Lee Dooyoung, King Michael R
Dept of Chemical Engineering, University of Rochester, Rochester, NY 14627, USA.
Biotechnol Prog. 2008 Sep-Oct;24(5):1052-9. doi: 10.1002/btpr.35.
The local variation of P-selectin expression on inflamed endothelial layers affects leukocyte recruitment in vivo. As an initial study of the spatially heterogeneous presentation of P-selectin in vitro, the influence of microcontact printing (microCP) of P-selectin on a planar surface in neutrophil recruitment was investigated using a parallel-plate flow chamber. Microline patterned and nonpatterned P-selectin were prepared using PDMS, Poly(dimethylsiloxane) (PMDS) stamps and isolated neutrophils perfused over the surface to quantify the level of neutrophil recruitment. We first found a significant increase in cell rolling flux and a decrease in cell rolling velocity on the microcontact printed P-selectin-surfaces compared with a randomly adsorbed P-selectin-surface. However, the increase in rolling adhesion under shear on the surfaces prepared by microCP was not proportional to the number of functional sites of P-selectin transferred using immunofluorescent labeling. Interestingly, the relative immunofluorescent intensities of the nonfunctional regions of microcontact printed P-selectin-surfaces were substantially lower than that that of randomly adsorbed P-selectin. Taken together, these data indicate that the microCP of selectin increases the transfer rate of the adhesion molecule on a surface in the functionally correct orientation and, consequently, improves the recruitment of leukocytes to the selectin surface under flow. It is concluded that microCP may be a more general technique to control protein orientation on a substrate.
炎症内皮细胞层上P-选择素表达的局部变化会影响体内白细胞的募集。作为对体外P-选择素空间异质性呈现的初步研究,使用平行板流动腔研究了在平面表面上微接触印刷(microCP)P-选择素对中性粒细胞募集中的影响。使用聚二甲基硅氧烷(PDMS)制备微线图案化和非图案化的P-选择素,并将分离的中性粒细胞灌注到表面上以量化中性粒细胞的募集水平。我们首先发现,与随机吸附的P-选择素表面相比,微接触印刷的P-选择素表面上的细胞滚动通量显著增加,细胞滚动速度降低。然而,通过微接触印刷制备的表面在剪切力作用下滚动粘附的增加与使用免疫荧光标记转移的P-选择素功能位点数量不成正比。有趣的是,微接触印刷的P-选择素表面非功能区域的相对免疫荧光强度明显低于随机吸附的P-选择素表面。综上所述,这些数据表明选择素的微接触印刷提高了粘附分子在表面上以功能正确方向的转移率,从而改善了流动条件下白细胞向选择素表面的募集。得出的结论是,微接触印刷可能是一种更通用的控制蛋白质在底物上取向的技术。