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首页> 外文期刊>Gene therapy >Microtubule involvement in the intracellular dynamics for gene transfection mediated by cationic liposomes.
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Microtubule involvement in the intracellular dynamics for gene transfection mediated by cationic liposomes.

机译:微管参与阳离子脂质体介导的基因转染的细胞内动力学。

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摘要

The effects of microtubule polymerization on liposome-mediated gene transfection were investigated by confocal laser scanning microscopy in target living cells. Both nocodazole and taxol apparently increased the efficiency of gene transfection. Lipofection with fluorescence-labeled cationic liposomes in a COS-7 cell expressing yellow fluorescent protein (YFP)-tagged tubulin revealed that the liposomes were transported along microtubules to lysosomes which are colocalized with the microtubule organizing center (MTOC). Nocodazole disrupted microtubules and produced a uniform distribution of YFP-tagged tubulin in the cytoplasm. Under these conditions, both liposomes and lysosomes were scattered throughout the cytoplasm and they did not colocalize. In the presence of taxol, microtubules were stabilized and several focal regions, like the MTOC, were formed. Lysosomes resided around the nucleus, while liposomes were trapped in microtubules. Under these conditions, neither liposomes nor DNA colocalized with lysosomes. These results demonstrated that the liposome-DNA complexes are transported to lysosomes by a microtubule-mediated pathway, and the effects of nocodazole and taxol on transfection efficiency can be explained by failure of the transport of the liposome-DNA complexes to lysosomes where DNAs are degraded.
机译:通过共聚焦激光扫描显微镜观察靶活细胞中微管聚合对脂质体介导的基因转染的影响。诺考达唑和紫杉醇都明显提高了基因转染的效率。在表达黄色荧光蛋白(YFP)的微管蛋白的COS-7细胞中用荧光标记的阳离子脂质体脂质体转染显示脂质体沿微管运输到与微管组织中心(MTOC)共定位的溶酶体。 Nocodazole破坏了微管,并在细胞质中产生了YFP标签的微管蛋白均匀分布。在这些条件下,脂质体和溶酶体均散布在整个细胞质中,并且没有共定位。在紫杉醇的存在下,微管被稳定并形成了几个焦点区域,如MTOC。溶酶体位于细胞核周围,而脂质体则被困在微管中。在这些条件下,脂质体和DNA均不会与溶酶体共定位。这些结果证明脂质体-DNA复合物通过微管介导的途径转运至溶酶体,并且诺考达唑和紫杉醇对转染效率的影响可以通过脂质体-DNA复合物向DNA被降解的溶酶体的转运失败来解释。 。

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