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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Preparation and stability of lipid-coated nanocapsules of cisplatin: anionic phospholipid specificity
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Preparation and stability of lipid-coated nanocapsules of cisplatin: anionic phospholipid specificity

机译:顺铂脂质包覆纳米胶囊的制备及稳定性:阴离子磷脂特异性

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摘要

Cisplatin nanocapsules represent a novel lipid formulation of the anti-cancer drug cis-diamminedichloroplatinum(II) (cisplatin), in which nanoprecipitates of cisplatin are coated by a phospholipid bilayer consisting of a 1:1 mixture of zwitterionic phosphatidylcholine (PC) and negatively charged phosphatidylserine (PS). Cisplatin nanocapsules are characterized by an unprecedented cisplatin-to-lipid ratio and exhibit increased in vitro cytotoxicity compared to the free drug [Nat. Med. 8, (2002) 81]. In the present study, the stability of the cisplatin nanocapsules was optimized by varying the lipid composition of the bilayer coat and monitoring in vitro cytotoxicity and the release of contents during incubations in water and in mouse serum. The release of cisplatin from the PC/PS (1:1) nanocapsules in water increased with increasing temperature with a t1/2 of 6.5 h at 37 ℃. At 4 ℃, cisplatin was retained in the nanocapsules for well over 8 days. Replacement of PS by either phosphatidylglycerol or phosphatidic acid revealed that nanocapsules prepared of PS were more stable, which was found to be due to the ability of PS to form a stable cisplatin–PS coordination complex. Mouse serum had a strong destabilizing effect on the cisplatin nanocapsules. The PC/PS formulation lost over 80% of cisplatin within minutes after resuspension in serum. Incorporation of poly(ethylene glycol 2000) (PEG)-derivatized phosphatidylethanolamine and cholesterol in the bilayer coat extended the lifetime of the cisplatin nanocapsules in mouse serum to almost an hour. The results demonstrate that specificity in the interaction of cisplatin with anionic phospholipids is an important criterium for the formation and stability of cisplatin nanocapsules.
机译:顺铂纳米胶囊代表了一种新型的抗癌药顺式-二氨二氯铂(II)脂质制剂,其中顺铂的纳米沉淀被一层由两性离子磷脂酰胆碱(PC)1:1混合物和负电荷组成的磷脂双层包裹磷脂酰丝氨酸(PS)。顺铂纳米胶囊的特征在于前所未有的顺铂与脂质之比,与游离药物相比,其体外细胞毒性增加。中8(2002)81]。在本研究中,通过改变双层涂层的脂质组成并监测在水中和小鼠血清中孵育期间的体外细胞毒性和内含物的释放,来优化顺铂纳米胶囊的稳定性。顺铂从PC / PS(1:1)纳米胶囊在水中的释放随温度的升高而增加,在37℃下t1 / 2为6.5 h。在4℃下,顺铂在纳米胶囊中保留了8天以上。用磷脂酰甘油或磷脂酸替代PS可以发现PS制备的纳米胶囊更稳定,这是由于PS能够形成稳定的顺铂-PS配位复合物。小鼠血清对顺铂纳米胶囊具有很强的去稳定作用。重悬于血清后几分钟内,PC / PS制剂损失了80%以上的顺铂。在双层涂层中掺入聚(乙二醇2000)(PEG)衍生的磷脂酰乙醇胺和胆固醇可将顺铂纳米胶囊在小鼠血清中的寿命延长到将近一个小时。结果表明,顺铂与阴离子磷脂相互作用的特异性是顺铂纳米胶囊形成和稳定性的重要标准。

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