergoing coronary artery bypass grafting

对接受冠状动脉旁路移植术的患者进行心肌内直接注射VEGF mRNA

Anttila, Vesa; Saraste, Antti; Knuuti, Juhani; Hedman, Marja; Jaakkola, Pekka; Laugwitz, Karl-Ludwig; Krane, Markus; Jeppsson, Anders; Sillanmäki, Saara; Rosenmeier, Jaya; Zingmark, Pernilla; Rudvik, Anna; Garkaviy, Pavlo; Watson, Christina; Pangalos, Menelas N; Chien, Kenneth R; Fritsche-Danielson, Regina; Collén, Anna; Gan, Li-Ming

VEGFA mRNA for regenerative treatment of heart failure

VEGFA mRNA用于心力衰竭的再生治疗

Collén, Anna; Bergenhem, Nils; Carlsson, Leif; Chien, Kenneth R; Hoge, Stephen; Gan, Li-Ming; Fritsche-Danielson, Regina

Human genetics uncovers MAP3K15 as an obesity-independent therapeutic target for diabetes

人类遗传学发现MAP3K15是糖尿病的一种与肥胖无关的治疗靶点。

Nag, Abhishek; Dhindsa, Ryan S; Mitchell, Jonathan; Vasavda, Chirag; Harper, Andrew R; Vitsios, Dimitrios; Ahnmark, Andrea; Bilican, Bilada; Madeyski-Bengtson, Katja; Zarrouki, Bader; Zoghbi, Anthony W; Wang, Quanli; Smith, Katherine R; Alegre-Díaz, Jesus; Kuri-Morales, Pablo; Berumen, Jaime; Tapia-Conyer, Roberto; Emberson, Jonathan; Torres, Jason M; Collins, Rory; Smith, David M; Challis, Benjamin; Paul, Dirk S; Bohlooly-Y, Mohammad; Snowden, Mike; Baker, David; Fritsche-Danielson, Regina; Pangalos, Menelas N; Petrovski, Slavé

Mathematical Model Predicts that Acceleration of Diabetic Wound Healing is Dependent on Spatial Distribution of VEGF-A mRNA (AZD8601)

数学模型预测糖尿病伤口愈合加速取决于 VEGF-A mRNA 的空间分布 (AZD8601)

Rikard, S Michaela; Myers, Paul J; Almquist, Joachim; Gennemark, Peter; Bruce, Anthony C; Wågberg, Maria; Fritsche-Danielson, Regina; Hansson, Kenny M; Lazzara, Matthew J; Peirce, Shayn M

Model-Based Analysis Reveals a Sustained and Dose-Dependent Acceleration of Wound Healing by VEGF-A mRNA (AZD8601)

基于模型的分析揭示了 VEGF-A mRNA (AZD8601) 对伤口愈合的持续且剂量依赖性的加速作用

Almquist, Joachim; Rikard, S Michaela; Wågberg, Maria; Bruce, Anthony C; Gennemark, Peter; Fritsche-Danielson, Regina; Chien, Kenneth R; Peirce, Shayn M; Hansson, Kenny; Lundahl, Anna

In vivo imaging of hemodynamic redistribution and arteriogenesis across microvascular network

利用体内成像技术观察微血管网络中的血流动力学重分布和动脉生成

Sun, Naidi; Ning, Bo; Bruce, Anthony C; Cao, Rui; Seaman, Scott A; Wang, Tianxiong; Fritsche-Danielson, Regina; Carlsson, Leif G; Peirce, Shayn M; Hu, Song

Association of Cardiomyopathy With MYBPC3 D389V and MYBPC3Δ25bpIntronic Deletion in South Asian Descendants.

南亚后裔中 MYBPC3 D389V 和 MYBPC3Δ25bp 内含子缺失与心肌病的关联

Viswanathan Shiv Kumar, Puckelwartz Megan J, Mehta Ashish, Ramachandra Chrishan J A, Jagadeesan Aravindakshan, Fritsche-Danielson Regina, Bhat Ratan V, Wong Philip, Kandoi Sangeetha, Schwanekamp Jennifer A, Kuffel Gina, Pesce Lorenzo L, Zilliox Michael J, Durai U Nalla B, Verma Rama Shanker, Molokie Robert E, Suresh Domodhar P, Khoury Philip R, Thomas Annie, Sanagala Thriveni, Tang Hak Chiaw, Becker Richard C, Knöll Ralph, Shim Winston, McNally Elizabeth M, Sadayappan Sakthivel

Insulin resistance, endothelial function, angiogenic factors and clinical outcome in non-diabetic patients with chest pain without myocardial perfusion defects

胰岛素抵抗、内皮功能、血管生成因子与无心肌灌注缺陷的非糖尿病胸痛患者的临床结局之间的关系

Westergren, Helena U; Svedlund, Sara; Momo, Remi A; Blomster, Juuso I; Wåhlander, Karin; Rehnström, Erika; Greasley, Peter J; Fritsche-Danielson, Regina; Oscarsson, Jan; Gan, Li-Ming