A novel vWF A3-GPI modified EPCs to enhance its adhesion ability to collegen
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A novel vWF A3-GPI modified EPCs to enhance its adhesion ability to collegen
A novel vWF A3-GPI modified EPCs to enhance its adhesion ability to collegen
解放军医学杂志(英文版)2011年26卷第4期 页码:191-203
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Author bio:
Funds:
Supported by the National Natural Science Foundation of China(30800479)
DOI:
中图分类号:R363
纸质出版:2011
Accepted:
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A novel vWF A3-GPI modified EPCs to enhance its adhesion ability to collegen[J]. 解放军医学杂志(英文版), 2011,26(4):191-203.
[1].A novel vWF A3-GPI modified EPCs to enhance its adhesion ability to collegen[J].Journal of Medical Colleges of PLA,2011,26(04):191-203.
A novel vWF A3-GPI modified EPCs to enhance its adhesion ability to collegen[J]. 解放军医学杂志(英文版), 2011,26(4):191-203.DOI:
[1].A novel vWF A3-GPI modified EPCs to enhance its adhesion ability to collegen[J].Journal of Medical Colleges of PLA,2011,26(04):191-203.DOI:
A novel vWF A3-GPI modified EPCs to enhance its adhesion ability to collegen
摘要
Abstract
Objective:To gain purified recombination protein rGPI-vWF A3 which can guide endothelial progenitor cells (EPCs) gathering to the internal surface of the injured vessels theoretically and analyze its bioactivity in vitro. Methods: The plasmid vector of vWF A3 fusion protein which contained GPI structure was constructed and recombination protein rGPI-vWF A3 was expressed and its bioactivity was analyzed by ELISA and FCM. Results: Fusion protein vWF A3-GPI was expressed and purified by immunoaffinity chromatography and it could stably anchored on the surface of EPCs and showed its biological activities of collagen conjunction. Conclusion: These findings represent a novel strategy in EPC transplantation treatment for vessel injury.
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