首页> 美国卫生研究院文献>International Journal of Nanomedicine >A novel nanoemulsion-based method to produce ultrasmall water-dispersible nanoparticles from chitosan surface modified with cell-penetrating peptide for oral delivery of proteins and peptides
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A novel nanoemulsion-based method to produce ultrasmall water-dispersible nanoparticles from chitosan surface modified with cell-penetrating peptide for oral delivery of proteins and peptides

机译:一种基于纳米乳液的新颖方法可从壳聚糖制备超细水分散性纳米颗粒并用可穿透细胞的肽进行表面修饰以口服递送蛋白质和肽

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摘要

A simple and reproducible water-in-oil (W/O) nanoemulsion technique for making ultrasmall (<15 nm), monodispersed and water-dispersible nanoparticles (NPs) from chitosan (CS) is reported. The nano-sized (50 nm) water pools of the W/O nanoemulsion serve as “nano-containers and nano-reactors”. The entrapped polymer chains of CS inside these “nano-reactors” are covalently cross-linked with the chains of polyethylene glycol (PEG), leading to rigidification and formation of NPs. These NPs possess excessive swelling properties in aqueous medium and preserve integrity in all pH ranges due to chemical cross-linking with PEG. A potent and newly developed cell-penetrating peptide (CPP) is further chemically conjugated to the surface of the NPs, leading to development of a novel peptide-conjugated derivative of CS with profound tight-junction opening properties. The CPP-conjugated NPs can easily be loaded with almost all kinds of proteins, peptides and nucleotides for oral delivery applications. Feasibility of this nanoparticulate system for oral delivery of a model peptide (insulin) is investigated in Caco-2 cell line. The cell culture results for translocation of insulin across the cell monolayer are very promising (15%–19% increase), and animal studies are actively under progress and will be published separately.
机译:报道了一种简单且可重现的油包水(W / O)纳米乳液技术,用于从壳聚糖(CS)制备超小(<15 nm),单分散和水分散性纳米颗粒(NP)。 W / O纳米乳液的纳米级(50纳米)水池用作“纳米容器和纳米反应器”。这些“纳米反应器”内部的CS截留的聚合物链与聚乙二醇(PEG)的链共价交联,从而导致NP的刚性化和形成。这些NP在水性介质中具有过度的溶胀特性,并由于与PEG的化学交联而在所有pH范围内保持完整性。一种有效的和新开发的穿透细胞的肽(CPP)进一步化学结合到NP的表面,从而导致开发出具有深层紧密连接打开特性的CS的新型肽结合衍生物。 CPP偶联的NP可以轻松装载几乎所有种类的蛋白质,肽和核苷酸,用于口服给药。在Caco-2细胞系中研究了这种纳米颗粒系统用于口服递送模型肽(胰岛素)的可行性。胰岛素跨细胞单层转运的细胞培养结果非常有前途(增加15%至19%),动物研究也在积极进行中,将分别发表。

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