聚乙烯亚胺/聚乙二醇共轭金纳米粒子作为纳米毒理学中的纳米级阳性/阴性对照品:在蛙胚胎致畸试验--章鱼和哺乳动物组织培养系统中进行测试。

IF 3.6 3区 医学 Q3 NANOSCIENCE & NANOTECHNOLOGY Nanotoxicology Pub Date : 2023-02-01 Epub Date: 2023-03-15 DOI:10.1080/17435390.2023.2187322
Yoo-Seok Hwang, Daeho So, Moonsup Lee, Jaeho Yoon, Vytas Reipa, Alessandro Tona, Feng Yi, Bryant C Nelson, David A LaVan, Vincent A Hackley, Ira O Daar, Tae Joon Cho
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引用次数: 0

摘要

尽管在纳米医学中使用带正电荷的金纳米粒子(AuNPs)具有巨大的潜力,但在美国国家标准与技术研究所的一个研究小组最近成功制备出非常稳定的聚乙烯亚胺(PEI)包覆金纳米粒子(Au-PEI)之前,还没有关于其合成优化或生理条件下胶体稳定性的系统研究报道。这种改进型 Au-PEI(Au-PEI25kB)增加了纳米医学和纳米毒理学应用对毒性和致畸性信息的需求。Au-PEI25kB 在各种细胞系中的体外试验显示出了巨大的活性细胞毒性。为了进行更深入的毒性研究,本研究采用了蛙胚胎致畸试验--Xenopus(FETAX)方法。我们观察到,带正电荷的 Au-PEI25kB 具有显著的毒性和致畸性,而作为阴性对照的聚乙二醇共轭 AuNPs(Au-PEG)则没有。Au-PEI25kB 对果冻衣、绒毛膜(也称卵黄膜)和细胞质膜具有特有的亲和性,Au-PEG 还可观察到绒毛膜的屏障效应。为了规避这些特性,我们采用了注射介导的 FETAX 方法。与 FETAX 方法一样,注射 Au-PEI25kB 也会严重影响胚胎发育。值得注意的是,在注射介导的 FETAX 方法中,采用标准 FETAX 方法时陡峭的存活率/浓度曲线变得渐变。这些结果表明,Au-PEI25kB 可以作为一种很好的纳米级阳性对照材料,用于毒理学和畸形学中的纳米粒子分析。
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Polyethyleneimine/polyethylene glycol-conjugated gold nanoparticles as nanoscale positive/negative controls in nanotoxicology: testing in frog embryo teratogenesis assay-Xenopus and mammalian tissue culture system.

Despite the great potential of using positively charged gold nanoparticles (AuNPs) in nanomedicine, no systematic studies have been reported on their synthesis optimization or colloidal stability under physiological conditions until a group at the National Institute of Standards and Technology recently succeeded in producing remarkably stable polyethyleneimine (PEI)-coated AuNPs (Au-PEI). This improved version of Au-PEI (Au-PEI25kB) has increased the demand for toxicity and teratogenicity information for applications in nanomedicine and nanotoxicology. In vitro assays for Au-PEI25kB in various cell lines showed substantial active cytotoxicity. For advanced toxicity research, the frog embryo teratogenesis assay-Xenopus (FETAX) method was employed in this study. We observed that positively-charged Au-PEI25kB exhibited significant toxicity and teratogenicity, whereas polyethylene glycol conjugated AuNPs (Au-PEG) used as comparable negative controls did not. There is a characteristic avidity of Au-PEI25kB for the jelly coat, the chorionic envelope (also known as vitelline membrane) and the cytoplasmic membrane, as well as a barrier effect of the chorionic envelope observed with Au-PEG. To circumvent these characteristics, an injection-mediated FETAX approach was utilized. Like treatment with the FETAX method, the injection of Au-PEI25kB severely impaired embryo development. Notably, the survival/concentration curve that was steep when the standard FETAX approach was employed became gradual in the injection-mediated FETAX. These results suggest that Au-PEI25kB may be a good candidate as a nanoscale positive control material for nanoparticle analysis in toxicology and teratology.

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来源期刊
Nanotoxicology
Nanotoxicology 医学-毒理学
CiteScore
10.10
自引率
4.00%
发文量
45
审稿时长
3.5 months
期刊介绍: Nanotoxicology invites contributions addressing research relating to the potential for human and environmental exposure, hazard and risk associated with the use and development of nano-structured materials. In this context, the term nano-structured materials has a broad definition, including ‘materials with at least one dimension in the nanometer size range’. These nanomaterials range from nanoparticles and nanomedicines, to nano-surfaces of larger materials and composite materials. The range of nanomaterials in use and under development is extremely diverse, so this journal includes a range of materials generated for purposeful delivery into the body (food, medicines, diagnostics and prosthetics), to consumer products (e.g. paints, cosmetics, electronics and clothing), and particles designed for environmental applications (e.g. remediation). It is the nano-size range if these materials which unifies them and defines the scope of Nanotoxicology . While the term ‘toxicology’ indicates risk, the journal Nanotoxicology also aims to encompass studies that enhance safety during the production, use and disposal of nanomaterials. Well-controlled studies demonstrating a lack of exposure, hazard or risk associated with nanomaterials, or studies aiming to improve biocompatibility are welcomed and encouraged, as such studies will lead to an advancement of nanotechnology. Furthermore, many nanoparticles are developed with the intention to improve human health (e.g. antimicrobial agents), and again, such articles are encouraged. In order to promote quality, Nanotoxicology will prioritise publications that have demonstrated characterisation of the nanomaterials investigated.
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