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Cationic liposome–nucleic acid complexes for gene delivery and gene silencing

机译:阳离子脂质体-核酸复合物用于基因传递和基因沉默

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摘要

Cationic liposomes (CLs) are studied worldwide as carriers of DNA and short interfering RNA (siRNA) for gene delivery and gene silencing, and related clinical trials are ongoing. Optimization of transfection efficiency and silencing efficiency by cationic liposome carriers requires a comprehensive understanding of the structures of CL–nucleic acid complexes and the nature of their interactions with cell membranes as well as events leading to release of active nucleic acids within the cytoplasm. Synchrotron x-ray scattering has revealed that CL–nucleic acid complexes spontaneously assemble into distinct liquid crystalline phases including the lamellar, inverse hexagonal, hexagonal, and gyroid cubic phases, and fluorescence microscopy has revealed CL–DNA pathways and interactions with cells. The combining of custom synthesis with characterization techniques and gene expression and silencing assays has begun to unveil structure–function relations in vitro. As a recent example, this review will briefly describe experiments with surface-functionalized PEGylated CL–DNA nanoparticles. The functionalization, which is achieved through custom synthesis, is intended to address and overcome cell targeting and endosomal escape barriers to nucleic acid delivery faced by PEGylated nanoparticles designed for in vivo applications.
机译:阳离子脂质体(CLs)作为DNA和短干扰RNA(siRNA)的载体已在世界范围内被研究用于基因传递和基因沉默,并且相关的临床试验正在进行中。通过阳离子脂质体载体优化转染效率和沉默效率,需要对CL-核酸复合物的结构及其与细胞膜相互作用的性质以及导致活性核酸在细胞质内释放的事件的全面理解。同步加速器的X射线散射表明,CL-核酸复合物自发组装成不同的液晶相,包括层状,逆六角形,六角形和螺旋形立方相,荧光显微镜显示了CL-DNA途径以及与细胞的相互作用。定制合成与表征技术,基因表达和沉默分析的结合已开始揭示体外的结构-功能关系。作为一个最近的例子,本综述将简要描述表面功能化的聚乙二醇化CL-DNA纳米颗粒的实验。通过定制合成实现的功能化旨在解决和克服针对体内应用而设计的聚乙二醇化纳米粒子所面临的细胞靶向和内体逃逸屏障对核酸递送的挑战。

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