类有机物
细胞外基质
脊髓
基质(化学分析)
解剖
细胞外
生物
细胞生物学
化学
神经科学
色谱法
作者
Yanjun Guan,Zhibo Jia,Xing Xiong,Ruichao He,Yiben Ouyang,Haolin Liu,Lijing Liang,Xiaoxiao Meng,Ranran Zhang,Congcong Guan,S Wang,Dongdong Li,Yuhui Cui,Jun Bai,Jinjuan Zhao,Haoye Meng,Peng Jiang,Yu Wang
标识
DOI:10.1016/j.mtbio.2025.101561
摘要
Spinal cord organoids (SCOs) are in vitro models that faithfully recapitulate the basic tissue architecture and cell types of the spinal cord and play a crucial role in developmental studies, disease modeling, and drug screening. Physiological cues are required for proliferation and differentiation during SCO culture. However, commonly used basement membrane matrix products, such as Matrigel®, lack tissue-specific biophysical signals. The current study utilizes decellularization process to fabricate tissue-derived hydrogel from porcine spinal cord tissue that retain intrinsic matrix components. This gel system supported an expanded neuroepithelial scale and enhanced ventral recognition patterns during SCO cultivation. Based on the characteristics of the enlarged aggregate size, a technical system for SCO cutting and subculture are proposed to improve the economic feasibility. Finally, the advantage of S-gel in maintaining neurite outgrowth are also found, which suggests its potential application in neural-related microphysiological systems.
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