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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Cytoplasmic delivery of calcein mediated by liposomes modified with a pH-sensitive poly(ethylene glycol) derivative
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Cytoplasmic delivery of calcein mediated by liposomes modified with a pH-sensitive poly(ethylene glycol) derivative

机译:pH敏感的聚乙二醇衍生物修饰的脂质体介导的钙黄绿素的胞质传递

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摘要

Previously, as a new type of pH-sensitive liposome, we prepared egg yolk phosphatidylcholine (EYPC) liposomes bearing succinylated poly(glycidol), that is a poly(ethylene glycol) derivative having carboxyl groups, and showed that fusion ability of the liposomes increases under weakly acidic and acidic conditions (Kono, K., Zenitani, K. and Takagishi, T. (1994) Biochim. Biophys. Acta 1193, 1–9). In this study, we examined intracellular delivery of a water-soluble molecule, calcein, mediated by the succinylated poly(glycidol)-modified liposomes. When CV-1 cells, an established line of African green monkey kidney cells, were incubated with bare EYPC liposomes containing calcein at 37°C, only weak and vesicular fluorescence of calcein was observed by using a fluorescence microscope. In contrast, the cells treated with the polymer-modified liposomes containing calcein displayed more intensive and diffuse fluorescence, indicating that calcein was transferred into the cytoplasm. Uptake of the polymer-modified liposomes by the cells was shown to decrease slightly as amount of the polymer fixed on the liposome increases. However, the fluorescence of calcein observed in the liposome-treated cell was, on the contrary, enhanced as amount of the polymer fixed on the liposome increases, indicating that the liposome modified with a higher amount of the polymer transfers its content into cytoplasm more efficiently after internalization into the cell. Fusion assay by resonance energy transfer using N-(7-nitrobenz-2-oxa-1,3-diazol-4-yl)phosphatidylethanolamine and lissamine rhodamine B-sulfonylphosphatidylethanolamine suggested occurrence of fusion between the polymer-modified liposomes and endosomal and/or lysosomal membranes. Moreover, the liposome with a higher polymer content revealed higher percent fusion after internalization into the cell. These results imply that the polymer-modified liposomes transfer the content into the cytoplasm by fusing with the endosomal membrane after internalization into the cells through an endocytic pathway.
机译:以前,作为新型的pH敏感脂质体,我们制备了带有琥珀酰化聚(缩水甘油)的蛋黄磷脂酰胆碱(EYPC)脂质体,它是具有羧基的聚(乙二醇)衍生物,并显示脂质体的融合能力提高了在弱酸性和酸性条件下(Kono,K.,Zenitani,K.和Takagishi,T.(1994)Biochim。Biophys。Acta 1193,1–9)。在这项研究中,我们检查了琥珀酰化聚缩水甘油修饰脂质体介导的水溶性分子钙黄绿素的细胞内递送。将CV-1细胞(一种建立的非洲绿猴肾细胞系)与含有钙黄绿素的EYPC裸露脂质体在37°C孵育时,使用荧光显微镜只能观察到钙黄绿素微弱的囊泡荧光。相反,用含有钙黄绿素的聚合物修饰的脂质体处理的细胞显示出更强的和扩散的荧光,表明钙黄绿素被转移到细胞质中。随着固定在脂质体上的聚合物量的增加,细胞对聚合物修饰的脂质体的摄取显示出略有减​​少。然而,相反地,在脂质体处理的细胞中观察到的钙黄绿素的荧光随着固定在脂质体上的聚合物数量的增加而增强,表明用较高数量的聚合物修饰的脂质体将其内容物更有效地转移到细胞质中。内部化后进入细胞。通过使用N-(7-硝基苯-2-氧杂-1,3-二氮杂-4-基)磷脂酰乙醇胺和lissamine罗丹明B-磺酰基磷脂酰乙醇胺的共振能量转移进行融合测定,表明聚合物修饰的脂质体与内体和/或内体和/或脂质体之间发生融合溶酶体膜。此外,具有更高聚合物含量的脂质体在内化进入细胞后显示出更高的融合百分比。这些结果暗示,在通过内吞途径内化进入细胞之后,通过与内体膜融合,聚合物修饰的脂质体将内含物转移到细胞质中。

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