Suppr超能文献

小鼠肝脏实质细胞和库普弗细胞对大小和脂质组成不同的脂质体的摄取差异。

Differential uptake of liposomes varying in size and lipid composition by parenchymal and kupffer cells of mouse liver.

作者信息

Rahman Y E, Cerny E A, Patel K R, Lau E H, Wright B J

出版信息

Life Sci. 1982 Nov 8;31(19):2061-71. doi: 10.1016/0024-3205(82)90098-4.

Abstract

Using liposomes differing in size and lipid composition, we have studied the uptake characteristics of the liver parenchymal and Kupffer cells. Desferal labeled with iron-59 was chosen as a radiomarker for the liposomal content, because Desferal in its free form does not cross cellular membranes. At various time intervals after an intravenous injection of liposomes into mice, the liver was perfused with collagenase, and the cells were separated in a Percoll gradient. It was found that large multilamellar liposomes (diameter of about 0.5 micron) were mainly taken up by the Kupffer cells. For these large liposomes, the rate of uptake by Kupffer cells was rapid, with maximum uptake at around 2 hours after liposome injection. Unexpectedly, small unilamellar liposomes (diameter of about 0.08 micron) were less effectively taken up by Kupffer cells, and the rate of uptake was slow, with a maximum uptake at about 10 hours after liposome injection. In contrast, parenchymal cells were more effective in taking up small liposomes and the uptake of large liposomes was negligible. In addition, liposomes made with a galactolipid as part of the lipid constituents appeared to have higher affinity to parenchymal cells than liposomes made without the galactolipid. These findings should be of importance in designing suitable liposomes for drug targeting.

摘要

我们使用了大小和脂质组成不同的脂质体,研究了肝实质细胞和库普弗细胞的摄取特性。选择用铁 - 59标记的去铁胺作为脂质体内容物的放射性标记物,因为游离形式的去铁胺不能穿过细胞膜。在给小鼠静脉注射脂质体后的不同时间间隔,用胶原酶灌注肝脏,并在 Percoll 梯度中分离细胞。结果发现,大的多层脂质体(直径约0.5微米)主要被库普弗细胞摄取。对于这些大脂质体,库普弗细胞的摄取速率很快,在脂质体注射后约2小时达到最大摄取量。出乎意料的是,小的单层脂质体(直径约0.08微米)被库普弗细胞摄取的效率较低,摄取速率较慢,在脂质体注射后约10小时达到最大摄取量。相比之下,实质细胞摄取小脂质体的效率更高,而摄取大脂质体的量可以忽略不计。此外,以半乳糖脂作为脂质成分之一制成的脂质体似乎比不含半乳糖脂制成的脂质体对实质细胞具有更高的亲和力。这些发现对于设计适合药物靶向的脂质体具有重要意义。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验