神经母细胞
神经科学
再生(生物学)
神经干细胞
材料科学
钙粘蛋白
细胞生物学
生物
干细胞
神经发生
生物化学
细胞
作者
Yuya Ohno,Chikako Nakajima,Itsuki Ajioka,Takahiro Muraoka,Atsuya Yaguchi,Teppei Fujioka,Saori Akimoto,Misaki Matsuo,Ahmed Lotfy,Sayuri Nakamura,Vicente Herranz‐Pérez,José Manuel García‐Verdugo,Noriyuki Matsukawa,Naoko Kaneko,Kazunobu Sawamoto
出处
期刊:Biomaterials
[Elsevier BV]
日期:2023-01-17
卷期号:294: 122003-122003
被引量:17
标识
DOI:10.1016/j.biomaterials.2023.122003
摘要
The mammalian brain has very limited ability to regenerate lost neurons and recover function after injury. Promoting the migration of young neurons (neuroblasts) derived from endogenous neural stem cells using biomaterials is a new and promising approach to aid recovery of the brain after injury. However, the delivery of sufficient neuroblasts to distant injured sites is a major challenge because of the limited number of scaffold cells that are available to guide neuroblast migration. To address this issue, we have developed an amphiphilic peptide [(RADA)3-(RADG)] (mRADA)-tagged N-cadherin extracellular domain (Ncad-mRADA), which can remain in mRADA hydrogels and be injected into deep brain tissue to facilitate neuroblast migration. Migrating neuroblasts directly contacted the fiber-like Ncad-mRADA hydrogel and efficiently migrated toward an injured site in the striatum, a deep brain area. Furthermore, application of Ncad-mRADA to neonatal cortical brain injury efficiently promoted neuronal regeneration and functional recovery. These results demonstrate that self-assembling Ncad-mRADA peptides mimic both the function and structure of endogenous scaffold cells and provide a novel strategy for regenerative therapy.
科研通智能强力驱动
Strongly Powered by AbleSci AI