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Iron Oxide (Magnetite)-Based Nanobiomaterial with Medical Applications—Environmental Hazard Assessment Using Terrestrial Model Species

机译:基于氧化铁(磁铁矿)的纳米生物材料在医学中的应用——使用陆地模式物种进行环境危害评估

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摘要

Nanobiomaterials (NBMs) have tremendous potential applications including in cancer diagnosis and treatment. However, the health and environmental effects of NBMs must be thoroughly assessed to ensure safety. Fe3O4 (magnetite) nanoparticles coated with polyethylene glycol (PEG) and poly (lactic-co-glycolic acid) (PLGA) were one of the focus NBMs within the EU project BIORIMA. Fe3O4 PEG-PLGA has been proposed to be used as a contrast agent in magnetic resonance imaging for the identification of solid tumors and has revealed low cytotoxicity in several cell lines. However, the effects of Fe3O4 PEG-PLGA have not been assessed in terrestrial environments, the eventual final sink of most materials. In the present study, the effects of Fe3O4 PEG-PLGA and its precursor, (un-coated) Fe3O4 NMs, were assessed in soil model invertebrates Enchytraeus crypticus (Oligochaeta) and Folsomia candida (Collembola). The endpoints were survival, reproduction, and size, based on the standard OECD test (28 days) and its extension (56 days). The results showed no toxicity for any of the endpoints evaluated, indicating that the NBM Fe3O4 PEG-PLGA poses no unacceptable risk to the terrestrial environment.
机译:纳米生物材料 (NBM) 具有巨大的潜在应用,包括癌症诊断和治疗。然而,必须彻底评估 NBM 对健康和环境的影响,以确保安全。涂有聚乙二醇 (PEG) 和聚(乳酸-羟基乙酸共聚物)(PLGA) 的 Fe3O4(磁铁矿)纳米颗粒是欧盟项目 BIORIMA 中的重点 NBM 之一。Fe3O4 PEG-PLGA 已被提议用作磁共振成像中的造影剂以识别实体瘤,并在几种细胞系中显示出低细胞毒性。然而,Fe3O4 PEG-PLGA 的影响尚未在陆地环境中进行评估,陆地环境是大多数材料的最终汇。在本研究中,评估了 Fe3O4 PEG-PLGA 及其前体(未涂层)Fe3O4 NMs 在土壤模型无脊椎动物 Enchytraeus crypticus (Oligochaeta) 和 Folsomia candida (弹尾虫) 中的影响。终点是生存、繁殖和大小,基于标准的 OECD 测试 (28 天) 及其延长 (56 天)。结果显示对评估的任何终点都没有毒性,表明 NBM Fe3O4 PEG-PLGA 对陆地环境没有不可接受的风险。

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