Yoo Junsang, Chang Yujung, Kim Hongwon, Baek Soonbong, Choi Hwan, Jeong Gun-Jae, Shin Jaein, Kim Hongnam, Kim Byung-Soo, Kim Jongpil
J Biomed Nanotechnol. 2017 Mar;13(3):269-79. doi: 10.1166/jbn.2017.2347.
Induced cardiomyocytes (iCMs) generated via direct lineage reprogramming offer a novel therapeutic target for the study and treatment of cardiac diseases. However, the efficiency of iCM generation is significantly low for therapeutic applications. Here, we show an efficient direct conversion of somatic fibroblasts into iCMs using nanotopographic cues. Compared with flat substrates, the direct conversion of fibroblasts into iCMs on nanopatterned substrates resulted in a dramatic increase in the reprogramming efficiency and maturation of iCM phenotypes. Additionally, enhanced reprogramming by substrate nanotopography was due to changes in the activation of focal adhesion kinase and specific histone modifications. Taken together, these results suggest that nanotopographic cues can serve as an efficient stimulant for direct lineage reprogramming into iCMs.
通过直接谱系重编程产生的诱导心肌细胞(iCMs)为心脏病的研究和治疗提供了一个新的治疗靶点。然而,对于治疗应用而言,iCM生成的效率显著低下。在此,我们展示了利用纳米拓扑线索将体细胞成纤维细胞高效直接转化为iCMs。与平坦底物相比,在纳米图案化底物上成纤维细胞向iCMs的直接转化导致重编程效率显著提高以及iCM表型成熟。此外,底物纳米拓扑结构增强重编程是由于粘着斑激酶激活和特定组蛋白修饰的变化。综上所述,这些结果表明纳米拓扑线索可作为直接谱系重编程为iCMs的有效刺激物。