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The role of cytoskeleton networks on lipid-mediated delivery of DNA

机译:细胞骨架网络在脂质介导的DNA传递中的作用

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Background: Lipid-mediated delivery of DNA is hindered by extracellular and intracellular barriers that significantly reduce the transfection efficiency of synthetic nonviral vectors. Results: In this study we investigated the role of the actin and microtubule networks on the uptake and cytoplasmic transport of multicomponent cationic liposome-DNA complexes in CHO-K1 live cells by means of confocal laser scanning microscopy and 3D single particle tracking. Treatment with actin (latrunculin B)-and microtubule-disrupting (nocodazole) reagents indicated that intracellular trafficking of complexes predominantly involves microtubule-dependent active transport. We found that the actin network has a major effect on the initial uptake of complexes, while the microtubule network is mainly responsible for the subsequent active transportation to the lysosomes. Conclusion: Collectively, a strategy to improve the efficiency of lipid gene vectors can be formulated. We could find a lipid formulation that allows the nanoparticles to avoid the microtubule pathway to lysosomes.
机译:背景:脂质介导的DNA传递受到细胞外和细胞内屏障的阻碍,这些屏障显着降低了合成非病毒载体的转染效率。结果:在这项研究中,我们通过共聚焦激光扫描显微镜和3D单粒子跟踪研究了肌动蛋白和微管网络对CHO-K1活细胞中多组分阳离子脂质体-DNA复合物摄取和细胞质转运的作用。用肌动蛋白(拉特朗库林B)和破坏微管的药物(诺考达唑)进行的治疗表明,复合物的细胞内运输主要涉及微管依赖性主动转运。我们发现肌动蛋白网络对复合物的初始摄取具有主要影响,而微管网络则主要负责随后向溶酶体的主动转运。结论:可以总体上制定提高脂质基因载体效率的策略。我们可以找到一种脂质制剂,可以使纳米颗粒避免微管途径到达溶酶体。

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