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1.
荣宁  汪曣  范真真 《应用声学》2020,39(5):764-768
实验研究了基质刚性对单细胞质粒DNA转染效果的影响。实验采用高声压短脉冲(0.45MPa,10μs)条件的超声对培养在不同硬度凝胶基质(软的凝胶基质:0.2kPa,硬的凝胶基质:40kPa)上的力学敏感细胞NIH 3T3进行质粒DNA转染实验。实验结果表明,培养在硬的凝胶基质上的细胞,质粒DNA转染效率明显高于培养在软的凝胶基质上的细胞。进一步对质粒DNA进行荧光示踪可知培养在不同刚性基质上的细胞导入质粒DNA的方式不同。当细胞被培养在硬的凝胶基质上时,通过声致穿孔产生的小孔进入细胞内的质粒DNA更多,而培养在软的凝胶基质上的细胞,更多的质粒DNA可以通过非声致穿孔作用,例如内吞方式导入细胞。 细胞骨架蛋白分布规律表明,硬的凝胶基质上培养的细胞内有更多的F肌动蛋白微丝,可以更好地支撑起细胞的铺展形态,相对不容易发生内吞作用。而软的凝胶基质上培养的细胞内F肌动蛋白则更多以球形状态存在,细胞形貌骗向圆形,此时更容易发生胞吞作用。  相似文献   
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A novel nanosystem based on mesoporous silica nanoparticles covered with carbosilane dendrons grafted on the external surface of the nanoparticles is reported. This system is able to transport single‐stranded oligonucleotide into cells, avoiding an electrostatic repulsion between the cell membrane and the negatively charged nucleic acids thanks to the cationic charge provided by the dendron coating under physiological conditions. Moreover, the presence of the highly ordered pore network inside the silica matrix would make possible to allocate other therapeutic agents within the mesopores with the aim of achieving a double delivery. First, carbosilane dendrons of second and third generation possessing ammonium or tertiary amine groups as peripheral functional groups were prepared. Hence, different strategies were tested in order to obtain their suitable grafting on the outer surface of the nanoparticles. As nucleic acid model, a single‐stranded DNA oligonucleotide tagged with a fluorescent Cy3 moiety was used to evaluate the DNA adsorption capacity. The hybrid material functionalised with the third generation of a neutral dendron showed excellent DNA binding properties. Finally, the cytotoxicity as well as the capability to deliver DNA into cells, was tested in vitro by using a human osteoblast‐like cell line, achieving good levels of internalisation of the vector DNA/carbosilane dendron‐functionalised material without affecting the cellular viability.  相似文献   
4.
目的以重组人钠/碘转运体(hNIS)基因转染结肠癌SW480细胞并检测hNIS mRNA及蛋白的表达,为放射性碘治疗非甲状腺肿瘤提供新思路。方法将构建好的重组质粒(pcDNA3.1+-hNIS)进行酶切、测序鉴定并扩增、提取。SW480细胞分为重组质粒(pcDNA3.1+-hNIS)转染组、空白质粒(pcDNA3.1+)转染组、空白对照组,转染后以RT-PCR和Western blot检测各组细胞hNIS mRNA和蛋白的表达。结果酶切和测序结果显示插入的hNIS基因大小和方向均正确。RT-PCR和Western blot显示重组质粒转染组SW480细胞可见hNIS mRNA和蛋白的表达,而空白对照组和空白质粒转染组均未检测到hNIS mRNA和蛋白的表达。结论脂质体法可有效地将hNIS基因转染至SW480细胞并成功表达hNIS蛋白。  相似文献   
5.
Cationic liposome/DNA complexes can be used as nonviral vectors for direct delivery of DNA‐based biopharmaceuticals to damaged cells and tissues. To obtain more effective and safer liposome‐based gene transfection systems, two cationic lipids with identical head groups but different chain structures are investigated with respect to their in vitro gene‐transfer activity, their cell‐damaging characteristics, and their physicochemical properties. The gene‐transfer activities of the two lipids are very different. Differential scanning calorimetry and synchrotron small‐ and wide‐angle X‐ray scattering give valuable structural insight. A subgel‐like structure with high packing density and high phase‐transition temperature from gel to liquid‐crystalline state are found for lipid 7 (N′‐2‐[(2,6‐diamino‐1‐oxohexyl)amino]ethyl‐2,N‐bis(hexadecyl)propanediamide) containing two saturated chains. Additionally, an ordered head‐group lattice based on formation of a hydrogen‐bond network is present. In contrast, lipid 8 (N′‐2‐[(2,6‐diamino‐1‐oxohexyl)amino]ethyl‐2‐hexadecyl‐N‐[(9Z)‐octadec‐9‐enyl]propanediamide) with one unsaturated and one saturated chain shows a lower phase‐transition temperature and a reduced packing density. These properties enhance incorporation of the helper lipid cholesterol needed for gene transfection. Both lipids, either pure or in mixtures with cholesterol, form lamellar phases, which are preserved after addition of DNA. However, the system separates into phases containing DNA and phases without DNA. On increasing the temperature, DNA is released and only a lipid phase without intercalated DNA strands is observed. The conversion temperatures are very different in the two systems studied. The important parameter seems to be the charge density of the lipid membranes, which is a result of different solubility of cholesterol in the two lipid membranes. Therefore, different binding affinities of the DNA to the lipid mixtures are achieved.  相似文献   
6.
