Wheeler B C, Corey J M, Brewer G J, Branch D W
Beckman Institute, Department of Electrical and Computer Engineering, University of Illinois at Urbana-Champaign 61801, USA.
J Biomech Eng. 1999 Feb;121(1):73-8. doi: 10.1115/1.2798045.
Microcontact printing, facilitated by silane linker chemistry and high-relief stamps, creates precise patterns of proteins, which in turn control growth of hippocampal neurons in culture. This additive, multi-mask technique permits several different molecules to be patterned on the same substrate. The covalent linker technology permits relatively long-term (two-week) compliance of neurons to the stamped pattern against a polyethylene glycol background. When polylysine was stamped adjacent to a laminin/polylysine mixture, neural somata and dendrites preferred the polylysine while axons prefer the mixture or the border between the two.
通过硅烷连接化学和高浮雕印章实现的微接触印刷可创建精确的蛋白质图案,进而控制培养中的海马神经元生长。这种添加式多掩膜技术允许在同一基板上对几种不同分子进行图案化。共价连接技术使神经元在聚乙二醇背景下能相对长期(两周)地遵循所印图案。当将聚赖氨酸印在层粘连蛋白/聚赖氨酸混合物旁边时,神经细胞体和树突更喜欢聚赖氨酸,而轴突则更喜欢混合物或两者之间的边界。