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An efficient calcium phosphate nanoparticle-based nonviral vector for gene delivery

机译:一种有效的基于磷酸钙纳米粒子的非病毒载体,用于基因传递

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Background: Smaller nanoparticles facilitate the delivery of DNA into cells through endocytosis and improve transfection efficiency. The aim of this study was to determine whether protamine sulfate-coated calcium phosphate (PS-CaP) could stabilize particle size and enhance transfection efficiency.Methods: pEGFP-C1 green fluorescence protein was employed as an indicator of transfection efficiency. Atomic force microscopy was used to evaluate the morphology and the size of the particles, and an MTT assay was introduced to detect cell viability and inhibition. The classical calcium phosphate method was used as the control.Results: Atomic force microscopy images showed that the PS-CaP were much smaller than classical calcium phosphate particles. In 293 FT, HEK 293, and NIH 3T3 cells, the transfection efficiency of PS-CaP was higher than for the classical calcium phosphate particles. The difference in efficiencies implies that the smaller nanoparticles may promote the delivery of DNA into cells through endocytosis and could improve transfection efficiency. In addition, PS-CaP could be used to transfect HEK 293 cells after one week of storage at 4°C with a lesser extent of efficiency loss compared with classical calcium phosphate, indicating that protamine sulfate may increase the stability of calcium phosphate nanoparticles. The cell viability inhibition assay indicated that both nanoparticles show similar low cell toxicity.Conclusion: PS-CaP can be used as a better nonviral transfection vector compared with classical calcium phosphate.
机译:背景:较小的纳米粒子有助于通过内吞作用将DNA传递到细胞中,并提高转染效率。这项研究的目的是确定硫酸鱼精蛋白包被的磷酸钙(PS-CaP)是否可以稳定粒径并提高转染效率。方法:以pEGFP-C1绿色荧光蛋白作为转染效率的指标。原子力显微镜用于评估颗粒的形态和大小,并引入MTT分析来检测细胞活力和抑制作用。结果:原子力显微镜图像显示PS-CaP比传统的磷酸钙小得多。在293 FT,HEK 293和NIH 3T3细胞中,PS-CaP的转染效率高于经典的磷酸钙颗粒。效率的差异意味着较小的纳米颗粒可以促进通过内吞作用将DNA传递到细胞中,并可以提高转染效率。此外,与传统的磷酸钙相比,PS-CaP可在4°C储存一周后用于转染HEK 293细胞,效率损失程度​​小于传统的磷酸钙,表明硫酸鱼精蛋白可以增加磷酸钙纳米颗粒的稳定性。细胞活力抑制实验表明两种纳米颗粒均具有相似的低细胞毒性。结论:与经典磷酸钙相比,PS-CaP可以作为更好的非病毒转染载体。

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