Enhanced Neuron Growth and Electrical Activity by a Supramolecular Netrin-1 Mimetic Nanofiber

奈特林 突触发生 神经突 神经营养素 神经科学 轴突引导 生长锥 神经系统 信号灯 神经营养因子 细胞生物学 神经生长因子 生物 受体 轴突 生物化学 体外
作者
Cara S. Smith,Zaida Álvarez,Ruomeng Qiu,Ivan R. Sasselli,Tristan D. Clemons,Joaquı́n M. Ortega,Marcos Vilela-Picos,Henry N. Wellman,Evangelos Kiskinis,Samuel I. Stupp
出处
期刊:ACS Nano [American Chemical Society]
卷期号:17 (20): 19887-19902
标识
DOI:10.1021/acsnano.3c04572
摘要

Neurotrophic factors are essential not only for guiding the organization of the developing nervous system but also for supporting the survival and growth of neurons after traumatic injury. In the central nervous system (CNS), inhibitory factors and the formation of a glial scar after injury hinder the functional recovery of neurons, requiring exogenous therapies to promote regeneration. Netrin-1, a neurotrophic factor, can initiate axon guidance, outgrowth, and branching, as well as synaptogenesis, through activation of deleted in colorectal cancer (DCC) receptors. We report here the development of a nanofiber-shaped supramolecular mimetic of netrin-1 with monomers that incorporate a cyclic peptide sequence as the bioactive component. The mimetic structure was found to activate the DCC receptor in primary cortical neurons using low molar ratios of the bioactive comonomer. The supramolecular nanofibers enhanced neurite outgrowth and upregulated maturation as well as pre- and postsynaptic markers over time, resulting in differences in electrical activity similar to neurons treated with the recombinant netrin-1 protein. The results suggest the possibility of using the supramolecular structure as a therapeutic to promote regenerative bioactivity in CNS injuries.
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