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首页> 外文期刊>Biomaterials >Preserved bioactivity and tunable release of a SDF1-GPVI bi-specific protein using photo-crosslinked PEGda hydrogels
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Preserved bioactivity and tunable release of a SDF1-GPVI bi-specific protein using photo-crosslinked PEGda hydrogels

机译:使用光交联的PEGda水凝胶保留SDF1-GPVI双特异性蛋白质的生物活性和可调释放

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摘要

Chemokine-induced stem cell recruitment is a promising strategy for post myocardial infarction treatment. Injection of stromal cell-derived factor 1 (SDF1) has been shown to attract bone marrow-derived progenitor cells (BMPCs) from the blood that have the potential to differentiate into cardiovascular cells, which support angiogenesis, enabling the improvement of myocardial function. SDF1-GPVI bi-specific protein contains a glycoprotein VI (GPVI)-domain that serves as an anchor for collagen type I (Col I) and III, which are exposed in the wall of injured vasculature. In this study, we generated a cytocompatible hydrogel via photo-crosslinking of poly(ethylene glycol) diacrylate that serves as a reservoir for SDF1-GPVI. Controlled and sustained release of SDF1-GPVI was demonstrated over a period of 7 days. Release features were modifiable depending on the degree of the crosslinking density. Functionality of the GPVI-domain was investigated using a GPVI-binding ELISA to Col I. Activity of the SDF1-domain was tested for its CXCR4 binding potential. Preserved functionality of SDF1-GPVI bi-specific protein after photo-crosslinking and controllable release was successfully demonstrated invitro supporting the implementation of this drug delivery system as a powerful tool for therapeutic protein delivery in the treatment of cardiovascular ischemic disease.
机译:趋化因子诱导的干细胞募集是心肌梗死后治疗的有前途的策略。基质细胞衍生因子1(SDF1)的注射已显示可从血液中吸引骨髓衍生祖细胞(BMPC),它们有可能分化为支持血管生成的心血管细胞,从而改善心肌功能。 SDF1-GPVI双特异性蛋白包含糖蛋白VI(GPVI)域,该域可作为I型胶原蛋白(Col I)和III的锚定蛋白,这些胶原蛋白暴露在受损血管的壁中。在这项研究中,我们通过聚乙二醇二丙烯酸酯的光交联生成了可与细胞相容的水凝胶,该凝胶用作SDF1-GPVI的储库。在7天的时间内证明了SDF1-GPVI的控制释放和持续释放。释放特征可根据交联密度的程度进行修改。使用GPVI结合ELISA对Col I研究了GPVI结构域的功能。测试了SDF1结构域的CXCR4结合潜力。 SDF1-GPVI双特异性蛋白在光致交联和可控释放后的功能得以成功地体外证明,支持该药物递送系统的实施,将其作为治疗心血管缺血性疾病的治疗性蛋白质递送的强大工具。

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