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pH敏感、血清稳定且具有长循环特性的脂质体作为一种新型药物递送系统。

pH-sensitive, serum-stable and long-circulating liposomes as a new drug delivery system.

作者信息

Hong Myo-Sook, Lim Soo-Jeong, Oh Yu-Kyoung, Kim Chong-Kook

机构信息

College of Pharmacy, Seoul National University, Kwanak-Gu, South Korea.

出版信息

J Pharm Pharmacol. 2002 Jan;54(1):51-8. doi: 10.1211/0022357021771913.

Abstract

The lack of stability in blood and the short blood circulation time of pH-sensitive liposomes are major drawbacks for their application in-vivo. To develop pH-sensitive, serum-stable and long-circulating liposomes as drug delivery systems, the impact of polyethylene glycol-derived phosphatidylethanolamine (DSPE-PEG) on the properties of pH-sensitive liposomes was investigated. pH-sensitive liposomes were prepared with dioleoylphosphatidylethanolamine (DOPE) and oleic acid (DOPE/oleic acid liposome) or DOPE and 1,2-dipalmitoylsuccinylglycerol (DOPE/DPSG liposome). The inclusion of DSPE-PEG enhanced the serum stability of both DOPE/oleic acid and DOPE/DPSG liposomes, but also shifted the pH-response curve of pH-sensitive liposomes to more acidic regions and reduced the maximum leakage percentage. The impact of DSPE-PEG, however, was much lower in the DOPE/DPSG liposomes than in the DOPE/oleic acid liposomes. In tumour tissue homogenates, where the pH is lower than normal healthy tissues, the pH-sensitive DOPE/DPSG liposomes released the entrapped markers rapidly, in comparison with pH-insensitive dipalmitoylphosphatidylcholine/cholesterol/DSPE-PEG liposomes. Moreover, the release rate was not affected by the content of DSPE-PEG. The blood circulation time of methotrexate incorporated in DOPE/UDPSG liposomes was significantly prolonged with increasing content of DSPE-PEG. Taken together, the liposomes composed of DOPE, DPSG and DSPE-PEG (up to 5%) were pH sensitive, plasma stable and had a long circulation time in the blood. The complete destabilization of the liposomes at tumour tissues suggests that the liposomes might be useful for the targeted delivery of drugs such as anticancer agents.

摘要

血液中缺乏稳定性以及pH敏感脂质体的血液循环时间短是其体内应用的主要缺点。为了开发作为药物递送系统的pH敏感、血清稳定且循环时间长的脂质体,研究了聚乙二醇衍生的磷脂酰乙醇胺(DSPE - PEG)对pH敏感脂质体性质的影响。用二油酰磷脂酰乙醇胺(DOPE)和油酸制备pH敏感脂质体(DOPE/油酸脂质体)或DOPE和1,2 - 二棕榈酰琥珀酰甘油(DOPE/DPSG脂质体)。DSPE - PEG的加入增强了DOPE/油酸和DOPE/DPSG脂质体的血清稳定性,但也将pH敏感脂质体的pH响应曲线向更酸性区域移动,并降低了最大渗漏百分比。然而,DSPE - PEG对DOPE/DPSG脂质体的影响远低于对DOPE/油酸脂质体的影响。在pH低于正常健康组织的肿瘤组织匀浆中,与pH不敏感的二棕榈酰磷脂酰胆碱/胆固醇/DSPE - PEG脂质体相比,pH敏感的DOPE/DPSG脂质体迅速释放包封的标记物。此外,释放速率不受DSPE - PEG含量的影响。随着DSPE - PEG含量的增加,DOPE/UDPSG脂质体中掺入的甲氨蝶呤的血液循环时间显著延长。综上所述,由DOPE、DPSG和DSPE - PEG(高达5%)组成的脂质体具有pH敏感性、血浆稳定性且在血液中循环时间长。脂质体在肿瘤组织处完全去稳定化表明该脂质体可能有助于抗癌药物等药物的靶向递送。

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