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

Sall4 and Gata4 induce cardiac fibroblast transition towards a partially multipotent state with cardiogenic potential

Sall4 和 Gata4 诱导心脏成纤维细胞向具有心脏源性潜能的部分多能状态转变

Hong Gao #, Saliha Pathan #, Beverly R E A Dixon, Aarthi Pugazenthi, Megumi Mathison, Tamer M A Mohamed, Todd K Rosengart, Jianchang Yang

Activation of a GPCR, ORL1 Receptor: A Novel Therapy to Prevent Heart Failure Progression

GPCR、ORL1 受体的激活:预防心力衰竭进展的新疗法

Saliha S Pathan, Aarthi Pugazenthi, Beverly R E A Dixon, Theodore G Wensel, Todd K Rosengart, Megumi Mathison

Activation of a GPCR, ORL1 receptor: A novel therapy to prevent heart failure progression

GPCR、ORL1 受体的激活:预防心力衰竭进展的新疗法

Saliha Pathan, Aarthi Pugazenthi, Beverly Rea Dixon, Theodore G Wensel, Todd K Rosengart, Megumi Mathison

p63 silencing induces epigenetic modulation to enhance human cardiac fibroblast to cardiomyocyte-like differentiation

p63沉默诱导表观遗传调控,从而促进人源心脏成纤维细胞向心肌细胞样分化。

Jaya Pratap Pinnamaneni ,Vivek P Singh ,Mary B Kim ,Christopher T Ryan ,Aarthi Pugazenthi ,Deepthi Sanagasetti ,Megumi Mathison ,Jianchang Yang ,Todd K Rosengart

Hippo Pathway Effector Tead1 Induces Cardiac Fibroblast to Cardiomyocyte Reprogramming

Hippo 通路效应子 Tead1 诱导心脏成纤维细胞重编程为心肌细胞

Vivek P Singh, Jaya P Pinnamaneni, Aarthi Pugazenthi, Deepthi Sanagasetti, Megumi Mathison, James F Martin, Jianchang Yang, Todd K Rosengart

Fibroblast transition to an endothelial "trans" state improves cell reprogramming efficiency

成纤维细胞转变为内皮“反式”状态可提高细胞重编程效率

Megumi Mathison #, Deepthi Sanagasetti #, Vivek P Singh, Aarthi Pugazenthi, Jaya Pratap Pinnamaneni, Christopher T Ryan, Jianchang Yang, Todd K Rosengart

Immune-modulatory alginate protects mesenchymal stem cells for sustained delivery of reparative factors to ischemic myocardium

免疫调节海藻酸盐保护间充质干细胞持续向缺血心肌输送修复因子

Ravi K Ghanta, Samira Aghlara-Fotovat, Aarthi Pugazenthi, Christopher T Ryan, Vivek P Singh, Megumi Mathison, Maria I Jarvis, Sudip Mukherjee, Andrea Hernandez, Omid Veiseh

Enhanced Generation of Induced Cardiomyocytes Using a Small-Molecule Cocktail to Overcome Barriers to Cardiac Cellular Reprogramming

利用小分子混合物增强诱导心肌细胞的生成以克服心脏细胞重编程的障碍

Vivek P Singh, Jaya Pratap Pinnamaneni, Aarthi Pugazenthi, Deepthi Sanagasetti, Megumi Mathison, Kai Wang, Jianchang Yang, Todd K Rosengart

p63 Silencing induces reprogramming of cardiac fibroblasts into cardiomyocyte-like cells

p63 沉默诱导心脏成纤维细胞重编程为心肌细胞样细胞

Vivekkumar Patel, Vivek P Singh, Jaya Pratap Pinnamaneni, Deepthi Sanagasetti, Jacqueline Olive, Megumi Mathison, Austin Cooney, Elsa R Flores, Ronald G Crystal, Jianchang Yang, Todd K Rosengart

The stem cell factor SALL4 is an essential transcriptional regulator in mixed lineage leukemia-rearranged leukemogenesis

干细胞因子SALL4是混合谱系白血病重排白血病发生中的重要转录调节因子。

Lina Yang, Li Liu, Hong Gao, Jaya Pratap Pinnamaneni, Deepthi Sanagasetti, Vivek P Singh, Kai Wang, Megumi Mathison, Qianzi Zhang, Fengju Chen, Qianxing Mo, Todd Rosengart, Jianchang Yang