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通过糖基化脂质体将β-葡萄糖脑苷脂酶进行凝集素特异性靶向至不同肝细胞。

Lectin-specific targeting of beta-glucocerebrosidase to different liver cells via glycosylated liposomes.

作者信息

Das P K, Murray G J, Zirzow G C, Brady R O, Barranger J A

出版信息

Biochem Med. 1985 Feb;33(1):124-31. doi: 10.1016/0006-2944(85)90135-8.

Abstract

Galactosylated and mannosylated liposomes were more efficient in transporting liposome-entrapped beta-glucocerebrosidase to liver compared to nonglycosylated liposomes. The enzyme entrapped to glycoside-bearing liposomes was found to be cleared at a much faster rate than that entrapped in liposomes having no sugar on their surface. Asialoorosomucoid and hydrolyzed mannan were found to inhibit both the clearance and the uptake of galactosylated and mannosylated liposomes, respectively, supporting involvement of lectin-sugar interaction. Further studies on the uptake of glucocerebrosidase by isolated liver cells revealed that the enzyme entrapped in mannosylated liposomes has much higher affinity for nonparenchymal cells whereas the assimilation of the entrapped enzyme into hepatocytes is clearly favored for liposomes having galactose on their surface.

摘要

与非糖基化脂质体相比,半乳糖基化和甘露糖基化脂质体在将脂质体包裹的β-葡萄糖脑苷脂转运至肝脏方面更有效。发现包裹在含糖苷脂质体中的酶比包裹在表面无糖的脂质体中的酶清除速度要快得多。去唾液酸血清类黏蛋白和水解甘露聚糖分别被发现可抑制半乳糖基化和甘露糖基化脂质体的清除和摄取,这支持了凝集素-糖相互作用的参与。对分离的肝细胞摄取葡萄糖脑苷脂的进一步研究表明,包裹在甘露糖基化脂质体中的酶对非实质细胞具有更高的亲和力,而对于表面带有半乳糖的脂质体,包裹的酶明显更易于被肝细胞吸收。

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