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首页> 外文期刊>Journal of materials science >In vitro biocompatibility evaluations of hyperbranched polyglycerol hybrid nanostructure as a candidate for nanomedicine applications
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In vitro biocompatibility evaluations of hyperbranched polyglycerol hybrid nanostructure as a candidate for nanomedicine applications

机译:超支化聚甘油杂化纳米结构作为纳米药物应用的候选者的体外生物相容性评估

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摘要

In the present study, a detailed biocompatibility testing of a novel class of hybrid nanostructure based on hyperbranched polyglycerol and β-cyclodextrin is conducted. This highly water soluble nanostructure with size of less than 10 nm, polydispersity of less than 1.3, chemical tenability and highly branched architecture with the control over branching structure could be potentially used as a carrier in drug delivery systems. To this end, extensive studies in vitro and in vivo conditions have to be demonstrated. The in vitro studies include in vitro cytotoxicity tests; MTT and Neutral Red assay as an indicator of mitochondrial and lysosomal function, and blood biocompatibility tests such as effects on coagulation cascade, and complement activation. The results show that these hybrid nanostructures, which can be prepared in a simple reaction, are considerably biocompatible. The in vivo studies showed that the hybrid nanostructure is well tolerated by rats even in high doses of 10 mg ml~(-1). After autopsy, the normal structure of liver tissue was observed; which divulges high biocompatibility and their potential applications as drug delivery and nanomedicine.
机译:在本研究中,进行了基于超支化聚甘油和β-环糊精的新型杂化纳米结构的详细生物相容性测试。这种高度水溶性的纳米结构具有小于10 nm的尺寸,小于1.3的多分散性,化学稳定性以及具有控制分支结构的高度分支结构,可以潜在地用作药物输送系统的载体。为此,必须证明广泛的体外和体内条件研究。体外研究包括体外细胞毒性测试; MTT和中性红分析可作为线粒体和溶酶体功能的指标,以及血液生物相容性测试,例如对凝血级联反应和补体激活的影响。结果表明,可以通过简单的反应制备的这些杂化纳米结构具有相当的生物相容性。体内研究表明,即使在高剂量的10 mg ml〜(-1)下,大鼠也能很好地耐受杂化纳米结构。尸检后,观察到肝组织的正常结构。揭示了高生物相容性及其在药物递送和纳米药物中的潜在应用。

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  • 来源
    《Journal of materials science 》 |2014年第2期| 499-506| 共8页
  • 作者单位

    Department of Biotechnology, Faculty of Advanced Sciences and Technologies, University of Isfahan, Isfahan, Iran;

    National Cell Bank of Iran, Pasteur Institute of Iran, Tehran, Iran;

    Institute for Nanoscience and Nanotechnology, Sharif University of Technology, Tehran, Iran;

    Department of Tissue Engineering and Cell Therapy, School of Advanced Medical Technologies, Tehran University of Medical Sciences, Tehran, Iran;

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