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配备pH敏感融合肽的转铁蛋白修饰脂质体:一种人工病毒样递送系统。

Transferrin-modified liposomes equipped with a pH-sensitive fusogenic peptide: an artificial viral-like delivery system.

作者信息

Kakudo Tomoyuki, Chaki Shinji, Futaki Shiroh, Nakase Ikuhiko, Akaji Kenichi, Kawakami Toru, Maruyama Kazuo, Kamiya Hiroyuki, Harashima Hideyoshi

机构信息

Graduate School of Pharmaceutical Sciences, Hokkaido University, Kita-12, Nishi-6, Kita-ku, Sapporo 060-0812, Japan.

出版信息

Biochemistry. 2004 May 18;43(19):5618-28. doi: 10.1021/bi035802w.

Abstract

Liposomes are one of the most promising systems for selective cellular targeting via introduction of specific ligands for cell-surface receptors. After being taken up by the cells, these liposomes usually follow intracellular pathways of receptor-mediated endocytosis. Control of intracellular trafficking is required for optimized drug delivery. In this study, we elucidated the intracellular fate of transferrin-modified liposomes and succeeded in altering it by introducing the pH-sensitive fusogenic peptide, GALA (WEAALAEALAEALAEHLAEALAEALEALAA). Transferrins that are chemically attached to a liposomal surface (Tf-L) were internalized via receptor-mediated endocytosis more slowly than unmodified transferrins. In contrast to the recyclable nature of transferrin, liposome-attached transferrins together with encapsulated rhodamines were retained in vesicular compartments. When GALA was introduced into liposomal membranes using a cholesteryl moiety for anchoring (Chol-GALA), rhodamines were efficiently released and diffused into the cytosol. The addition of GALA to the Tf-L-containing medium or the encapsulation of GALA in Tf-L did not induce similar effects. These results clearly indicate that GALA must be present on the surface of liposomes to exert its function. In vitro energy transfer and dynamic light scattering experiments suggested that the endosomal escape of the encapsulates in Tf-L equipped with Chol-GALA can be attributed to pH-dependent membrane fusion. With GALA present on the surface, intracellular trafficking of liposomes after receptor-mediated endocytosis could be successfully controlled.

摘要

脂质体是通过引入细胞表面受体的特异性配体实现选择性细胞靶向的最具前景的系统之一。这些脂质体被细胞摄取后,通常遵循受体介导的内吞作用的细胞内途径。优化药物递送需要控制细胞内运输。在本研究中,我们阐明了转铁蛋白修饰的脂质体的细胞内命运,并通过引入pH敏感的融合肽GALA(WEAALAEALAEALAEHLAEALAEALEALAA)成功改变了它。化学连接到脂质体表面的转铁蛋白(Tf-L)通过受体介导的内吞作用内化的速度比未修饰的转铁蛋白慢。与转铁蛋白可循环利用的性质不同,与脂质体结合的转铁蛋白与包裹的罗丹明一起保留在囊泡区室中。当使用胆固醇部分进行锚定将GALA引入脂质体膜(Chol-GALA)时,罗丹明被有效释放并扩散到细胞质中。向含Tf-L的培养基中添加GALA或将GALA包裹在Tf-L中不会产生类似的效果。这些结果清楚地表明,GALA必须存在于脂质体表面才能发挥其功能。体外能量转移和动态光散射实验表明,配备Chol-GALA的Tf-L中包裹物的内体逃逸可归因于pH依赖性膜融合。由于表面存在GALA,受体介导的内吞作用后脂质体的细胞内运输可以成功控制。

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