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Preliminary biocompatibility investigation of magnetic albumin nanosphere designed as a potential versatile drug delivery system

机译:磁性白蛋白纳米球的初步生物相容性研究,该球被设计为潜在的多功能药物递送系统

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摘要

Background: The magnetic albumin nanosphere (MAN), encapsulating maghemite nanoparticles, was designed as a magnetic drug delivery system (MDDS) able to perform a variety of biomedical applications. It is noteworthy that MAN was efficient in treating Ehrlich's tumors by the magnetohyperthermia procedure. Methods and materials: In this study, several nanotoxicity tests were systematically carried out in mice from 30 minutes until 30 days after MAN injection to investigate their biocompatibility status. Cytometry analysis, viability tests, micronucleus assay, and histological analysis were performed. Results: Cytometry analysis and viability tests revealed MAN promotes only slight and temporary alterations in the frequency of both leukocyte populations and viable peritoneal cells, respectively. Micronucleus assay showed absolutely no genotoxicity or cytotoxicity effects and histological analysis showed no alterations or even nanoparticle clusters in several investigated organs but, interestingly, revealed the presence of MAN clusters in the central nervous system (CNS). Conclusion: The results showed that MAN has desirable in vivo biocompatibility, presenting potential for use as a MDDS, especially in CNS disease therapy.
机译:背景:包裹磁赤铁矿纳米粒子的磁性白蛋白纳米球(MAN)被设计为能够执行多种生物医学应用的磁性药物递送系统(MDDS)。值得注意的是,MAN通过磁高热疗法可有效治疗Ehrlich肿瘤。方法和材料:在这项研究中,从MAN注射后30分钟到30天,系统地对小鼠进行了几项纳米毒性测试,以研究它们的生物相容性状态。进行细胞计数分析,生存力测试,微核分析和组织学分析。结果:细胞计数分析和生存力测试显示,MAN只会分别促进白细胞种群和存活腹膜细胞频率的轻微和暂时改变。微核试验显示绝对没有遗传毒性或细胞毒性作用,组织学分析显示在几个被调查的器官中没有改变,甚至没有纳米颗粒簇,但有趣的是,揭示了MAN簇在中枢神经系统(CNS)中的存在。结论:结果表明,MAN具有理想的体内生物相容性,具有用作MDDS的潜力,尤其是在CNS疾病治疗中。

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