Suppression of Pro-fibrotic Signaling Potentiates Factor-mediated Reprogramming of Mouse Embryonic Fibroblasts into Induced Cardiomyocytes

被引:4
|
作者
Riching, Andrew S. [1 ]
Zhao, Yuanbiao [1 ]
Cao, Yingqiong [1 ]
Londono, Pilar [1 ]
Xu, Hongyan [2 ]
Song, Kunhua [1 ]
机构
[1] Univ Colorado, Dept Med, Div Cardiol, Anschutz Med Campus, Aurora, CO 80045 USA
[2] Augusta Univ, Med Coll Georgia, Dept Populat Hlth Sci, Augusta, GA USA
来源
关键词
Developmental Biology; Issue; 136; Cardiac reprogramming; transcription factors; microRNAs; pro-fibrotic signaling; compound; TGF-beta receptor 1 inhibitor; BONE-MARROW-CELLS; MYOCARDIAL-INFARCTION; INTRACORONARY INJECTION; CORONARY INTERVENTION; CARDIAC FIBROBLASTS; HEART-FAILURE; STEM-CELLS; IN-VITRO; REGENERATION; INFUSION;
D O I
10.3791/57687
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Trans-differentiation of one somatic cell type into another has enormous potential to model and treat human diseases. Previous studies have shown that mouse embryonic, dermal, and cardiac fibroblasts can be reprogrammed into functional induced-cardiomyocyte-like cells (iCMs) through overexpression of cardiogenic transcription factors including GATA4, Hand2, Mef2c, and Tbx5 both in vitro and in vivo. However, these previous studies have shown relatively low efficiency. In order to restore heart function following injury, mechanisms governing cardiac reprogramming must be elucidated to increase efficiency and maturation of iCMs. We previously demonstrated that inhibition of pro-fibrotic signaling dramatically increases reprogramming efficiency. Here, we detail methods to achieve a reprogramming efficiency of up to 60%. Furthermore, we describe several methods including flow cytometry, immunofluorescent imaging, and calcium imaging to quantify reprogramming efficiency and maturation of reprogrammed fibroblasts. Using the protocol detailed here, mechanistic studies can be undertaken to determine positive and negative regulators of cardiac reprogramming. These studies may identify signaling pathways that can be targeted to promote reprogramming efficiency and maturation, which could lead to novel cell therapies to treat human heart disease.
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页数:11
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