首页> 外文期刊>Journal of liposome research >Towards an understanding of the release behavior of temperature-sensitive liposomes: A possible explanation of the 'pseudoequilibrium' release behavior at the phase transition temperature
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Towards an understanding of the release behavior of temperature-sensitive liposomes: A possible explanation of the 'pseudoequilibrium' release behavior at the phase transition temperature

机译:理解温度敏感脂质体的释放行为:在相变温度下“伪平衡”释放行为的可能解释

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摘要

It is generally believed that thermal sensitive liposomes (i.e. vesicles) that contain 1,2-dihexadecanoyl-sn-glycero-3-phosphocholine (DPPC) and 1,2-distearoyl-sn-glycero-3-phosphoethanolamine-N-[methoxy(polyethyleneglycol) -2000 (DSPE.2000) maintain a constant permeability to ionic molecules when they are heated to the phase transition temperature of the membrane (Tm). However, DPPC:DSPE.2000 liposome systems have been reported to release encapsulated agent in a "pseudoequilibrium" pattern upon temperature rise, whereby there is a rapid release of encapsulated material followed by no further release. Little effort has been made to determine the mechanism of such release behavior. We aim to explore the potential cause of "pseudoequilibrium" release of DPPC:DSPE.2000 liposome systems in response to temperature rise. Using calcein as a hydrophilic marker, the release pattern of DPPC:DSPE.2000 liposome system at Tm has been carefully determined. The potential mechanism of its release behavior has been further explored using two novel assays (i.e. heating-cooling-reheating assay and incubation assay). Our results show that there is a dramatic enhancement of the permeability of DPPC:DSPE.2000 vesicles to ionized molecules (i.e. calcein) during the initial period of heating to 42°C. This is believed to result from the opening of the hydrophilic pores at the liquid/solid interface. However, after less than 2min of incubation at this temperature, no further release of calcein is observed, suggesting that the sizes of pores are reduced, restricting any further movement of calcein molecules. On cooling and reheating the DPPC:DSPE.2000 liposomes to 42°C, no further release of calcein is observed. The incorporation of MSPC (1-stearoyl-2-hydroxy-sn-glycero-3-phosphocholine) extends the release period of calcein from the DPPC:MSPC:DSPE.2000 vesicles to more than 30min, suggesting that the lysolipid stabilizes the pores in the lipid membrane.
机译:通常认为,热敏脂质体(即囊泡)包含1,2-二十六烷酰基-sn-甘油-3-磷酸胆碱(DPPC)和1,2-二硬脂酰基-sn-甘油-3-磷酸乙醇胺-N- [甲氧基(聚乙二醇-2000(DSPE.2000)在加热到膜的相变温度(Tm)时对离子分子保持恒定的渗透性。然而,据报道,DPPC:DSPE.2000脂质体系统在温度升高时会以“伪平衡”模式释放被包封的物质,从​​而使被包封的材料迅速释放,然后不再释放。几乎没有努力确定这种释放行为的机理。我们旨在探讨响应温度升高而释放DPPC:DSPE.2000脂质体系统的“假平衡”的潜在原因。使用钙黄绿素作为亲水性标记,已仔细确定了DPPC:DSPE.2000脂质体系统在Tm的释放模式。使用两种新颖的测定法(即加热-冷却-再加热测定法和温育测定法)进一步探索了其释放行为的潜在机理。我们的结果表明,在加热至42°C的初始阶段,DPPC:DSPE.2000囊泡对离子化分子(即钙黄绿素)的渗透性显着提高。据信这是由于在液体/固体界面处的亲水性孔的开放而引起的。但是,在此温度下孵育不到2分钟后,未观察到钙黄绿素的进一步释放,这表明孔的大小减小了,从而限制了钙黄绿素分子的任何进一步移动。将DPPC:DSPE.2000脂质体冷却并重新加热至42°C后,未观察到钙黄绿素的进一步释放。 MSPC(1-stearoyl-2-hydroxy-sn-glycero-3-phosphocholine)的掺入将钙黄绿素从DPPC:MSPC:DSPE.2000囊泡的释放期延长至30分钟以上,表明溶血脂可稳定毛细血管。脂质膜。

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