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首页> 外文期刊>Biomacromolecules >Self-Assembly of Elastin-Based Peptides into the ECM: the Importance of Integrins and the Elastin Binding Protein in Elastic Fiber Assembly
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Self-Assembly of Elastin-Based Peptides into the ECM: the Importance of Integrins and the Elastin Binding Protein in Elastic Fiber Assembly

机译:基于弹性蛋白的肽的自我组装到ECM:整合素和弹性蛋白结合蛋白在弹性纤维组装中的重要性。

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The formation of a suitable extracellular matrix (ECM) that promotes cell adhesion, organization, and proliferation is essential within biomaterial scaffolds for tissue engineering applications. In this work, short elastin mimetic peptide sequences, EM-19 and EM-23, were engineered to mimic the active motifs of human elastin in hopes that they can stimulate ECM development in synthetic polymer scaffolds. Each peptide was incubated with human aortic smooth muscle cells (SMCs) and elastin and desmosine production were quantified after 48 h. EM-19 inhibited elastin production through competitive binding phenomena with the elastin binding protein (EBP), whereas EM-23, which contains an RGDS domain, induces recovery of elastin production at higher concentrations, alluding to a higher binding affinity for the integrins than for the EBP and the involvement of integrins in elastin production. Colocalization of each peptide with the elastin matrix was confirmed using immunofluorescent techniques. Our data suggest that with appropriate cell-binding motifs, we can simulate the cross-linking of tropoelastin into the developing elastin matrix using short peptide sequences. The potential for increased cell adhesion and the incorporation of elastin chains into tissue engineering scaffolds make these peptides attractive bioactive moieties that can easily be incorporated into synthetic biomaterials to induce ECM formation.
机译:在组织工程应用的生物材料支架中,促进细胞粘附,组织和增殖的合适细胞外基质(ECM)的形成至关重要。在这项工作中,短弹性蛋白模拟肽序列EM-19和EM-23被设计为模拟人弹性蛋白的活性基序,希望它们能够刺激合成聚合物支架中ECM的发展。将每种肽与人主动脉平滑肌细胞(SMCs)孵育,并在48小时后定量弹性蛋白和高糖精的产生。 EM-19通过与弹性蛋白结合蛋白(EBP)的竞争性结合现象抑制了弹性蛋白的产生,而含有RGDS结构域的EM-23则以较高的浓度诱导了弹性蛋白的产生,暗示了与整联蛋白的结合亲和力高于EBP和整联蛋白在弹性蛋白生产中的参与。使用免疫荧光技术证实了每种肽与弹性蛋白基质的共定位。我们的数据表明,使用适当的细胞结合基序,我们可以使用短肽序列模拟原弹性蛋白到发育中的弹性蛋白基质的交联。增加细胞粘附和将弹性蛋白链掺入组织工程支架的潜力使这些肽具有吸引力的生物活性部分,可以很容易地掺入合成生物材料中以诱导ECM形成。

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