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Peptide nanovesicles: Supramolecular assembly of branched amphiphilic peptides.

机译:肽纳米囊泡:分支的两亲性肽的超分子组装。

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摘要

Peptide-based delivery systems show great potential as safer drug delivery vehicles. They overcome problems associated with lipid-based or viral delivery systems, vis-a-vis stability, specificity, inflammation, antigenicity, and tune-ability. We have designed and synthesized a set of 15 and 23-residue branched, amphiphilic peptides that mimic phosphoglycerides in molecular architecture. They undergo supramolecular self-assembly and form solvent-filled, bilayer delineated spheres with 50-150 nm diameters (confirmed by TEM and DLS). Whereas weak hydrophobic forces drive and sustain lipid bilayer assemblies, these structures are further stabilized by beta-sheet hydrogen bonding and are stable at very low concentrations and even in the presence of SDS, urea and trypsin as confirmed by circular dichroism spectroscopy. Given sufficient time, they fuse together to form larger assemblies and trap compounds of different sizes within the enclosed space. They are prepared using a protocol that is similar to preparing lipid vesicles. We have shown that different concentrations of the fluorescent dye, 5(6)-Carboxyfluorescein can be encapsulated in these assemblies and delivered into human lens epithelial cells and MCF-7 cells grown on coverslips. Besides fluorescent dyes, we have delivered the plasmid (EGFP-N3, 4.7kb) into N/N 1003A lens epithelial cells and observed expression of EGFP (in the presence and absence of a selection media). In the case of large molecules like DNA, these assemblies act as nanoparticles and offer some protection to DNA against certain nucleases. Linear peptides that lacked a branching point and other branched peptides with their sequences randomized did not show any of the lipid-like properties exhibited by the branched peptides. The peptides can be chemically decorated with target specific sequences for use as DDS for targeted delivery.
机译:基于肽的递送系统显示出作为更安全的药物递送工具的巨大潜力。他们克服了与基于脂质或病毒的输送系统,相对于稳定性,特异性,炎症,抗原性和可调性有关的问题。我们设计并合成了一组15和23个残基的分支两亲性肽,它们在分子结构中模拟磷酸甘油酯。它们经历超分子自组装,并形成直径50-150 nm(由TEM和DLS确认)的溶剂填充的双层勾画的球体。尽管微弱的疏水力驱动和维持脂质双层组件,但这些结构通过β-折叠氢键进一步稳定,并且在极低浓度下甚至在SDS,尿素和胰蛋白酶存在下也能保持稳定,如通过圆二色性光谱法所证实。如果有足够的时间,它们会融合在一起以形成更大的组件,并将不同大小的化合物捕获在封闭的空间内。使用类似于制备脂质囊泡的方案制备它们。我们已经表明,可以将浓度不同的荧光染料5(6)-羧基荧光素封装在这些组件中,并传递到盖玻片上生长的人晶状体上皮细胞和MCF-7细胞中。除荧光染料外,我们还将质粒(EGFP-N3,4.7kb)递送至N / N 1003A晶状体上皮细胞中,并观察到EGFP的表达(在有无选择培养基的情况下)。对于像DNA这样的大分子,这些组件可充当纳米颗粒,并为DNA提供一定的保护以抵抗某些核酸酶。缺乏分支点的线性肽和具有随机序列的其他分支肽不显示任何由分支肽表现出的脂质样性质。可以用靶标特异性序列对肽进行化学修饰,以用作靶向递送的DDS。

著录项

  • 作者

    Gudlur, Sushanth.;

  • 作者单位

    Kansas State University.;

  • 授予单位 Kansas State University.;
  • 学科 Chemistry Biochemistry.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 117 p.
  • 总页数 117
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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