神经干细胞
移植
神经细胞
材料科学
生物医学工程
生物相容性
干细胞
再生医学
祖细胞
细胞
神经科学
医学
生物
细胞生物学
外科
遗传学
冶金
作者
Ke Gai,Mengliu Yang,Wei Chen,Cong Hu,Xiao Luo,Austin Smith,Caizhe Xu,Hefeng Zhang,Xiang Li,Wei Shi,Wei Sun,Feng Lin,Yu Song
标识
DOI:10.1002/adhm.202401419
摘要
Abstract Stem cell transplantation has demonstrated efficacy in treating neurological disorders by generating functional cells and secreting beneficial factors. However, challenges remain for current cell suspension injection therapy, including uncontrollable cell distribution, the potential for tumor formation, and limited ability to treat spatial defects. Therefore, implants with programmable cell development, tailored 3D structure, and functionalized biomaterials have the potential to both control cell distribution and reduce or heal spatial defects. Here, a biomimetic material system comprising gelatin, alginate, and fibrinogen has been developed for neural progenitor cell constructs using 3D printing. The resulting constructs exhibit excellent formability, stability, and developmental functions in vitro, as well as biocompatibility and integration into the hippocampus in vivo. The controllability, reproducibility, and material composition of the constructs show potential for use in personalized stem cell‐based therapies for defective neurological disorders, neural development research, disease modeling, and organoid‐derived intelligent systems.
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