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聚乙二醇链长和磷脂酰基链组成对聚乙二醇-磷脂缀合物与磷脂相互作用的影响:对脂质体药物递送的意义

Effects of polyethyleneglycol chain length and phospholipid acyl chain composition on the interaction of polyethyleneglycol-phospholipid conjugates with phospholipid: implications in liposomal drug delivery.

作者信息

Bedu-Addo F K, Tang P, Xu Y, Huang L

机构信息

The Liposome Company, Princeton, New Jersey 08540, USA.

出版信息

Pharm Res. 1996 May;13(5):710-7. doi: 10.1023/a:1016091314940.

Abstract

PURPOSE

The purpose of this study was to investigate polyethyleneglycol(PEG)-phosphatidylethanolamine(PE) conjugate interaction with phospholipid bilayers, in an attempt to explain the dependence of liposome circulation time on formulation.

METHODS

Differential scanning calorimetry, electron microscopy, dynamic light scattering and NMR were the major methods used in the study.

RESULTS

Mixtures of PEG-phospholipid conjugates and phosphatidylcholine existed in three different physical states: a lamellar phase with components exhibiting some miscibility, a lamellar phase with components phase separated, and mixed micelles. Beyond 7 mol-percent of PEG(1,000-3,000)-dipalmitoyl phosphatidylethanolamine (DPPE), and 11 mol% PEG(5,000)-DPPE in dipalmitoyl phosphatidylcholine (DPPC), a strong tendency towards mixed micelle formation was observed. All concentrations of PEG(12,000)-DPPE and PEG(5,000)-DPPE beyond 8 mol% formed phase separated lamellae with phosphatidylcholine. Decreasing the acyl chain length from C(16:0) to C(14:0) caused a decrease in tendency towards micelle formation and phase separation. These tendencies increased upon increasing acyl chain length to C(18:0). Phase separation was at least partly due to PEG chain-chain interaction. This was supported by an increased fraction of PEG chains exhibiting a fast NMR transverse relaxation in DPPC/PEG(5,000)-DPPE mixtures as compared to that in distearoyl phosphatidylcholine (DSPC)/PEG(5,000)-dioleoyl-PE (DOPE).

CONCLUSIONS

These phenomena are discussed in relation to both bilayer and steric stabilization of liposomes, and the lack of prolonged circulation with certain formulations is discussed.

摘要

目的

本研究旨在探究聚乙二醇(PEG)-磷脂酰乙醇胺(PE)共轭物与磷脂双层的相互作用,以解释脂质体循环时间对制剂的依赖性。

方法

差示扫描量热法、电子显微镜、动态光散射和核磁共振是本研究中使用的主要方法。

结果

PEG-磷脂共轭物与磷脂酰胆碱的混合物存在三种不同的物理状态:一种是各组分表现出一定混溶性的层状相,一种是各组分相分离的层状相,以及混合胶束。在二棕榈酰磷脂酰胆碱(DPPC)中,当聚乙二醇(1000 - 3000)-二棕榈酰磷脂酰乙醇胺(DPPE)超过7摩尔百分比,以及聚乙二醇(5000)-DPPE超过11摩尔百分比时,观察到有强烈的混合胶束形成趋势。所有浓度超过8摩尔百分比的聚乙二醇(12000)-DPPE和聚乙二醇(5000)-DPPE与磷脂酰胆碱形成相分离的片层。将酰基链长度从C(16:0)降低到C(14:0)会导致胶束形成和相分离的趋势降低。当酰基链长度增加到C(18:0)时,这些趋势会增加。相分离至少部分是由于PEG链间相互作用。与在二硬脂酰磷脂酰胆碱(DSPC)/聚乙二醇(5000)-二油酰基-PE(DOPE)混合物中相比,在DPPC/聚乙二醇(5000)-DPPE混合物中表现出快速核磁共振横向弛豫的PEG链比例增加,这支持了上述观点。

结论

结合脂质体的双层和空间稳定作用对这些现象进行了讨论,并对某些制剂缺乏延长循环时间的情况进行了讨论。

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