首页> 美国卫生研究院文献>Biochemical Journal >Interference of poly(ethylene glycol)-lipid analogues with cationic-lipid-mediated delivery of oligonucleotides; role of lipid exchangeability and non-lamellar transitions.
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Interference of poly(ethylene glycol)-lipid analogues with cationic-lipid-mediated delivery of oligonucleotides; role of lipid exchangeability and non-lamellar transitions.

机译:聚(乙二醇)-脂质类似物对阳离子-脂质介导的寡核苷酸递送的干扰;脂质交换和非层状转变的作用。

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摘要

Cationic liposomes are applied to transfer oligonucleotides (ODNs) into cells to regulate gene expression for gene therapeutic or cell biological purposes. In vivo, poly(ethylene glycol) (PEG)-lipid derivatives are employed to stabilize and prolong the circulation lifetime of nucleic acid-containing particles, and to improve targeting strategies. In this study, we have studied the effects of PEG-lipid analogues, i.e. PEG coupled to either phosphatidylethanolamine (PE) or ceramide, on cationic-lipid-DNA complex ('lipoplex') assembly and the mechanism of cationic-lipid-mediated delivery of ODNs in vitro. Inclusion of 10 mol% PEG-PE in ODN lipoplexes inhibited their internalization in Chinese hamster ovary cells by more than 70%. The intracellular fraction remained entrapped in the endosomal/lysosomal pathway, and no release of ODNs was apparent. Similar observations were made for complexes prepared from liposomes that contained PEG-ceramides. Interestingly, delivery resumed when lipoplexes had been externally coated with PEG-ceramides. In this case, the kinetics of delivery were dependent on the length of the ceramide acyl chain, consistent with a requirement for the PEG-lipid to dissociate from the complex. Moreover, although the chemical nature of the PEG-ceramides distinctly affected the net internalization of the complexes, impediment of delivery was largely related to an inhibitory effect of the PEG-lipid on the release of ODNs from the endosomal compartment. Cryo-electron microscopy and small-angle X-ray scattering revealed that the PEG-lipids stabilize the lamellar phase of the lipoplexes, while their acyl-chain-length-dependent transfer from the complex enables adaptation of the hexagonal phase. Within the endosomal compartment, this transition appears to be instrumental in causing the dissociation and cytosolic release of the ODNs for their nuclear homing.
机译:阳离子脂质体可用于将寡核苷酸(ODN)转移到细胞中,以调节基因的表达,从而达到基因治疗或细胞生物学目的。在体内,聚(乙二醇)(PEG)-脂质衍生物用于稳定和延长含核酸颗粒的循环寿命,并改善靶向策略。在这项研究中,我们研究了PEG-脂质类似物,即PEG与磷脂酰乙醇胺(PE)或神经酰胺偶联,对阳离子-脂质-DNA复合物('lipoplex')组装的影响以及阳离子-脂质介导的递送机制体外ODNs。在ODN脂质复合物中包含10 mol%PEG-PE抑制了它们在中国仓鼠卵巢细胞中的内在化,超过70%。细胞内部分保留在内体/溶酶体途径中,并且没有明显的ODN释放。对于由含有PEG-神经酰胺的脂质体制备的复合物也有类似的观察。有趣的是,当脂质复合物已被PEG-神经酰胺外部包被时,恢复了递送。在这种情况下,递送动力学取决于神经酰胺酰基链的长度,这与PEG-脂质从复合物中解离的要求是一致的。而且,尽管PEG-神经酰胺的化学性质明显影响复合物的净内在化,但是递送的障碍很大程度上与PEG-脂质对ODN从内体区室释放的抑制作用有关。低温电子显微镜和小角度X射线散射表明,PEG-脂质可稳定脂复合物的层状相,而它们从复合物中的酰基链长度依赖性转移可使其适应六方相。在内体区室中,这种转变似乎有助于导致ODN的解离和胞质释放,从而使其核归巢。

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