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Biomaterials and Advanced Biofabrication Techniques in hiPSCs Based Neuromyopathic Disease Modeling

机译:基于hiPSC的神经肌病疾病模型中的生物材料和先进的生物制造技术

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Induced pluripotent stem cells (iPSCs) are reprogrammed somatic cells by defined factors, and have great application potentials in tissue regeneration and disease modeling. Biomaterials have been widely used in stem cell-based studies, and are involved in human iPSCs based studies, but they were not enough emphasized and recognized. Biomaterials can mimic the extracellular matrix and microenvironment, and act as powerful tools to promote iPSCs proliferation, differentiation, maturation, and migration. Many classic and advanced biofabrication technologies, such as cell-sheet approach, electrospinning, and 3D-bioprinting, are used to provide physical cues in macro-/ micro- patterning, and in combination with other biological factors to support iPSCs applications. In this review, we highlight the biomaterials and fabrication technologies used in human iPSC-based tissue engineering to model neuromyopathic diseases, particularly those with genetic mutations, such as Duchenne Muscular Dystrophy (DMD), Congenital Heart Diseases (CHD) and Alzheimer’s disease (AD).
机译:诱导多能干细胞(iPSC)是通过定义的因素重新编程的体细胞,在组织再生和疾病建模中具有巨大的应用潜力。生物材料已被广泛用于基于干细胞的研究中,并参与了基于人iPSC的研究中,但是对它们的重视和认识还不够。生物材料可以模仿细胞外基质和微环境,并充当促进iPSC增殖,分化,成熟和迁移的强大工具。许多经典和先进的生物制造技术(例如细胞片方法,静电纺丝和3D生物打印)被用来提供宏观/微观图案中的物理线索,并与其他生物学因素相结合以支持iPSC应用。在这篇综述中,我们重点介绍了基于人类iPSC的组织工程学中用于建模神经肌病的生物材料和制造技术,尤其是那些具有遗传突变的疾病,例如杜兴肌营养不良症(DMD),先天性心脏病(CHD)和阿尔茨海默氏病(AD) )。

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