He Xiaoming
Department of Biomedical Engineering, The Ohio State University, Columbus, Ohio 43210, USA.
Comprehensive Cancer Center, The Ohio State University, Columbus, Ohio 43210, USA.
ACS Biomater Sci Eng. 2017;3(11):2692-2701. doi: 10.1021/acsbiomaterials.6b00540. Epub 2016 Dec 1.
Tissue engineering and regenerative medicine (TERM) are attracting more and more attention for treating various diseases in modern medicine. Various biomaterials including hydrogels and scaffolds have been developed to prepare cells (particularly stem cells) and tissues under 3D conditions for TERM applications. Although these biomaterials are usually homogeneous in early studies, effort has been made recently to generate biomaterials with the spatiotemporal complexities present in the native milieu of the specific cells and tissues under investigation. In this communication, the microfluidic and coaxial electrospray approaches that we used for generating microscale biomaterials with the spatial complexity of both pre-hatching embryos and ovary in the female reproductive system were introduced. This is followed by an overview of our recent work on applying the resultant bioinspired biomaterials for cultivation of normal and cancer stem cells, regeneration of cardiac tissue, and culture of ovarian follicles. The cardiac regeneration studies show the importance of using different biomaterials to engineer stem cells at different stages (, culture implantation) for tissue regeneration. All the studies demonstrate the merit of accounting for bioinspired complexities in engineering cells and tissues for TERM applications.
组织工程与再生医学(TERM)在现代医学中治疗各种疾病方面正吸引着越来越多的关注。包括水凝胶和支架在内的各种生物材料已被开发出来,用于在三维条件下制备细胞(特别是干细胞)和组织,以用于TERM应用。尽管这些生物材料在早期研究中通常是均质的,但最近人们已努力制造出具有所研究的特定细胞和组织天然环境中存在的时空复杂性的生物材料。在本交流中,介绍了我们用于生成具有女性生殖系统中孵化前胚胎和卵巢空间复杂性的微观生物材料的微流控和同轴电喷雾方法。接下来概述了我们最近将所得的仿生生物材料应用于正常和癌症干细胞培养、心脏组织再生以及卵泡培养的工作。心脏再生研究表明,在组织再生的不同阶段(即培养、植入)使用不同生物材料来工程化干细胞的重要性。所有研究都证明了在为TERM应用进行细胞和组织工程时考虑仿生复杂性的优点。