Institute on Membrane Technology, National Research Council of Italy, ITM-CNR, c/o University of Calabria, Rende, CS, Italy.
J Mater Sci Mater Med. 2012 Jan;23(1):149-56. doi: 10.1007/s10856-011-4484-3. Epub 2011 Nov 11.
This study focuses on the development of an advanced in vitro biohybrid culture model system based on the use of hollow fibre membranes (HFMs) and hippocampal neurons in order to promote the formation of a high density neuronal network. Polyacrylonitrile (PAN) and modified polyetheretherketone (PEEK-WC) membranes were prepared in hollow fibre configuration. The morphological and metabolic behaviour of hippocampal neurons cultured on PAN HF membranes were compared with those cultured on PEEK-WC HF. The differences of cell behaviour between HFMs were evidenced by the morphometric analysis in terms of axon length and also by the investigation of metabolic activity in terms of neurotrophin secretion. These findings suggested that PAN HFMs induced the in vitro reconstruction of very highly functional and complex neuronal networks. Thus, these biomaterials could potentially be used for the in vitro realization of a functional hippocampal tissue analogue for the study of neurobiological functions and/or neurodegenerative diseases.
本研究专注于开发一种先进的体外生物杂交培养模型系统,该系统基于使用中空纤维膜 (HFMs) 和海马神经元,以促进高密度神经元网络的形成。聚丙烯腈 (PAN) 和改性聚醚醚酮 (PEEK-WC) 膜以中空纤维的形式制备。比较了在 PAN HF 膜上培养的海马神经元的形态和代谢行为与在 PEEK-WC HF 上培养的海马神经元的形态和代谢行为。HFMs 之间细胞行为的差异通过形态计量学分析(在轴突长度方面)和神经生长因子分泌方面的代谢活性研究来证明。这些发现表明,PAN HFMs 诱导了非常高功能和复杂的神经元网络的体外重建。因此,这些生物材料有可能用于体外实现功能性海马组织模拟物,以研究神经生物学功能和/或神经退行性疾病。