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Surface Functionalized Cationic Lipid-DNA Complexes for Gene Delivery: PEGylated Lamellar Complexes Exhibit Distinct DNA-DNA Interaction Regimes

机译:用于基因传递的表面功能化阳离子脂质-DNA复合物:聚乙二醇化层状复合物表现出不同的DNA-DNA相互作用机制。

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摘要

Cationic lipid-DNA (CL-DNA) complexes are abundantly used in nonviral gene therapy clinical applications. Surface functionality is the next step in developing these complexes as competent, target-specific gene carriers. Poly(ethylene glycol) (PEG) is the natural choice to serve as a protective coat or act as a tether for a specific ligand on the surface of these complexes due to its biocompatibility and ability to convey stealth-like properties. Understanding the effect of PEG on the internal structure and surface properties of CL-DNA complexes is essential in developing vectors with more complex derivatives of PEG, such as Arg-Gly-Asp (RGD)-based peptide-PEG-lipids. We report on x-ray diffraction studies to probe the internal structure of CL-DNA complexes consisting of a ternary mixture of cationic lipids, neutral lipids, and PEG-lipids. The PEG-coated complexes are found to exhibit a structure consistent with the lamellar phase. In addition, three distinct DNA interchain interaction regimes were found to exist, due to a), repulsive long-range electrostatic forces; b), short-range repulsive hydration forces; and c), novel polymer-induced depletion attraction forces in two dimensions. Optical microscopy and reporter gene assays further demonstrate the incorporation of the PEG-lipids into the lamellar CL-DNA complexes under biologically relevant conditions, revealing surface modification. Both techniques show that PEG-lipids with a polymer chain of molecular weight 400 do not provide adequate shielding of the PEGylated CL-DNA complexes, whereas PEG-lipids with a polymer chain of molecular weight 2000 confer stealth-like properties. This surface functionalization is a crucial initial step in the development of competent vectors for in vivo systemic gene delivery and suggests that a second type of surface functionality can be added specifically for targeting by the incorporation of peptide-PEG-lipids.
机译:阳离子脂质-DNA(CL-DNA)复合物已广泛用于非病毒基因疗法的临床应用中。表面功能是将这些复合物开发为有能力的,靶标特异性的基因载体的下一步。聚乙二醇(PEG)由于具有生物相容性和传达隐身性质的能力,因此是用作这些复合物表面上特定配体的保护层或充当系链的自然选择。在开发具有更复杂的PEG衍生物(例如基于Arg-Gly-Asp(RGD)的肽-PEG-脂质)的载体时,了解PEG对CL-DNA络合物的内部结构和表面性质的影响至关重要。我们报告了x射线衍射研究,以探测由阳离子脂质,中性脂质和PEG-脂质的三元混合物组成的CL-DNA复合物的内部结构。发现PEG包被的复合物表现出与层状相一致的结构。此外,由于以下原因,发现存在三种不同的DNA链间相互作用机制: b),短程斥水力; c)二维的新型聚合物诱导的耗尽吸引力。光学显微镜和报道基因测定进一步证实了在生物学相关条件下PEG-脂质掺入层状CL-DNA复合物中,揭示了表面修饰。两种技术均表明,具有分子量为400的聚合物链的PEG-脂质不能为PEG化的CL-DNA复合物提供足够的保护,而分子量为2000的聚合物链的PEG-脂质具有隐身性。该表面功能化是开发体内体内基因递送的有效载体的关键的初始步骤,并且表明可以通过掺入肽-PEG-脂质而特异性地添加第二种类型的表面功能以用于靶向。

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