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用于控制内皮细胞黏附与增殖的重组噬菌体包被一维氧化铝纳米结构

Recombinant Phage Coated 1D Al2O3 Nanostructures for Controlling the Adhesion and Proliferation of Endothelial Cells.

作者信息

Lee Juseok, Jeon Hojeong, Haidar Ayman, Abdul-Khaliq Hashim, Veith Michael, Aktas Cenk, Kim Youngjun

机构信息

INM-Leibniz-Institute for New Materials, Campus D2 2, 66123 Saarbrücken, Germany.

Center for Biomaterials, Biomedical Research Institute, Korea Institute of Science and Technology (KIST), Hwarangno 14-gil 5, Seongbuk-gu, Seoul 136-791, Republic of Korea.

出版信息

Biomed Res Int. 2015;2015:909807. doi: 10.1155/2015/909807. Epub 2015 May 19.

Abstract

A novel synthesis of a nanostructured cell adhesive surface is investigated for future stent developments. One-dimensional (1D) Al2O3 nanostructures were prepared by chemical vapor deposition of a single source precursor. Afterwards, recombinant filamentous bacteriophages which display a short binding motif with a cell adhesive peptide (RGD) on p3 and p8 proteins were immobilized on these 1D Al2O3 nanostructures by a simple dip-coating process to study the cellular response of human endothelial EA hy.926. While the cell density decreased on as-deposited 1D Al2O3 nanostructures, we observed enhanced cell proliferation and cell-cell interaction on recombinant phage overcoated 1D Al2O3 nanostructures. The recombinant phage overcoating also supports an isotropic cell spreading rather than elongated cell morphology as we observed on as-deposited Al2O3 1D nanostructures.

摘要

为了未来支架的发展,研究了一种新型纳米结构细胞粘附表面的合成方法。通过单源前驱体的化学气相沉积制备了一维(1D)Al2O3纳米结构。之后,通过简单的浸涂工艺将在p3和p8蛋白上展示与细胞粘附肽(RGD)短结合基序的重组丝状噬菌体固定在这些一维Al2O3纳米结构上,以研究人内皮EA hy.926细胞的细胞反应。虽然在沉积态的一维Al2O3纳米结构上细胞密度降低,但我们观察到在重组噬菌体包覆的一维Al2O3纳米结构上细胞增殖和细胞间相互作用增强。如我们在沉积态的Al2O3一维纳米结构上所观察到的那样,重组噬菌体包覆还支持各向同性的细胞铺展,而不是伸长的细胞形态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/306a/4452264/7f8e8f734644/BMRI2015-909807.001.jpg

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