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Applications of 3D printed bone tissue engineering scaffolds in the stem cell field

机译:3D印刷骨组织工程支架在干细胞场中的应用

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摘要

Due to traffic accidents, injuries, burns, congenital malformations and other reasons, a large number of patients with tissue or organ defects need urgent treatment every year. The shortage of donors, graft rejection and other problems cause a deficient supply for organ and tissue replacement, repair and regeneration of patients, so regenerative medicine came into being. Stem cell therapy plays an important role in the field of regenerative medicine, but it is difficult to fill large tissue defects by injection alone. The scientists combine three-dimensional (3D) printed bone tissue engineering scaffolds with stem cells to achieve the desired effect. These scaffolds can mimic the extracellular matrix (ECM), bone and cartilage, and eventually form functional tissues or organs by providing structural support and promoting attachment, proliferation and differentiation. This paper mainly discussed the applications of 3D printed bone tissue engineering scaffolds in stem cell regenerative medicine. The application examples of different 3D printing technologies and different raw materials are introduced and compared. Then we discuss the superiority of 3D printing technology over traditional methods, put forward some problems and limitations, and look forward to the future.
机译:由于交通事故,伤害,烧伤,先天性畸形等原因,大量患有组织或器官缺陷的患者每年都需要紧急治疗。捐赠者的短缺,接枝抑制等问题导致患者的器官和组织替代,修复和再生的缺乏供应,因此再生医学进入存在。干细胞疗法在再生医学领域起着重要作用,但难以单独注射填充大型组织缺陷。科学家们将三维(3D)印刷的骨组织工程支架结合在一起,用干细胞达到所需的效果。这些支架可以通过提供结构支持和促进附着,增殖和分化来模拟细胞外基质(ECM),骨骼和软骨,最终形成功能组织或器官。本文主要讨论了3D印刷骨组织工程支架在干细胞再生医学中的应用。介绍了不同3D打印技术和不同原料的应用示例。然后我们讨论了传统方法的3D印刷技术的优势,提出了一些问题和局限性,并期待未来。

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