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Corona ion deposition: A novel non-contact method for drug and gene delivery to living systems.

机译:电晕离子沉积:一种新颖的非接触式方法,用于将药物和基因传递至生物系统。

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摘要

Application of corona ions produced in air to B16F10 murine melanoma cells in vitro and in animal models resulted in the transport of molecular therapeutics across the cell membrane. This work presents the development of new methods for drug and gene delivery based upon similar principles as the traditional electrode driven membrane destabilization processes known as electroporation. This was achieved with non-contact corona ion deposition that temporarily increased the permeability of cell membranes.;Interaction of corona charge with biological cells was studied and their potential for molecular delivery was established. Molecular delivery was first demonstrated in vitro using tracer molecules followed by in vitro delivery of the cytotoxic drug bleomycin. Building upon these results, the delivery of bleomycin coincident with ion deposition was shown to significantly slow the growth of very aggressive solid tumors in animal models, compared to drug alone or no treatment. Delivery of plasmid DNA to cells in the skin of animal models indicated that application of corona ions (both positive and negative) to live tissue produced a four to six fold increase in gene expression. As this is the first significant study of the interaction and impact of corona ions on the delivery of drug and plasmid DNA to biological cells, numerous fundamental investigations were performed and discussed. A charge dose dependence was observed and physical mechanistic models were proposed. A model of cell resealing time constant following corona ion exposure was developed and demonstrated a reasonable prediction of experimental findings. The foundation laid by this work may enable continued exploration and use of corona ion deposition in the future as a new and promising physical method for drug and gene delivery.
机译:在体外和动物模型中,将空气中产生的电晕离子应用于B16F10鼠黑色素瘤细胞导致分子治疗剂跨细胞膜转运。这项工作提出了基于与传统的电极驱动的膜去稳定过程(称为电穿孔)类似的原理的新的药物和基因传递方法的开发。这是通过非接触式电晕离子沉积实现的,该沉积可暂时增加细胞膜的通透性。研究了电晕电荷与生物细胞的相互作用,并确定了它们的分子传递潜能。首先使用示踪剂分子在体外证明了分子递送,随后是细胞毒性药物博来霉素的体外递送。基于这些结果,与单独使用药物或不进行药物治疗相比,博莱霉素的递送与离子沉积同时发生,可显着减慢动物模型中非常具有侵略性的实体瘤的生长。在动物模型的皮肤中将质粒DNA递送至细胞表明,将电晕离子(阳性和阴性)应用于活组织会导致基因表达增加4至6倍。由于这是有关电晕离子对药物和质粒DNA传递至生物细胞的相互作用和影响的首次重要研究,因此进行了许多基础研究并进行了讨论。观察到电荷剂量依赖性,并提出了物理力学模型。建立了电晕离子暴露后细胞重新密封时间常数的模型,并证明了对实验结果的合理预测。这项工作奠定的基础可能使将来继续探索和使用电晕离子沉积法作为一种新的有希望的药物和基因传递物理方法。

著录项

  • 作者

    Ramachandran, Niraj.;

  • 作者单位

    University of South Florida.;

  • 授予单位 University of South Florida.;
  • 学科 Chemistry Pharmaceutical.;Engineering Chemical.;Engineering Biomedical.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 187 p.
  • 总页数 187
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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