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用于钛基生物材料功能化的分子工具包,可选择性控制整合素介导的细胞黏附。

A molecular toolkit for the functionalization of titanium-based biomaterials that selectively control integrin-mediated cell adhesion.

机构信息

Institute for Advanced Study and Center for Integrated Protein Science, Department Chemie, Technische Universität München, Lichtenbergstrasse 4, 85747 Garching, Germany.

出版信息

Chemistry. 2013 Jul 8;19(28):9218-23. doi: 10.1002/chem.201301478. Epub 2013 Jun 6.

Abstract

We present a click chemistry-based molecular toolkit for the biofunctionalization of materials to selectively control integrin-mediated cell adhesion. To this end, α5β1-selective RGD peptidomimetics were covalently immobilized on Ti-based materials, and the capacity to promote the selective binding of α5β1 was evaluated using a solid-phase integrin binding assay. This functionalization strategy yielded surfaces with a nine-fold increased affinity for α5β1, in comparison to control samples, and total selectivity against the binding of the closely related integrin αvβ3. Moreover, our methodology allowed the screening of several phosphonic acid containing anchoring units to find the best spacer-anchor moiety required for establishing an efficient binding to titanium and to promote selective integrin binding. The integrin subtype specificity of these biofunctionalized surfaces was further examined in vitro by inducing selective adhesion of genetically modified fibroblasts, which express exclusively the α5β1 integrin. The versatility of our molecular toolkit was proven by shifting the cellular specificity of the materials from α5β1- to αvβ3-expressing fibroblasts by using an αvβ3-selective peptidomimetic as coating molecule. The results shown here represent the first functionalization of Ti-based materials with α5β1- or αvβ3-selective peptidomimetics that allow an unprecedented control to discriminate between α5β1- and αvβ3-mediated adhesions. The role of these two integrins in different biological events is still a matter of debate and is frequently discussed in literature. Thus, such bioactive titanium surfaces will be of great relevance for the study of integrin-mediated cell adhesion and the development of new biomaterials targeting specific cell types.

摘要

我们提出了一种基于点击化学的分子工具包,用于对材料进行生物功能化,以选择性地控制整合素介导的细胞黏附。为此,将 α5β1 选择性 RGD 肽模拟物共价固定在基于 Ti 的材料上,并使用固相整合素结合测定法评估其促进 α5β1 选择性结合的能力。与对照样品相比,这种功能化策略使表面对 α5β1 的亲和力提高了九倍,并且对紧密相关的整合素 αvβ3 的结合具有完全选择性。此外,我们的方法允许筛选几种含有膦酸的锚固单元,以找到建立与钛有效结合并促进选择性整合素结合所需的最佳间隔物-锚固部分。通过诱导仅表达 α5β1 整合素的基因修饰成纤维细胞选择性黏附,进一步在体外研究了这些生物功能化表面的整合素亚类特异性。通过使用 αvβ3 选择性肽模拟物作为涂层分子将材料的细胞特异性从 α5β1-转变为 αvβ3 表达的成纤维细胞,证明了我们分子工具包的多功能性。这里显示的结果代表了首次用 α5β1-或 αvβ3 选择性肽模拟物对 Ti 基材料进行功能化,从而可以前所未有地控制区分 α5β1-和 αvβ3 介导的黏附。这两种整合素在不同生物学事件中的作用仍然存在争议,并且经常在文献中讨论。因此,这些具有生物活性的钛表面对于整合素介导的细胞黏附的研究以及针对特定细胞类型的新型生物材料的开发将具有重要意义。

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