Enhanced Differentiation of Human Neural Stem Cells into Cortical Neurons Using 3D Chitosan Scaffolds

被引:0
|
作者
James, Matthew Michael [1 ]
Zhou, Yang [1 ]
Zhang, Miqin [1 ]
机构
[1] Univ Washington, Dept Mat Sci Engn, Seattle, WA 98195 USA
来源
ACS APPLIED BIO MATERIALS | 2025年 / 8卷 / 03期
关键词
chitosan; scaffold; human neural stem cell; differentiation; cortical neuron; ALZHEIMER-DISEASE; PROGENITOR CELLS; MIGRATION; BRAIN; TRANSPLANTATION; TUMORIGENICITY; HYDROGEL; DENSITY; CULTURE; MODEL;
D O I
10.1021/acsabm.4c01927
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Human neural stem cells (hNSCs) have the potential to differentiate into various neural cell types, including cortical neurons, which are of particular interest for understanding and treating neurodegenerative diseases. However, traditional 2D culture methods are limited in their ability to accurately mimic the physiologically relevant microenvironment, leading to slow differentiation rates and low yields of mature neurons. In this study, we developed and optimized 3D chitosan scaffolds to promote the more efficient differentiation of hNSCs into cortical neurons. These scaffolds provide a tunable, biocompatible, and mechanically favorable environment, supporting enhanced cell-to-cell interactions and mimicking the extracellular matrix more effectively than 2D systems. The differentiation process was further accelerated by preseeding scaffolds with hNSCs, leading to increased expression of key cortical neuron markers, such as MAP2 and TUBB3, within a 14-day period. Compared to Geltrex-coated controls, the preseeded scaffolds demonstrated superior cell adhesion, viability, and differentiation efficiency, with significant upregulation of mature cortical neuron markers. Our findings suggest that chitosan-based 3D culture systems represent a promising platform for improving the differentiation of hNSCs, offering a faster and more reliable method to generate cortical neurons for neurodegenerative disease research and potential therapeutic applications.
引用
收藏
页码:2469 / 2481
页数:13
相关论文
共 50 条
  • [1] 3D Porous Chitosan Scaffolds Suit Survival and Neural Differentiation of Dental Pulp Stem Cells
    Feng, Xingmei
    Lu, Xiaohui
    Huang, Dan
    Xing, Jing
    Feng, Guijuan
    Jin, Guohua
    Yi, Xin
    Li, Liren
    Lu, Yuanzhou
    Nie, Dekang
    Chen, Xiang
    Zhang, Lei
    Gu, Zhifeng
    Zhang, Xinhua
    CELLULAR AND MOLECULAR NEUROBIOLOGY, 2014, 34 (06) : 859 - 870
  • [2] 3D Porous Chitosan Scaffolds Suit Survival and Neural Differentiation of Dental Pulp Stem Cells
    Xingmei Feng
    Xiaohui Lu
    Dan Huang
    Jing Xing
    Guijuan Feng
    Guohua Jin
    Xin Yi
    Liren Li
    Yuanzhou Lu
    Dekang Nie
    Xiang Chen
    Lei Zhang
    Zhifeng Gu
    Xinhua Zhang
    Cellular and Molecular Neurobiology, 2014, 34 : 859 - 870
  • [3] 3D chitosan scaffolds support expansion of human neural stem cells in chemically defined condition
    Chang, Fei-Chien
    James, Matthew Michael
    Qassab, Abdullah Mohammed
    Zhou, Yang
    Ando, Yoshiki
    Shi, Min
    Zhang, Miqin
    MATTER, 2023, 6 (10) : 3631 - 3660
  • [4] 3D Differentiation of Neural Stem Cells in Macroporous Photopolymerizable Hydrogel Scaffolds
    Li, Hang
    Wijekoon, Asanka
    Leipzig, Nic D.
    PLOS ONE, 2012, 7 (11):
  • [5] Enhanced Differentiation of Human Neural Stem Cells into Neurons on Graphene
    Park, Sung Young
    Park, Jaesung
    Sim, Sung Hyun
    Sung, Moon Gyu
    Kim, Kwang S.
    Hong, Byung Hee
    Hong, Seunghun
    ADVANCED MATERIALS, 2011, 23 (36) : H263 - +
  • [6] Basic fibroblast growth factor promotes human dental pulp stem cells cultured in 3D porous chitosan scaffolds to neural differentiation
    Zheng, Ke
    Feng, Guijuan
    Zhang, Jinlong
    Xing, Jing
    Huang, Dan
    Lian, Min
    Zhang, Wei
    Wu, Wenli
    Hu, Yingzi
    Lu, Xiaohui
    Feng, Xingmei
    INTERNATIONAL JOURNAL OF NEUROSCIENCE, 2021, 131 (07) : 625 - 633
  • [7] Enhanced Osteogenic Differentiation of Human Mesenchymal Stem Cells Using Microbubbles and Low Intensity Pulsed Ultrasound on 3D Printed Scaffolds
    Osborn, Jenna
    Aliabouzar, Mitra
    Zhou, Xuan
    Rao, Raj
    Zhang, Lijie Grace
    Sarkar, Kausik
    ADVANCED BIOSYSTEMS, 2019, 3 (02)
  • [8] Enhanced Differentiation Potential of Primary Human Endometrial Cells Cultured on 3D Scaffolds
    Eissa, Ahmed M.
    Barros, Flavio S. V.
    Vrljicak, Pavle
    Brosens, Jan J.
    Cameron, Neil R.
    BIOMACROMOLECULES, 2018, 19 (08) : 3343 - 3350
  • [9] Characterization of designed directional polylactic acid 3D scaffolds for neural differentiation of human dental pulp stem cells
    Hsiao, Douglas
    Hsu, Sheng-Hao
    Chen, Rung-Shu
    Chen, Min-Huey
    JOURNAL OF THE FORMOSAN MEDICAL ASSOCIATION, 2020, 119 (01) : 268 - 275
  • [10] hPL promotes osteogenic differentiation of stem cells in 3D scaffolds
    Jafar, Hanan
    Abuarqoub, Duaa
    Ababneh, Nidaa
    Hasan, Maram
    Al-Sotari, Shrouq
    Aslam, Nazneen
    Kailani, Mohammed
    Ammoush, Mohammed
    Shraideh, Ziad
    Awidi, Abdalla
    PLOS ONE, 2019, 14 (05): : e0215667