Awasthi V D, Garcia D, Klipper R, Goins B A, Phillips W T
Department of Radiology, University of Texas Health Science Center at San Antonio, 7703 Floyd Curl Drive, San Antonio, TX 78229-3900, USA.
J Pharmacol Exp Ther. 2004 Apr;309(1):241-8. doi: 10.1124/jpet.103.060228. Epub 2004 Jan 12.
To prepare long-circulating liposomes, poly(ethylene glycol) (PEG)-lipid is usually mixed with other lipid components before vesicle formation. PEG-lipids can also be postinserted in the outer layer of liposomes after the preparation. In this study, PEG-distearoylphosphatidylethanolamine was incorporated by postinsertion technique into liposome-encapsulated hemoglobin (LEH) carrying neutral or negative charge. Postinsertion technique improved the encapsulation efficiency of hemoglobin from about 0.0017 to 0.017 (hemoglobin/phospholipid, molar ratio) for a similar lipid composition. Thus, neutral, anionic, PEG-neutral, and PEG-anionic LEHs were made and labeled with technetium-99m to follow their biodistribution. A small dose of LEH (approximately 15 mg of phospholipid) was injected intravenously in rabbits, and its distribution was monitored by blood sampling, gamma camera imaging, and tissue radioactivity counting on necropsy. The 24-h blood levels of neutral, PEG-neutral, anionic, and PEG-anionic LEHs were 14, 40.3, 13.1, and 35.7% of injected dose, respectively; calculated T(1/2) values of circulation were 8.9, 19.3, 9.6, and 16.5 h, respectively. PEGylation also influenced accumulation of LEH in the reticuloendothelial system. Liver uptake of neutral LEH dropped from 52.1 to 19.1%, whereas that of anionic LEH came down from 35.3 to 11.5% on PEGylation. In contrast, PEGylation increased the spleen uptake by 8.5- and 2.5-fold for neutral and anionic LEH, respectively. The results demonstrate that PEGylation by postinsertion not only improves the circulation t1/2 of LEH but also enhances hemoglobin content inside the vesicles for better oxygen-carrying capacity.
为制备长循环脂质体,聚乙二醇(PEG)-脂质通常在囊泡形成前与其他脂质成分混合。PEG-脂质也可在制备后插入脂质体的外层。在本研究中,通过后插入技术将PEG-二硬脂酰磷脂酰乙醇胺掺入携带中性或负电荷的脂质体包裹血红蛋白(LEH)中。对于相似的脂质组成,后插入技术将血红蛋白的包封效率从约0.0017提高到0.017(血红蛋白/磷脂,摩尔比)。因此,制备了中性、阴离子、PEG-中性和PEG-阴离子LEH并用99m锝标记以追踪其生物分布。给兔子静脉注射小剂量的LEH(约15mg磷脂),通过采血、γ相机成像和尸检时的组织放射性计数监测其分布。中性、PEG-中性、阴离子和PEG-阴离子LEH的24小时血药浓度分别为注射剂量的14%、40.3%、13.1%和35.7%;计算得到的循环半衰期(T(1/2))值分别为8.9小时、19.3小时、9.6小时和16.5小时。聚乙二醇化也影响LEH在网状内皮系统中的蓄积。聚乙二醇化后,中性LEH在肝脏的摄取从52.1%降至19.1%,而阴离子LEH在肝脏的摄取从35.3%降至11.5%。相反,聚乙二醇化使中性和阴离子LEH在脾脏的摄取分别增加8.5倍和2.5倍。结果表明,通过后插入进行聚乙二醇化不仅提高了LEH的循环半衰期,还提高了囊泡内的血红蛋白含量,以获得更好的携氧能力。