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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Effect of 'helper lipid' on lipoplex electrostatics
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Effect of 'helper lipid' on lipoplex electrostatics

机译:“辅助脂质”对脂质复合体静电的影响

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摘要

Lipoplexes, which are complexes between cationic liposomes (L+) and nucleic acids, are commonly used as a nucleic acid delivery system in vitro and in vivo. This study aimed to better characterize cationic liposome and lipoplex electrostatics, which seems to play a major role in the formation and the performance of lipoplexes in vitro and in vivo. We characterized lipoplexes based on two commonly used monocationic lipids, DOTAP and DMRIE, and one polycationic lipid, DOSPA-each with and without helper lipid (cholesterol or DOPE). Electrical surface potential (Psi(0)) and surface pH were determined using several surface pH-sensitive fluorophores attached either to a one-chain lipid (4-heptadecyl hydroxycoumarin (C17HC) or to the primary amino group of the two-chain lipids (1,2-dioleyl-sn-glycero-3-phosphoethanolamine-N-carboxyfluorescein (CFPE) and 1,2-dioleyl-sn-glycero-3-phosphoethanolamine-N-7-hydroxycoumarin) (HC-DOPE). Zeta potentials of the DOTAP-based cationic liposomes and lipoplexes were compared with Psi(0) determined using C17HC. The location and relatively low sensitivity of fluorescein to pH changes explains why CFPE is the least efficient in quantifying the differences between the various cationic liposomes and lipoplexes used in this study. The fact that, for all cationic liposomes studied, those containing DOPE as helper lipid have the least positive Psi(0) indicates neutralization of the cationic charge by the negatively-charged pbosphodiester of the DOPE. Zeta potential is much less positively charged than Psi(0) determined by C17HC. The electrostatics affects size changes that occurred to the cationic liposomes upon lipoplex formation. The largest size increase (based on static light scattering measurements) for all formulations occurred at DNA-V charge ratios 0.5-1. Comparing the use of the one-chain C17HC and the two-cbain HC-DOPE for monitoring lipoplex electrostatics reveals that both are suitable, as long as there is no serum (or other lipidic assemblies) present in the medium; in the latter case, only the two-chain HC-DOPE gives reliable results. Increasing NaCl concentrations decrease surface potential. Neutralization by DNA is reduced in a NaCl-concentration-dependent manner. (c) 2005 Elsevier B.V All rights reserved.
机译:脂质体复合物是阳离子脂质体(L +)与核酸之间的复合物,通常在体内和体外用作核酸递送系统。这项研究旨在更好地表征阳离子脂质体和脂质复合物的静电,这似乎在体外和体内脂质复合物的形成和性能中起着重要作用。我们基于两种常用的单阳离子脂质DOTAP和DMRIE,以及一种聚阳离子脂质DOSPA表征脂质复合物,每种脂质都有或没有辅助脂质(胆固醇或DOPE)。使用连接到单链脂质(4-十七烷基羟基香豆素(C17HC)或双链脂质的伯氨基()上的几个表面pH敏感的荧光团确定表面电势(Psi(0))和表面pH 1,2-二醇基-sn-甘油-3-磷酸乙醇胺-N-羧基荧光素(CFPE)和1,2-二醇基-sn-甘油--3-磷酸乙醇胺-N-7-羟基香豆素)(HC-DOPE)。将基于DOTAP的阳离子脂质体和脂质体与使用C17HC测定的Psi(0)进行比较。荧光素的位置和相对较低的pH值敏感性说明了为什么CFPE在定量分析各种阳离子脂质体和脂质体之间的差异时效率最低对于所有研究的阳离子脂质体,含有DOPE作为辅助脂质的脂质体的正Psi(0)最小,这一事实表明DOPE的负电性磷酸二酯对阳离子电荷的中和作用。比C17HC确定的Psi(0)充电。静电影响脂质复合物形成后阳离子脂质体发生的尺寸变化。 DNA-V电荷比为0.5-1时,所有制剂的最大尺寸增加(基于静态光散射测量)。比较一链C17HC和二链HC-DOPE用于监测脂质复合物静电的方法,发现两者都适用,只要培养基中不存在血清(或其他脂质组装体)即可。在后一种情况下,只有两链HC-DOPE才能提供可靠的结果。 NaCl浓度增加会降低表面电势。 DNA的中和作用以NaCl浓度依赖性方式减少。 (c)2005 Elsevier B.V保留所有权利。

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