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Confinement of Transmembrane Cell Receptors in Tunable Stripe Micropatterns

机译:跨膜细胞受体在可调谐条纹微模式中的限制

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摘要

We report a simple method to confine transmembrane cell receptors in stripe micropatterns of a lipid/lipopolymer monolayer,which are formed as result of the transfer onto a solid substrate.The stripes are aligned perpendicular to the meniscus,whose periodicity can systematically be tuned by the transfer velocity.This strongly suggests the dominant role of the cooperative interaction between the film and substrate.Selective fluorescence labeling of lipids and lipopolymers confirms that the observed patterns coincide with the demixing of two species.Covalent coupling of polymer headgroups enables us to use the stripe patterns as a support for a lipid bilayer membrane.Spreading of lipid vesicles with platelet integrin alpha_(IIb)beta_3 on a self-assembled membrane micropattern demonstrates that cell adhesion receptors are selectively incorporated into the lipopolymer-rich region.The method established here provides us with a tunable template for the confinement of receptor proteins to geometrically control the cell adhesion.
机译:我们报道了一种简单的方法来将跨膜细胞受体限制在脂质/脂聚合物单层的条纹微模式中,该模式是由于转移到固体基质上而形成的。条纹垂直于弯月面排列,其周期性可以通过微调来系统地调节。转移速度。这强烈表明了膜与底物之间相互作用的主要作用。脂质和脂聚合物的选择性荧光标记证实了观察到的模式与两种物质的分解相吻合。聚合物头基的共价偶联使我们能够使用条纹血小板整合素alpha_(IIb)beta_3在自组装膜微模式上的脂质囊泡扩散表明细胞粘附受体被选择性地掺入富含脂聚合物的区域中。具有可调节模板,可将受体蛋白限制在地理范围内严格控制细胞粘附。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2005年第4期|p.1258-1264|共7页
  • 作者单位

    Contribution from the Lehrstuhl fur Biophysik E22,Technische Universitat Munchen,James-Franck-Strasse,85748 Garching,Germany,Lehrstuhl fur Makromolekulare Stoffe,Technische Universitat Munchen,Lichtenbergstrasse 4,85748 Garching,Germany,and Departmen;

    Contribution from the Lehrstuhl fur Biophysik E22,Technische Universitat Munchen,James-Franck-Strasse,85748 Garching,Germany,Lehrstuhl fur Makromolekulare Stoffe,Technische Universitat Munchen,Lichtenbergstrasse 4,85748 Garching,Germany,and Departmen;

    Contribution from the Lehrstuhl fur Biophysik E22,Technische Universitat Munchen,James-Franck-Strasse,85748 Garching,Germany,Lehrstuhl fur Makromolekulare Stoffe,Technische Universitat Munchen,Lichtenbergstrasse 4,85748 Garching,Germany,and Departmen;

    Contribution from the Lehrstuhl fur Biophysik E22,Technische Universitat Munchen,James-Franck-Strasse,85748 Garching,Germany,Lehrstuhl fur Makromolekulare Stoffe,Technische Universitat Munchen,Lichtenbergstrasse 4,85748 Garching,Germany,and Departmen;

    Contribution from the Lehrstuhl fur Biophysik E22,Technische Universitat Munchen,James-Franck-Strasse,85748 Garching,Germany,Lehrstuhl fur Makromolekulare Stoffe,Technische Universitat Munchen,Lichtenbergstrasse 4,85748 Garching,Germany,and Departmen;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

  • 入库时间 2022-08-18 03:23:45

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