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Cross-linked hyaluronic acid sub-micron particles: in vitro and in vivo biodistribution study in cancer xenograft model

机译:交联的透明质酸亚微米颗粒:癌症异种移植模型中的体内和体外生物分布研究

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摘要

This paper focused on the biodistribution of the cross-linked hyaluronic acid (HA-NPs) sub-micron particles in tumor-bearing mice. Solvent-non solvent method followed glutaraldehyde cross-linking utilized for the fabrication of HA-NPs. Size measurement and morphological analysis were performed by dynamic light scattering and electron microscopy, respectively and the size found to be in the range of 200-400 nm. In vitro viability in LNCaP cell line was assessed by water soluble tetrazolium assay after 24 h of exposure to sub-micron particles and no toxicity was found to higher concentration of 3 mg/mL. Internalization of particles in prostate cancer cell LNCaP were studied by confocal microscopy with FITC labeled submicron particles and involvement of hyaluronan receptor mediated uptake/endocytosis was confirmed by competitive assay. Biodistribution studies were performed in xenograft prostate cancer mice model with fluorophore labeled particles and monitored in tumoral parenchyma with strong fluorescence, meanwhile very less signal in liver, kidney and spleen while no fluorescence found in lung after 24 h of systemic administration; that shown ability of this HA based system to recognize cancer tissue. These result fetched that hyaluronic acid based system is selective for tumoral site and can be utilized to deliver bioactives in specific (targeting) and controlled (temporal) manner to cancerous tissue.
机译:本文重点研究了荷瘤小鼠中交联的透明质酸(HA-NPs)亚微米颗粒的生物分布。溶剂-非溶剂法遵循戊二醛交联用于制造HA-NPs。通过动态光散射和电子显微镜分别进行尺寸测量和形态分析,发现尺寸在200-400nm范围内。暴露于亚微米颗粒24小时后,通过水溶性四唑鎓测定法评估了LNCaP细胞系的体外生存力,发现3 mg / mL的较高浓度无毒性。通过与FITC标记的亚微米粒子的共聚焦显微镜研究了前列腺癌细胞LNCaP中粒子的内在化,并且通过竞争性测定证实了透明质酸受体介导的摄取/内吞作用的参与。在具有荧光团标记颗粒的异种移植前列腺癌小鼠模型中进行了生物分布研究,并在肿瘤实质中监测了强荧光,同时在全身性给药24小时后在肝,肾和脾中的信号极少,而在肺中未发现荧光;表明该基于HA的系统能够识别癌症组织。这些结果表明,基于透明质酸的系统对肿瘤部位具有选择性,并且可以用于以特异性(靶向)和受控(时间)方式向癌组织递送生物活性物质。

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  • 来源
    《Journal of materials science》 |2013年第6期|1473-1481|共9页
  • 作者单位

    Laboratory of Biotechnology Applied to Medical-Surgical Sciences, Department of Anaesthesiological, Surgical and Emergency Sciences, Second University of Napoli,Via Costantinopoli, 16-80138 Naples, Italy;

    Laboratory of Biotechnology Applied to Medical-Surgical Sciences, Department of Anaesthesiological, Surgical and Emergency Sciences, Second University of Napoli,Via Costantinopoli, 16-80138 Naples, Italy,Entero-Proctology Department, National Cancer Institute of Naples 'G.Pascale' Foundation, Via M. Semmola,80131 Naples, Italy;

    Laboratory of Biotechnology Applied to Medical-Surgical Sciences, Department of Anaesthesiological, Surgical and Emergency Sciences, Second University of Napoli,Via Costantinopoli, 16-80138 Naples, Italy;

    Entero-Proctology Department, National Cancer Institute of Naples 'G.Pascale' Foundation, Via M. Semmola,80131 Naples, Italy;

    Laboratory of Biotechnology Applied to Medical-Surgical Sciences, Department of Anaesthesiological, Surgical and Emergency Sciences, Second University of Napoli,Via Costantinopoli, 16-80138 Naples, Italy;

    Entero-Proctology Department, National Cancer Institute of Naples 'G.Pascale' Foundation, Via M. Semmola,80131 Naples, Italy;

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