首页> 外文期刊>Cellular and Molecular Bioengineering >Adhesive Peptide Sequences Regulate Valve Interstitial Cell Adhesion, Phenotype and Extracellular Matrix Deposition
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Adhesive Peptide Sequences Regulate Valve Interstitial Cell Adhesion, Phenotype and Extracellular Matrix Deposition

机译:粘附肽序列调节瓣膜间质细胞粘附,表型和细胞外基质沉积。

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Knowledge of how extracellular matrix (ECM) binding impacts valve interstitial cells (VICs) is critical not only to better understanding the etiology of valvular diseases but also to constructing living valve substitutes that can grow and remodel. Use of ECM-mimicking adhesive peptides with specific affinity to different receptors provides insights into adhesion-mediated cell signaling and downstream outcomes. Expression of adhesion receptors by VICs was assessed by flow cytometry and used to guide the choice of peptides studied. The peptide RGDS with affinity to multiple integrin receptors, and specific receptor-targeting peptides DGEA (integrin alpha (2) beta (1)), YIGSR (67 kDa laminin/elastin receptor; 67LR), and VAPG (67LR) were incorporated into hydrogels to investigate their effects on VICs. DGEA, YIGSR, and VAPG alone were insufficient to induce stable VIC adhesion. As a result, these peptides were studied in combination with 1 mM RGDS. For VICs cultured on two-dimensional hydrogel surfaces, YIGSR and VAPG down-regulated the expression of smooth muscle alpha-actin (myofibroblast activation marker); DGEA promoted VIC adhesion and VIC-mediated ECM deposition and inhibited the activity of alkaline phosphatase (osteogenic differentiation marker). Further, YIGSR and DGEA in combination promoted ECM deposition while inhibiting both myofibroblastic and osteogenic differentiation. However, VICs behaved differently to adhesive ligands when cultured within three-dimensional hydrogels, with most VICs assuming a healthy, quiescent phenotype under all peptide conditions tested. DGEA promoted ECM deposition by VICs within hydrogels. Overall, we demonstrate that the presentation of defined peptides targeting specific adhesion receptors can be used to regulate VIC adhesion, phenotype and ECM synthesis.
机译:了解细胞外基质(ECM)结合如何影响瓣膜间质细胞(VIC)的知识不仅对于更好地了解瓣膜疾病的病因至关重要,而且对于构建可以生长和重塑的活瓣替代物至关重要。使用对不同受体具有特定亲和力的模仿ECM的黏着肽可以深入了解黏附介导的细胞信号传导和下游结果。通过流式细胞仪评估VICs粘附受体的表达,并用于指导研究肽的选择。对多种整联蛋白受体具有亲和力的RGDS肽,以及针对特定受体的肽DGEA(整联蛋白alpha(2)beta(1)),YIGSR(67 kDa层粘连蛋白/弹性蛋白受体; 67LR)和VAPG(67LR)被掺入到水凝胶中调查它们对VIC的影响。仅DGEA,YIGSR和VAPG不足以诱导稳定的VIC粘附。结果,与1mM RGDS组合研究了这些肽。对于在二维水凝胶表面上培养的VIC,YIGSR和VAPG下调了平滑肌α-肌动蛋白(成肌纤维细胞激活标志物)的表达; DGEA促进VIC粘附和VIC介导的ECM沉积,并抑制碱性磷酸酶(成骨分化标记)的活性。此外,YIGSR和DGEA的组合可促进ECM沉积,同时抑制肌纤维母细胞和成骨细胞的分化。但是,当在三维水凝胶中培养时,VIC的行为与粘附配体不同,大多数VIC在所有测试的肽条件下均假定为健康的静态表型。 DGEA通过水凝胶中的VIC促进了ECM沉积。总的来说,我们证明了靶向特定粘附受体的确定肽的表达可用于调节VIC粘附,表型和ECM合成。

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