Kim J C, Lee E O, Kim J Y, Bae S K, Choi T B, Kim J D
Department of Chemical Engineering, Korea Advanced Institute of Science and Technology, Yusong-Gu, Taejon, Korea.
Pharm Dev Technol. 1997 Aug;2(3):275-84. doi: 10.3109/10837459709031447.
A new method of preparing liposomes containing amphotericin B (AmB) was developed with the purpose of reducing the toxicity of AmB without causing a loss in its antifungal activity. The procedure involved the precipitation of AmB and egg phosphatidylcholine (PC) in phosphate buffered saline (PBS, pH 7.4) or tris buffered saline (TBS, pH 7.4) by evaporating methanol and chloroform, which had been previously mixed in the buffer solution, at 4 degrees C and 600 mm Hg. The in vitro toxicity of the precipitated liposomes containing 3, 6, 9, 12, and 15 wt% AmB was compared with that of the film-swollen liposomes containing the equivalent contents of the drug. The hemolytic ability of the precipitated liposomes at 37 degrees C was 50.3% at maximum of the film-swollen liposomes at a dose of 30 micrograms AmB/ml, as measured after 17-hr incubation. The significant reduction in the hemolysis effect may in fact be attributed to the reduced rate of drug release from the precipitated liposomes. The precipitated liposomes were multilayered and aggregates of AmB were embedded in the bilayers. These aggregates of AmB would be responsible for an intensive positive peak around 330 nm and reduced toxicity. Despite the decrease in toxicity, the activity of the precipitated liposomes against Candida albicans remained almost equipotent to that of the film-swollen liposomes. Therefore, liposomes prepared by the precipitation method are less toxic but equally as active.
开发了一种制备含两性霉素B(AmB)脂质体的新方法,目的是降低AmB的毒性,同时不损失其抗真菌活性。该方法包括在4℃和600mmHg条件下,通过蒸发先前已混入缓冲溶液中的甲醇和氯仿,使AmB和卵磷脂(PC)在磷酸盐缓冲盐水(PBS,pH 7.4)或三羟甲基氨基甲烷缓冲盐水(TBS,pH 7.4)中沉淀。将含有3、6、9、12和15wt%AmB的沉淀脂质体的体外毒性与含有等量药物的薄膜水化脂质体的体外毒性进行了比较。在37℃下,沉淀脂质体的溶血能力在剂量为30μg AmB/ml时,最大为薄膜水化脂质体的50.3%,这是在孵育17小时后测得的。溶血作用的显著降低实际上可能归因于沉淀脂质体中药物释放速率的降低。沉淀脂质体为多层结构,AmB聚集体嵌入双层中。这些AmB聚集体将导致在330nm左右出现一个强烈的正峰,并降低毒性。尽管毒性有所降低,但沉淀脂质体对白色念珠菌的活性仍与薄膜水化脂质体几乎相当。因此,通过沉淀法制备的脂质体毒性较小,但活性相同。