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Cellular-uptake behavior of polymer nanoparticles into consideration of biosafety

机译:考虑到生物安全性的聚合物纳米粒子的细胞摄取行为

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摘要

Nanoparticles have tremendous potential in cancer prevention, detection and augmenting existing treatments. They can target tumors, carry imaging capability to document the presence of tumors, sense pathophysiological defects in tumor cells, deliver therapeutic genes or drugs based on the tumor characteristics, respond to external triggers to release an appropriate agent, document the tumor response, and identify the residual tumor cells. Nanoparticles < 30 nanometers in diameter show unexpected and unique properties. Furthermore, particles < 5 nanometers in size can easily penetrate cells as well as living tissues and organs. This study evaluated the safety of nano materials in a living body and the relationship between the living tissue and synthetic nano materials by examining thein-vitro cytotoxicity of poly(lactic-co-glycolic) acid (PLGA) nano-spheres and fluorescein isothiocynate(FITC)-labeled dendrimers as polymeric nanoparticles. PLGA was chosen because it has been used extensively for biodegradable nanoparticles on account of its outstanding bio-compatibility and its acceptance as an FDA approved material. The dendrimer was chosen because it can carry a molecule that recognizes cancer cells, a therapeutic agent that can kill those cells, and a molecule that recognizes the signals of cell death. Cytotoxicity in L929 mouse fibroblasts was monitored using MTT assay. Microscopic observations were also carried out to observe cell growth. All assays yielded meaningful results and the PLGA nanoparticles showed less cytotoxicity than the dendrimer. These nanoparticles ranged in size from 10 to 100 nm according to microscopy and spectroscopic methods.
机译:纳米颗粒在预防,发现和增强现有治疗方法方面具有巨大潜力。它们可以靶向肿瘤,具有成像能力以记录肿瘤的存在,感知肿瘤细胞中的病理生理缺陷,根据肿瘤特征提供治疗基因或药物,对外部触发物做出反应以释放合适的药物,记录肿瘤反应并确定残留的肿瘤细胞。直径小于30纳米的纳米颗粒表现出出乎意料的独特性能。此外,尺寸小于5纳米的颗粒可以轻松穿透细胞以及活组织和器官。本研究通过检查聚乳酸-乙醇酸(PLGA)纳米球和异硫氰酸荧光素(FITC)的体外细胞毒性,评估了纳米材料在生物体内的安全性以及生物组织与合成纳米材料之间的关系。 )标记的树枝状聚合物为高分子纳米颗粒。之所以选择PLGA,是因为其出色的生物相容性和被FDA批准的材料被接受,已被广泛用于可生物降解的纳米颗粒。选择树状聚合物是因为它可以携带识别癌细胞的分子,可以杀死那些细胞的治疗剂以及识别细胞死亡信号的分子。使用MTT测定法监测L929小鼠成纤维细胞的细胞毒性。还进行了显微镜观察以观察细胞生长。所有测定均产生有意义的结果,并且PLGA纳米颗粒显示出比树状大分子更低的细胞毒性。根据显微镜和光谱法,这些纳米颗粒的尺寸为10至100nm。

著录项

  • 来源
    《Macromolecular Research》 |2008年第8期|695-703|共9页
  • 作者单位

    Department of Polymer Science and Engineering Sungkyunkwan University 440-746 Suwon Korea;

    Department of Polymer Science and Engineering Sungkyunkwan University 440-746 Suwon Korea;

    Department of Polymer Science and Engineering Sungkyunkwan University 440-746 Suwon Korea;

    Department of Polymer Science and Engineering Sungkyunkwan University 440-746 Suwon Korea;

    Department of Chemical Engineering Sungkyunkwan University 440-746 Suwon Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    PLGA; dendrimer; cytotoxicity; nano particle safety;

    机译:PLGA;树状大分子;细胞毒性;纳米颗粒安全性;

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