Human Neural Stem Cell Expansion in Natural Polymer Scaffolds Under Chemically Defined Condition

透明质酸 壳聚糖 脚手架 神经干细胞 化学 组织工程 细胞粘附 生物医学工程 干细胞 材料科学 细胞生物学 生物物理学 细胞 生物化学 生物 解剖 医学
作者
Fei‐Chien Chang,Matthew Michael James,Yang Zhou,Yoshiki Ando,Hadi M. Zareie,Jihui Yang,Miqin Zhang
出处
期刊:Advanced biology [Wiley]
卷期号:8 (10)
标识
DOI:10.1002/adbi.202400224
摘要

The maintenance and expansion of human neural stem cells (hNSCs) in 3D tissue scaffolds is a promising strategy in producing cost-effective hNSCs with quality and quantity applicable for clinical applications. A few biopolymers have been extensively used to fabricate 3D scaffolds, including hyaluronic acid, collagen, alginate, and chitosan, due to their bioactive nature and availability. However, these polymers are usually applied in combination with other biomolecules, leading to their responses difficult to ascribe to. Here, scaffolds made of chitosan, alginate, hyaluronic acid, or collagen, are explored for hNSC expansion under xeno-free and chemically defined conditions and compared for hNSC multipotency maintenance. This study shows that the scaffolds made of pure chitosan support the highest adhesion and growth of hNSCs, yielding the most viable cells with NSC marker protein expression. In contrast, the presence of alginate, hyaluronic acid, or collagen induces differentiation toward immature neurons and astrocytes even in the maintenance medium and absence of differentiation factors. The cells in pure chitosan scaffolds preserve the level of transmembrane protein profile similar to that of standard culture. These findings point to the potential of using pure chitosan scaffolds as a base scaffolding material for hNSC expansion in 3D.

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