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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Dipalmitoylation of a cellular uptake-mediating apolipoprotein E-derived peptide as a promising modification for stable anchorage in liposomal drug carriers
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Dipalmitoylation of a cellular uptake-mediating apolipoprotein E-derived peptide as a promising modification for stable anchorage in liposomal drug carriers

机译:细胞摄取介导载脂蛋白E衍生肽的双palmitoylation作为稳定锚定在脂质体药物载体中的有希望的修饰。

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Liposomes equipped with cellular uptake-mediating peptidic vector compounds have attracted much attention as target-specific drug delivery systems. Aside from the development of the target recognition motif itself, vector coupling to liposomes while conserving the active conformation constitutes an important element in carrier development. To elucidate the most efficient way for adsorptive peptide binding to liposomes, we synthesized and characterized two-domain peptides comprising a cationic sequence derived from the binding domain of apolipoprotein E (apoE) for the low-density lipoprotein receptor and different lipid-binding motifs, that is, an amphipathic helix, a transmembrane helix, single fatty acids or two palmitoyl chains. Peptide properties considered relevant for peptide-liposome complexes to initiate an endocytotic cellular uptake such as lipid binding, helicity, stability of anchorage, bilayer-disturbing activity, and toxicity showed that the dipalmitoyl derivative was the most suitable to associate the apoE peptide to the surface of liposomes. The peptide showed pronounced lipid affinity and was stably anchored within the lipid bilayer on a time scale of at least 30 min. The helicity of about 40% in the lipid-bound state and the location of the amphipathic helix on the liposomal surface provided the prerequisites for interaction of the complex with the cell surface-located receptor. The concentration of the dipalmitoylated peptide to permeabilize neutral lipid bilayers (lipid concentration 25 mu M) was 0.06 mu M and a 2 mu M concentration reduced cell viability to about 80%. Efficient internalization of liposomes bearing about 180 peptide derivatives on the surface into brain capillary endothelial cells was monitored by confocal laser scanning microscopy. The concept of complexation using dipalmitoylated peptides may offer an efficient substitute to covalent vector coupling and a prospective way to optimize the capacity of liposomes as drug delivery systems also for different targets. (c) 2006 Elsevier B.V All rights reserved.
机译:作为靶标特异性药物递送系统,装备有细胞摄取介导肽载体化合物的脂质体引起了广泛的关注。除了靶识别基序本身的发展以外,载体与脂质体的偶联同时保留了活性构象是载体发展中的重要因素。为了阐明吸附肽与脂质体结合的最有效方法,我们合成并表征了两个结构域的肽,其中包含衍生自载脂蛋白E(apoE)的低密度脂蛋白受体结合域和不同脂质结合基序的阳离子序列,即,两亲性螺旋,跨膜螺旋,单个脂肪酸或两个棕榈酰基链。被认为与肽-脂质体复合物相关的肽特性可启动内吞细胞摄取,例如脂质结合,螺旋度,锚定稳定性,双层干扰活性和毒性,表明二棕榈酰衍生物最适合将apoE肽与表面结合脂质体。该肽表现出明显的脂质亲和力,并且在至少30分钟的时间范围内稳定地锚定在脂质双层中。脂质结合状态下约40%的螺旋度和脂质体表面两亲性螺旋的位置为复合物与细胞表面定位受体的相互作用提供了先决条件。用于透化中性脂质双层的二棕榈酰化肽的浓度(脂质浓度为25μM)为0.06μM,2μM的浓度使细胞活力降低至约80%。通过共聚焦激光扫描显微镜监测表面上带有约180个肽衍生物的脂质体有效内化到脑毛细血管内皮细胞中。使用二铝甲酰化肽的络合概念可以为共价载体偶联提供有效的替代方法,并且可以优化脂质体作为药物递送系统的能力,也可以用于不同的靶标。 (c)2006 Elsevier B.V保留所有权利。

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