Advanced Materials and Liquid Crystal Institute, 1425 Lefton Esplanade, Kent State University, Kent, Ohio, 44242-0001, USA.
Department of Biological Sciences, 1425 Lefton Esplanade, Kent State University, Kent, Ohio, 44242-0001, USA.
Macromol Rapid Commun. 2020 Mar;41(5):e1900585. doi: 10.1002/marc.201900585. Epub 2020 Feb 3.
3D liquid crystal elastomer (3D-LCE) foams are used to support long-term neuronal cultures for over 60 days. Sequential imaging shows that cell density remains relatively constant throughout the culture period while the number of cells per observational area increases. In a subset of samples, retinoic acid is used to stimulate extensive neuritic outgrowth and maturation of proliferated neurons within the LCEs, inducing a threefold increase in length with cells displaying morphologies indicative of mature neurons. Designed LCEs' micro-channels have a similar diameter to endogenous parenchymal arterioles, ensuring that neurons throughout the construct have constant access to growth media during extended experiments. Here it is shown that 3D-LCEs provide a unique environment and simple method to longitudinally study spatial neuronal function, not possible in conventional culture environments, with simplistic integration into existing methodological pipelines.
3D 液晶弹性体(3D-LCE)泡沫可用于支持长期的神经元培养超过 60 天。连续成像显示,在整个培养期间细胞密度相对保持不变,而每个观察区域的细胞数量增加。在一部分样本中,使用视黄酸刺激 LCE 内增殖神经元的广泛神经突生长和成熟,导致长度增加两倍,细胞呈现出成熟神经元的形态。设计的 LCE 微通道的直径与内源性实质小动脉相似,确保在延长的实验过程中整个构建体中的神经元始终能够获得生长培养基。这里表明,3D-LCE 提供了一个独特的环境和简单的方法来纵向研究空间神经元功能,这在传统培养环境中是不可能的,并且可以简单地整合到现有的方法学管道中。