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SLIM microscopy allows for visualization of DNA-containing liposomes designed for sperm-mediated gene transfer in cattle

机译:SLIM显微镜允许可视化含DNA的脂质体,该脂质体设计用于精子介导的牛中的基因转移

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摘要

Naked DNA has been shown to bind naturally to the sperm, a method called sperm-mediated gene transfer (SMGT). Based on these observations, we examined the efficiency of exogenous DNA binding to sperm using liposomes. In this experiment, we analyzed methods to select frozen-thawed bovine sperm, and evaluated the binding of exogenous DNA to those sperm. To determine the optimal selection method, we used Computer-Assisted Sperm Analysis (CASA). Percoll or Swim-Up were used to select sperm, followed by incubation up to 3h with the liposome-DNA complexes. The samples were collected after 1h and after 3h. We used enhanced green fluorescent protein (eGFP) in combination with the liposomes as a marker for exogenous DNA binding. Five treatments per selection method were analyzed: (1) no incubation, no liposomes and no DNA, (2) incubation with no liposomes and no DNA, (3) incubation with liposomes and no DNA, (4) incubation with liposomes and 1 mu g of DNA and (5) incubation with liposomes and 10 mu g of DNA. The CASA results for total motility and rapid motility were statistically significant (P0.01) between the control and the other treatments in the Percoll group as opposed to Swim-Up. Swim-Up was therefore chosen as the optimal selection method. In order to determine if the liposome-DNA complex had bound to sperm, real time PCR was used to detect GFP DNA and images of the sperm were analyzed using the Spatial Light Interference Microscopy (SLIM). SLIM confirmed the presence of liposomes on the sperm head and tail.
机译:已经显示出裸DNA以自然地与精子结合,一种称为精子介导的基因转移(SMGT)的方法。基于这些观察结果,我们研究了使用脂质体的外源DNA与精子结合的效率。在该实验中,我们分析了选择冷冻解冻的牛精子的方法,并评估外源DNA与那些精子的结合。为了确定最佳选择方法,我们使用计算机辅助精子分析(Casa)。使用脂质体-DNA复合物选择精子或泳列来选择精子,然后用脂质体-DNA复合物孵育3小时。在1小时后和3小时后收集样品。我们使用增强的绿色荧光蛋白(EGFP)与脂质体组合作为外源DNA结合的标志物。分析了每种选择方法的五种治疗方法:(1)不孵育,不脂质体和没有DNA,(2)与无脂质体和没有DNA的孵育,(3)与脂质体孵育,(4)与脂质体孵育,(4)与脂质体孵育和1μm GDNA和(5)与脂质体和10μg的DNA孵育。对于总体运动和快速运动的CASA结果是对照和Percoll组中的其他治疗之间的统计学意义(P <0.01),而不是筹集。因此选择了游泳作为最佳选择方法。为了确定脂质体-DNA复合物是否已结合精子,使用实时PCR检测GFP DNA,使用空间光干扰显微镜(SLIM)分析精子的图像。 Slim证实了在精子头和尾部上的脂质体存在。

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