首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Mitochondria-targeted cationic liposomes modified with alkyltriphenylphosphonium bromides loaded with hydrophilic drugs: preparation, cytotoxicity and colocalization assay
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Mitochondria-targeted cationic liposomes modified with alkyltriphenylphosphonium bromides loaded with hydrophilic drugs: preparation, cytotoxicity and colocalization assay

机译:用载有亲水药物的亚烷基三苯基鏻溴化物改性线粒体靶向脂质体:制备,细胞毒性和分层测定

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摘要

The purpose of this work was to obtain cationic liposomes based on 1,2-dipalmitoyl-sn-glycero-3-phosphocholine noncovalently modified using alkyltriphenylphosphonium bromides (TPPB-n) with different lengths of hydrocarbon tail for targeted delivery to mitochondria. The hydrodynamic diameter and electrokinetic potential of hybrid liposomes depending on the lipid/surfactant ratio were monitored in time with the aim to optimize the composition with sufficient stability and positive charge for mitochondria-targeted delivery. It was found that increasing the alkyl tail length of the surfactant (up to TPPB-14) leads to an increase in the positive charge of the liposomes. The most optimal results of stability were obtained for hybrid liposomes based on 1,2-dipalmitoyl-sn-glycero-3-phosphocholine and TPPB-12, TPPB-14. The obtained modified liposomes were loaded with hydrophilic substrates (a model probe Rhodamine B and medicines metronidazole and doxorubicin). This is one of the first examples of fabrication of liposomes noncovalently modified using an amphiphilic TPP cation, with the alkyl tail length of surfactant and TPP/lipid ratio optimized in terms of stability of the liposomes and the binding/release behavior of hydrophilic probes. Using the confocal microscopy method, it was shown that modification of liposomes with a triphenylphosphonium cation results in targeted delivery of encapsulated compounds to mitochondria.
机译:本作作品的目的是基于使用烷基三苯基鏻(TPPB-N)的1,2-Dipalmitoyl-Sn-甘油-3-磷光啉,以使用不同长度的烃尾,用于靶向递送至线粒体的阳离子脂质体。根据脂质/表面活性剂比的杂交脂质体的流体动力直径和电动电位在时间上监测,目的是优化具有足够稳定性和阳性电荷的组合物,用于线粒体靶向递送。发现,增加表面活性剂(最多TPPB-14)的烷基尾长导致脂质体的正电荷的增加。基于1,2-Dipalmitoyl-Sn-甘油-3-磷光啉和TPPB-12,TPPB-14,获得杂交脂质体的最佳稳定性结果。将得到的改性脂质体加入亲水基底(模型探针罗丹明B和药物甲硝唑和多柔比星)。这是使用两亲性TPP阳离子非共价修饰的脂质体的制备的第一个实施例之一,用脂质体的稳定性和亲水性探针的结合/释放行为而优化的表面活性剂和TPP /脂质比的烷基尾部长度。使用共聚焦显微镜方法,显示与三苯基鏻阳离子的脂质体改性导致靶向递​​送包封的化合物对线粒体。

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