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通过长循环热敏脂质体和局部热疗增强阿霉素向肿瘤的递送。

Enhanced delivery of doxorubicin to tumor by long-circulating thermosensitive liposomes and local hyperthermia.

作者信息

Maruyama K, Unezaki S, Takahashi N, Iwatsuru M

机构信息

Faculty of Pharmaceutical Sciences, Teikyo University, Kanagawa, Japan.

出版信息

Biochim Biophys Acta. 1993 Jul 4;1149(2):209-16. doi: 10.1016/0005-2736(93)90203-c.

Abstract

Doxorubicin (DXR) was encapsulated in long-circulating, thermosensitive liposomes (180-200 nm), prepared from dipalmitoylphosphatidylcholine (DPPC)/distearoylphosphatidylcholine (DSPC) (9:1 (m/m)) and 6 mol% of ganglioside GM1 (GM1), with 95-98% entrapping efficiency by the pH-gradient method. 45% of the entrapped DXR was released from these GM1/DPPC/DSPC liposomes by incubation at 42 degrees C for 5 min in 20% serum or saline (this degree of release was lower than that of hydrophilic drugs such as cisplatin, due to the basic and amphiphilic nature of DXR). Inclusion of GM1 (6 mol%) endowed DPPC/DSPC liposomes with prolonged circulation ability, resulting in increased blood levels of liposomes and decreased reticuloendothelial system uptake over 6 h after injection. Concomitantly, DXR levels in blood remained high for long time. Accumulation of DXR into tumor tissue of tumor-bearing mice (mouse colon carcinoma 26) by local hyperthermia after injection of DXR loaded, long-circulating, thermosensitive (DXR-GM1/DPPC/DSPC) liposomes was 2.5-times or 6-times higher than that after treatment with DXR-DPPC/DSPC liposomes or free DXR in combination with hyperthermia, respectively. Furthermore, the treatment with DXR-GM1/DPPC/DSPC liposomes and hyperthermia resulted in effective tumor-growth retardation and increased survival time. Our results indicate that the combination of drug-loaded, long-circulating, thermosensitive liposomes with local hyperthermia at the tumor site could be clinically useful for delivering a wide range of chemotherapeutic agents in the treatment of solid tumors.

摘要

阿霉素(DXR)被包裹于长循环热敏脂质体(180 - 200纳米)中,该脂质体由二棕榈酰磷脂酰胆碱(DPPC)/二硬脂酰磷脂酰胆碱(DSPC)(9:1(质量比))和6摩尔%的神经节苷脂GM1制备而成,通过pH梯度法包封效率达95 - 98%。在20%血清或盐水中于42℃孵育5分钟后,45%包封的DXR从这些GM1/DPPC/DSPC脂质体中释放出来(由于DXR的碱性和两亲性,这种释放程度低于顺铂等亲水性药物)。加入GM1(6摩尔%)赋予DPPC/DSPC脂质体延长的循环能力,导致脂质体血液水平升高,注射后6小时内网状内皮系统摄取减少。同时,血液中DXR水平长时间保持较高。注射载有DXR的长循环热敏(DXR - GM1/DPPC/DSPC)脂质体后,通过局部热疗使荷瘤小鼠(小鼠结肠癌26)肿瘤组织中DXR的蓄积量分别比用DXR - DPPC/DSPC脂质体或游离DXR联合热疗治疗后高2.5倍或6倍。此外,用DXR - GM1/DPPC/DSPC脂质体和热疗治疗导致有效的肿瘤生长抑制和生存时间延长。我们的结果表明,载药长循环热敏脂质体与肿瘤部位局部热疗相结合在临床上可能有助于递送多种化疗药物用于实体瘤治疗。

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