Herbert C B, McLernon T L, Hypolite C L, Adams D N, Pikus L, Huang C C, Fields G B, Letourneau P C, Distefano M D, Hu W S
Department of Chemical Engineering and Materials Science, University of Minnesota, Minneapolis 55455, USA.
Chem Biol. 1997 Oct;4(10):731-7. doi: 10.1016/s1074-5521(97)90311-2.
Bioactive molecules that are covalently immobilized in patterns on surfaces have previously been used to control or study cell behavior such as adhesion, spreading, movement or differentiation. Photoimmobilization techniques can be used, however, to control not only the spatial pattern of molecular immobilization, termed the micropattern, but also the surface density of the molecules--a characteristic that has not been previously exploited.
Oligopeptides containing the bioactive Arg-Gly-Asp cell-adhesion sequence were immobilized upon self-assembled monolayers of an oligo(ethylene glycol) alkanethiolate in patterns that were visualized and quantified by autoradiography. The amount and pattern of immobilized peptide were controlled by manipulating the exposure of the sample to a UV lamp or a laser beam. Patterns of peptides, including a density gradient, were used to control the location and number of adherent cells and also the cell shape.
A photoimmobilization technique for decorating surfaces with micropatterns that consist of variable densities of bioactive molecules is described. The efficacy of the patterns for controlling cell adhesion and shape has been demonstrated. This technique is useful for the study of cell behavior on micropatterns.
先前已将以图案形式共价固定在表面的生物活性分子用于控制或研究细胞行为,如粘附、铺展、运动或分化。然而,光固定技术不仅可用于控制分子固定的空间图案(即微图案),还可用于控制分子的表面密度,而这一特性此前尚未得到利用。
含有生物活性精氨酸-甘氨酸-天冬氨酸细胞粘附序列的寡肽以图案形式固定在聚乙二醇链烷硫醇盐的自组装单分子层上,通过放射自显影进行可视化和定量分析。通过控制样品对紫外灯或激光束的照射,可控制固定化肽的数量和图案。包括密度梯度在内的肽图案用于控制贴壁细胞的位置和数量以及细胞形状。
描述了一种用光固定技术在表面装饰由不同密度生物活性分子组成的微图案的方法。已证明这些图案在控制细胞粘附和形状方面的有效性。该技术对于研究微图案上的细胞行为很有用。