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志贺样毒素B亚基(SLTB)增强的二氢卟吩e6(Ce6)递送可提高细胞杀伤效果。

Shiga-like toxin subunit B (SLTB)-enhanced delivery of chlorin e6 (Ce6) improves cell killing.

作者信息

Tarragó-Trani Maria Teresa, Jiang Shu, Harich Kim C, Storrie Brian

机构信息

Department of Biochemistry, Virginia Tech, Blacksburg, VA 24061, USA.

出版信息

Photochem Photobiol. 2006 Mar-Apr;82(2):527-37. doi: 10.1562/2005-06-20-RA-583.

Abstract

We used Shiga-like toxin B subunit (SLTB) to deliver the photosensitizer, chlorin e6 (Ce6), to Vero cells expressing the Gb3 receptor. Our aim was to provide an example of carrier-enhanced photodynamic cell killing with which to start a systematic consideration of photosensitizer delivery at the subcellular level. SLTB, in contrast to many other potential protein carriers, is delivered intracellularly to the Golgi apparatus and endoplasmic reticulum (ER). Ce6 was chosen both for its phototoxic properties and its potential for covalent conjugation with SLTB. Ce6-SLTB after cleanup contained < or =10% noncovalently bound Ce6. The noncovalent binding of porphyrins and chlorins to protein conjugates has been well documented, and hence the effective cleanup procedure is a significant accomplishment. We demonstrate that Ce6-SLTB enhances delivery of Ce6 to target cells as compared to free Ce6. In Vero cells, Ce6-SLTB was over an order of magnitude more photodynamically toxic than free Ce6. Moreover, we show that in the case of Ce6-SLTB, photosensitizer accumulation is in a combination of subcellular sites including mitochondria, Golgi apparatus, ER and plasma membrane. The occurrence in nature of diverse B subunit binding sites and the possibilities of varied intracellular delivery make optimized use of B subunit carriers attractive.

摘要

我们使用志贺样毒素B亚基(SLTB)将光敏剂二氢卟吩e6(Ce6)递送至表达Gb3受体的Vero细胞。我们的目的是提供一个载体增强型光动力细胞杀伤的实例,以此开始在亚细胞水平上对光敏剂递送进行系统的思考。与许多其他潜在的蛋白质载体不同,SLTB可被细胞内吞至高尔基体和内质网(ER)。选择Ce6是因其具有光毒性特性以及与SLTB共价结合的潜力。纯化后的Ce6 - SLTB中,非共价结合的Ce6含量≤10%。卟啉和二氢卟吩与蛋白质缀合物的非共价结合已有充分记录,因此有效的纯化程序是一项重大成就。我们证明,与游离的Ce6相比,Ce6 - SLTB能增强Ce6向靶细胞的递送。在Vero细胞中,Ce6 - SLTB的光动力毒性比游离Ce6高出一个数量级以上。此外,我们表明,在Ce6 - SLTB的情况下,光敏剂在包括线粒体、高尔基体、内质网和质膜在内的亚细胞位点中积累。自然界中多样的B亚基结合位点的存在以及不同细胞内递送的可能性使得优化利用B亚基载体具有吸引力。

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