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脂质体包裹顺铂与生物分子的相互作用。

Interaction of liposome-encapsulated cisplatin with biomolecules.

机构信息

Department of Chemistry and Biochemistry, Kennesaw State University, Kennesaw, GA 30144-5591, USA.

出版信息

J Biol Inorg Chem. 2012 Aug;17(6):899-910. doi: 10.1007/s00775-012-0907-y. Epub 2012 Jun 7.

Abstract

We prepared liposomes by hydrating 1,2-dioleoyl-sn-glycero-3-phosphocholine lipid with aqueous solutions of three "probe" molecules-cis-diamminedichloroplatinum(II) (cis-[Pt(II)(NH(3))(2)Cl(2)], cisplatin), guanosine 5'-monophosphate (5'-GMP), and 9-ethylguanine (9-EtG)-in phosphate-buffered saline as well as N-(2-hydroxyethyl)piperazine-N'-ethanesulfonic acid buffer. The positively charged hydrolysis product of cisplatin, Pt(II)(NH(3))(2)Cl(H(2)O), is in the inner core of the liposomes and negatively charged 5'-GMP embeds in the lipid bilayer of liposomes. In the presence of cisplatin, the size of the liposomes remains unchanged, and for 5'-GMP-embedded liposomes the size increases significantly compared with that of empty or control liposomes. In contrast, the neutral biomolecule 9-EtG was found to be dispersed in the exterior bulk water and the size of the liposomes remained the same as that of empty or control liposomes. When cisplatin-containing liposomes mix with 5'-GMP-embedded liposomes or liposomes with 9-EtG, the N7 nitrogen atom of 5'-GMP or 9-EtG binds the cisplatin, thus replacing the "leaving groups" and forming a bisadduct. After 48 h of mixing, the size of the liposomes changes for the mixture of 5'-GMP-embedded liposomes and cisplatin-containing liposomes. We used (1)H and (31)P NMR spectroscopic techniques to monitor incorporation or association of cisplatin and biomolecules with liposomes and their subsequent reactions with each other. The dynamic light scattering technique provided the size distribution of the liposomes in the presence and absence of probe molecules.

摘要

我们通过将 1,2-二油酰基-sn-甘油-3-磷酸胆碱脂质用水溶液水化,制备了脂质体,其中含有三种“探针”分子-顺式-二氨二氯铂(II)(顺-[Pt(II)(NH(3))(2)Cl(2)],顺铂),鸟苷 5'-单磷酸(5'-GMP)和 9-乙基鸟嘌呤(9-EtG)-在磷酸盐缓冲盐水以及 N-(2-羟乙基)哌嗪-N'-乙磺酸缓冲液中。顺铂的带正电荷的水解产物[Pt(II)(NH(3))(2)Cl(H(2)O)](+)位于脂质体的内核中,带负电荷的 5'-GMP 嵌入脂质体的脂质双层中。在顺铂存在下,脂质体的大小保持不变,而对于嵌入 5'-GMP 的脂质体,与空或对照脂质体相比,其大小显着增加。相比之下,中性生物分子 9-EtG 被发现分散在外部大体积水中,并且脂质体的大小与空或对照脂质体相同。当含有顺铂的脂质体与嵌入 5'-GMP 的脂质体或含有 9-EtG 的脂质体混合时,嵌入 5'-GMP 或 9-EtG 的 N7 氮原子与顺铂结合,从而取代“离去基团”并形成双加合物。在混合 48 小时后,嵌入 5'-GMP 的脂质体与含有顺铂的脂质体混合物的脂质体的大小发生变化。我们使用(1)H 和(31)P NMR 光谱技术来监测顺铂和生物分子与脂质体的结合或缔合,以及它们彼此之间的后续反应。动态光散射技术提供了存在和不存在探针分子时脂质体的大小分布。

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