首页> 外文期刊>Journal of liposome research >Transfer of a lipophilic drug (temoporfin) between small unilamellar liposomes and human plasma proteins: Influence of membrane composition on vesicle integrity and release characteristics
【24h】

Transfer of a lipophilic drug (temoporfin) between small unilamellar liposomes and human plasma proteins: Influence of membrane composition on vesicle integrity and release characteristics

机译:亲脂性药物(替莫泊芬)在单层小脂质体和人血浆蛋白之间的转移:膜成分对囊泡完整性和释放特性的影响

获取原文
获取原文并翻译 | 示例
           

摘要

The introduction of PEG lipid conjugates into lipid bilayers leads to long circulating liposomes with improved pharmacokinetics and pharmacodynamics characteristics. The concentration range of PEG-lipids is limited by their micelle forming properties. We investigated two phosphatidyl oligoglycerols as potential alternatives to PEG-lipid conjugates and compared their micelle forming properties after incorporation of increasing amounts of oligoglycerols into gel-phase liposomes via cryo-transmission electron microscopy. The incorporation of highly hydrophobic drugs into liposomes makes water soluble formulations possible and improves the therapeutic properties of the drug. We incorporated the hydrophobic photosensitizer temoporfin into liposomes varying in membrane fluidity and nature of surface modifying agents. The main purpose of this study was the investigation of liposome integrity and temoporfin incorporation stability in the presence of plasma. After incubation of temoporfin-loaded liposomes with human plasma for different time intervals, liposomes and the single lipoprotein fractions were separated via size-exclusion chromatography. Liposome stability and temoporfin distribution profile over the lipoprotein fractions were determined with the help of a non-exchangeable 3H-lipid label and 14C-labeled temoporfin. The results demonstrate that both oligoglycerols are suitable alternatives to PEG-lipid conjugates because of the lack of micelle forming properties, comparable liposome stability, and a reduced temoporfin transfer rate compared to PEG-lipids. Furthermore, the incorporation stability of temoporfin is-at least to some extent-influenced by membrane fluidity, indicating that fluid membranes may be better suited for retention of lipophilic drugs.
机译:将PEG脂质缀合物引入脂质双层中导致具有改善的药代动力学和药效学特性的长循环脂质体。 PEG-脂质的浓度范围受其胶束形成特性的限制。我们研究了两种磷脂酰低聚甘油作为PEG-脂质缀合物的潜在替代物,并比较了通过低温透射电子显微镜将越来越多的低聚甘油掺入凝胶相脂质体后它们的胶束形成特性。将高疏水性药物掺入脂质体中使水溶性制剂成为可能,并改善了药物的治疗性能。我们将疏水性光敏剂替莫泊芬掺入脂质体中,这些脂质体的膜流动性和表面改性剂的性质各不相同。这项研究的主要目的是研究血浆中脂质体的完整性和替莫泊芬的掺入稳定性。将载有替莫泊芬的脂质体与人血浆孵育不同的时间间隔后,通过尺寸排阻色谱法分离脂质体和单个脂蛋白组分。借助不可交换的3H-脂质标记和14C标记的替莫泊芬,测定脂质体上脂质体的稳定性和替莫泊芬在脂蛋白组分上的分布情况。结果表明,由于与PEG-脂质相比缺乏胶束形成特性,可比的脂质体稳定性和降低的替莫泊芬转移速率,两种低聚甘油都是PEG-脂质缀合物的合适替代物。此外,替莫泊芬的掺入稳定性至少在某种程度上受膜流动性的影响,表明流体膜可能更适合保留亲脂性药物。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号