Bastiat Guillaume, Oliger Patrick, Karlsson Göran, Edwards Katarina, Lafleur Michel
Department of Chemistry, Université de Montréal, C.P. 6128, Succ. Centre Ville, Montréal, Québec H3C 3J7, Canada.
Langmuir. 2007 Jul 3;23(14):7695-9. doi: 10.1021/la700824m. Epub 2007 Jun 12.
We present a novel formulation of non-phospholipid liposomes formed from cholesterol and palmitic acid. Despite the fact that these two lipidic species do not form individually fluid bilayers, we show that once mixed together, fluid bilayers can be obtained and, moreover, these can be extruded using classical extrusion processes to form liposomes. The chemical analysis indicates that these liposomes contain 70 mol % cholesterol, a content that is considerably higher that the saturation limit generally reported for phospholipid bilayers. These cholesterol-rich liposomes, formed with molecules that have low toxicity in vivo, display an improved impermeability relative to that of traditional phospholipid liposomes. In addition, because of the presence of palmitic acid, the stability of the liposomes is pH-dependent, and it is possible to trigger the release of encapsulated materials by pH stimuli.
我们展示了一种由胆固醇和棕榈酸形成的新型非磷脂脂质体配方。尽管这两种脂质单独不能形成流动性双层,但我们表明,一旦混合在一起,就可以获得流动性双层,而且,这些双层可以使用经典的挤压工艺挤出以形成脂质体。化学分析表明,这些脂质体含有70摩尔%的胆固醇,该含量大大高于通常报道的磷脂双层的饱和极限。这些由体内毒性低的分子形成的富含胆固醇的脂质体,相对于传统磷脂脂质体而言,显示出更好的不透性。此外,由于棕榈酸的存在,脂质体的稳定性取决于pH值,并且可以通过pH刺激触发包封材料的释放。