设计并合成了聚谷氨酸-聚乙二醇@碳酸钙(PPG@CaCO3)纳米遮蔽体系, 用于遮蔽聚乙烯亚胺(PEI). 一方面, 聚谷氨酸-聚乙二醇(PPG)可以降低PEI引起的细胞毒性, 更有利于体内应用; 另一方面, CaCO3可有效改善PPG导致的转染效率下降, 并在一定程度上提高PEI的细胞转染效率. 对比遮蔽体系PPG@CaCO3和聚谷氨酸-聚乙二醇@磷酸钙[PPG@Ca3(PO4)2]发现, PPG@CaCO3在微酸性环境中释放二氧化碳气体是提高细胞转染效率的关键因素. 小鼠体内循环实验表明, PPG@CaCO3遮蔽体系可以增加载体在血液中的循环时间. 因此, PPG@CaCO3遮蔽体系对于改善阳离子类基因载体的体内应用起到重要作用.  相似文献   
7.
A series of degradable branched PDMAEMA copolymers were investigated with the linear PDMAEMA counterpart as gene‐delivery vectors. The branched PDMAEMA copolymers were synthesized by controlled radical cross‐linking copolymerization based on the “vinyl oligomer combination” approach. Efficient degradation properties were observed for all of the copolymers. The degree of branching was found to have a big impact on performance in transfection when tested on different cell types. The product with the highest degree of branching and highest degree of functionality had a superior transfection profile in terms of both transfection capability and the preservation of cell viability. These branched PDMAEMA copolymers show high potential for gene‐delivery applications through a combination of the simplicity of their synthesis, their low toxicity, and their high performance.  相似文献   
8.
重组质粒pIRES-EGFP-BCL 11B电转染幼稚T细胞的可视化研究   总被引:1,自引:1,他引:0  
将BCL 11B基因插入pIRES-EGFP构建重组质粒真核表达载体pIRES-EGFP-BCL 11B,采用电转染法将重组质粒转入人幼稚T细胞,转染24 h后,用原子力显微镜(AFM)观察转染前后细胞的表面形态以及生物物理性质的变化.转染72 h后,用CCK-8试剂检测幼稚T细胞的增殖情况.分别对空转的幼稚T细胞组、空载体转染组(pIRES-EGFP naked plasmid)、重组载体转染组(pIRES-EGFP-BCL 11B recombinant vector)、无电转无质粒的幼稚T细胞组进行实验.结果表明,4组幼稚T细胞的体积、高度、半宽度、粗糙度、表面颗粒大小等参数发生了变化,细胞杨氏模量以及细胞硬度也呈现很大变化,CCK-8结果显示,重组质粒pIRES-EGFP-BCL 11B电转染人幼稚T细胞后影响细胞的增殖.  相似文献   
9.
Chitosan (CS) is expected to be an ideal gene carrier for its high biosafety. In this work, CS with low molecular weight were prepared through the γ-ray radiation on the acetic acid solution of CS. The CS chains were scissioned under the γ-ray radiation, and the molecular weight (MW) of CS decreased with the absorbed dose. When the absorbed dose was above 30 kGy, the molecular weight of CS decreased about an order of magnitude. The γ-ray-radiation-scissioned CS can e ectively bind with plasmid (pEGFP) through complex coacervation method, forming pEGFP/ γ-ray-radiation-scissioned CS complex particles with a size of 200-300 nm. The complex particles have good stability and little cytotoxicity. The in uitro gene transfection efficiencies of the pEGFP/ γ-ray-radiation-scissioned CS complex particles were investigated by fluorescence microscope and flow cytometry. The results showed that the gene vectors using γ-ray-radiation-scissioned CS as the carrier will possess better gene transfection efficiency than those using natural high-MW CS as the carrier. The higher the absorbed dose, the smaller the MW of CS and the better transfection efficiency of the corresponding gene vector. This work provides a green and simple method on the preparation of CS-based gene vectors with high efficiency and biosafety.  相似文献   
10.
An arginine‐leucine block copolypeptide (R60L20) is synthesized, which is capable of forming vesicles with controllable sizes, able to transport hydrophilic cargo across the cell membrane, and exhibit relatively low cytotoxicity. The R60L20 vesicles also possess the ability to deliver DNA into mammalian cells for transfection. Although the transfection efficiency is lower than that of the commercially available transfection agent Lipofectamine 2000, the R60L20 vesicles are able to achieve transfection with significantly lower cytotoxicity and immunogenicity. This behavior is potentially due to its stronger interaction with DNA which subsequently provides better protection against anionic heparin.

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