正常小鼠或实验性脑转移小鼠脑内多层脂质体的阻滞和滞留。

G Schackert, D Fan, R Nayar, I J Fidler
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引用次数: 30

摘要

血脑屏障是恶性脑肿瘤和脑转移瘤系统性治疗的主要障碍。我们研究了将脂质体直接注射到正常小鼠或实验性脑黑色素瘤转移小鼠的颈内动脉中是否可以允许抗癌药物穿过这一屏障。将不同大小的脂质体(大于5微米、小于1微米、40-80纳米)和脂质组成分别静脉注射或注入颈内动脉。正常C3H/HeN小鼠脑内脂质体滞留与实验性脑癌转移小鼠脑内脂质体滞留相似。脂质体在脑内的最高积聚发生在大的多层囊泡中,这也可能由于栓塞而产生严重的毒性。较小的脂质体没有毒性,但不会在大脑中积聚。静脉注射的脂质体也没有在大脑中积聚。因此,无论是静脉注射还是颈动脉内注射脂质体都不能产生适合治疗脑肿瘤/转移瘤的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Arrest and retention of multilamellar liposomes in the brain of normal mice or mice bearing experimental brain metastases.

The blood-brain barrier presents a major obstacle to the systemic treatment of malignant brain tumors and brain metastases. We investigated whether the direct injection of liposomes into the internal carotid artery of normal mice or mice with experimental brain-melanoma metastases could allow delivery of anticancer drugs across this barrier. Liposomes of different sizes (greater than 5 microns, less than 1 micron, 40-80 nm) and lipid compositions were injected i.v. or into the internal carotid artery. The retention of liposomes in the brain of normal C3H/HeN mice was similar to that observed in mice with experimental brain cancer metastasis. The highest accumulation of liposomes in the brain occurred with large multilamellar vesicles, which also produced severe toxicity presumably due to embolism. Smaller liposomes were not toxic but did not accumulate in the brain. Liposomes injected i.v. did not accumulate in the brain, either. Thus, neither i.v. nor intracarotid administration of liposomes produce results suitable for therapy of brain tumors/metastases.

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