封装(网络)
纳米纤维
材料科学
神经干细胞
纳米技术
干细胞
原位
细胞生物学
计算机科学
化学
生物
有机化学
计算机网络
作者
Hao Zhao,Jingwen Xu,Ke Peng,Xuancheng Fu,Endong Zhang,Fengting Lv,Libing Liu,Na Zhang,Yilin Wang,Shu Wang,Qi Gu
标识
DOI:10.1002/adhm.201901295
摘要
Abstract Design and fabrication of fibrous materials by natural biological macromolecules in light of biomimetics to achieve spatially cellular arrangements are highly desirable in tissue engineering. Herein, chromatin‐inspired supramolecular fibers formed through the interfacial polyelectrolyte complexation (IPC) process by DNA and histone proteins for encapsulation and in situ differentiation of murine brain‐derived neural stem cells (NSCs) are reported. High cell viability of encapsulated NSCs demonstrates the excellent biocompatibility of fibers as 3D scaffolds. Moreover, a cell‐adhesive peptide (K 6 ‐PEG‐RGD) is introduced into fibers by electrostatic interaction to improve NSCs encapsulation efficiency and prevent them from migrating out of fibers for enhanced spatially cellular arrangement. In situ differentiation of NSCs into oligodendrocytes within fibers is revealed by immunocytochemical staining assay. Due to the robust abilities to encapsulate and in situ differentiate NSCs, these chromatin‐inspired supramolecular fibers show great potential in neural system‐related tissue.
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