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Dual modified liposomes for drug and gene delivery to brain.

机译:双重修饰脂质体,用于将药物和基因传递到大脑。

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摘要

The overall goal of our research was to design a vector for efficient delivery of therapeutic genes/drugs to brain. Specifically, this research work was focused on designing PEGylated liposomes surface modified with the receptor targeting protein, transferrin and cell penetrating peptides (CPPs) for targeting and improving the delivery of desired therapeutic agent to brain. Various CPPs including poly-L-arginine, TAT, Penetratin and Mastoparan were investigated for their influence on transport of transferrin receptor targeted liposomes across brain endothelial cells. The dual-modified liposomes were synthesized using thin film hydration and post-insertion technique. The biocompatibility of the liposomes was evaluated at increasing concentrations to obtain an optimum value for safe and effective delivery of drugs or genes. The liposomes showed excellent cellular, blood and tissue compatibility at the optimized concentration. In addition, the combination of targeting ligand transferrin and CPPs resulted in considerable translocation of the therapeutic agent across cellular and brain endothelial barriers both in vitro and in vivo.;Among different Tf-CPP liposomes, the Tf-Penetratin liposomes showed maximum translocation of the drug across the brain endothelial barrier (approximately 15% across in vitro and 4% across in vivo BBB) and efficient cellular transport of the encapsulated drug (approximately 90-98%) in various cell lines. In addition, Tf-poly-L-arginine and Tf-Penetratin liposomes showed improved transfection efficiencies in various cell lines. The Tf-Penetratin and Tf-TAT liposomes demonstrated excellent cellular biocompatibility and no hemolytic activity upto 200nM phospholipid concentration. In vivo efficacy of the liposomes was evaluated by performing biodistribution studies in in adult Sprague Dawley rats. The liposomes were intended for delivery of small molecule drug, doxorubicin and pDNA to brain. The dual modified liposomes showed significantly (p<0.05) higher transport of encapsulated agents in rat brain as compared to single ligand (Tf) or plain liposomes. Histological examination of the tissues, from various organs, did not show any signs of toxicity including necrosis, inflammation, fibrosis etc. The study underlines the potential of bifunctional liposomes as high-efficiency and low-toxicity gene delivery system for the treatment of central nervous system disorders.
机译:我们研究的总体目标是设计一种载体,以将治疗性基因/药物有效地递送至大脑。具体而言,这项研究工作集中在设计经受体靶向蛋白,转铁蛋白和细胞穿透肽(CPP)表面修饰的聚乙二醇化脂质体,以靶向和改善所需治疗剂向大脑的递送。研究了各种CPPs,包括聚L-精氨酸,TAT,Penetratin和Mastoparan,它们对转铁蛋白受体靶向脂质体跨脑内皮细胞运输的影响。使用薄膜水化和插入后技术合成了双修饰脂质体。在增加的浓度下评估脂质体的生物相容性,以获得安全有效地递送药物或基因的最佳值。在最佳浓度下,脂质体显示出优异的细胞,血液和组织相容性。另外,靶向配体转铁蛋白和CPP的组合导致治疗剂在体外和体内跨细胞和脑内皮屏障的相当大的移位。在不同的Tf-CPP脂质体中,Tf-戊四烯酸脂质体显示出最大的移位。药物穿过脑内皮屏障(体外约占15%,体内BBB约占4%),并在各种细胞系中有效地对封装的药物进行细胞转运(约90-98%)。另外,Tf-聚-L-精氨酸和Tf-戊四烯酸脂质体在各种细胞系中显示出改善的转染效率。 Tf-Pettratin和Tf-TAT脂质体表现出优异的细胞生物相容性,在200nM磷脂浓度下均无溶血活性。通过在成年的Sprague Dawley大鼠中进行生物分布研究来评估脂质体的体内功效。脂质体旨在将小分子药物,阿霉素和pDNA递送至大脑。与单配体(Tf)或纯脂质体相比,双重修饰的脂质体在大鼠脑中显示出明显更高的包封剂转运(p <0.05)。对来自各个器官的组织进行组织学检查未显示任何毒性迹象,包括坏死,炎症,纤维化等。该研究强调了双功能脂质体作为治疗中枢神经的高效和低毒性基因递送系统的潜力。系统障碍。

著录项

  • 作者

    Sharma, Gitanjali.;

  • 作者单位

    North Dakota State University.;

  • 授予单位 North Dakota State University.;
  • 学科 Health Sciences Pharmacy.;Health Sciences Pharmacology.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 184 p.
  • 总页数 184
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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