首页> 外文期刊>Journal of drug targeting >Nucleic-acid based gene therapeutics: Delivery challenges and modular design of nonviral gene carriers and expression cassettes to overcome intracellular barriers for sustained targeted expression
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Nucleic-acid based gene therapeutics: Delivery challenges and modular design of nonviral gene carriers and expression cassettes to overcome intracellular barriers for sustained targeted expression

机译:基于核酸的基因疗法:非病毒基因载体和表达盒的传递挑战和模块化设计,克服了细胞内屏障的持续靶向表达

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摘要

The delivery of nucleic acid molecules into cells to alter physiological functions at the genetic level is a powerful approach to treat a wide range of inherited and acquired disorders. Biocompatible materials such as cationic polymers, lipids, and peptides are being explored as safer alternatives to viral gene carriers. However, the comparatively low efficiency of nonviral carriers currently hampers their translation into clinical settings. Controlling the size and stability of carrierucleic acid complexes is one of the primary hurdles as the physicochemical properties of the complexes can define the uptake pathways, which dictate intracellular routing, endosomal processing, and nucleocytoplasmic transport. In addition to nuclear import, subnuclear trafficking, posttranscriptional events, and immune responses can further limit transfection efficiency. Chemical moieties, reactive linkers or signal peptide have been conjugated to carriers to prevent aggregation, induce membrane destabilization and localize to subcellular compartments. Genetic elements can be inserted into the expression cassette to facilitate nuclear targeting, delimit expression to targeted tissue, and modulate transgene expression. The modular option afforded by both gene carriers and expression cassettes provides a two-tier multicomponent delivery system that can be optimized for targeted gene delivery in a variety of settings.
机译:将核酸分子送入细胞以在遗传水平改变生理功能是治疗广泛的遗传性和获得性疾病的有效方法。人们正在探索生物相容性材料,例如阳离子聚合物,脂质和肽,作为病毒基因载体的更安全替代品。但是,非病毒载体的效率相对较低,目前阻碍了它们向临床环境的转化。控制载体/核酸复合物的大小和稳定性是主要障碍之一,因为复合物的理化性质可以定义摄取途径,这决定了细胞内路由,内体加工和核质运输。除核输入外,亚核贩运,转录后事件和免疫反应可进一步限制转染效率。化学部分,反应性接头或信号肽已与载体偶联,以防止聚集,诱导膜不稳定并定位于亚细胞区室。可以将遗传元件插入表达盒中以促进核靶向,将表达限定于靶组织并调节转基因表达。基因载体和表达盒提供的模块化选项提供了一个两层的多组分递送系统,该系统可以针对各种环境中的靶向基因递送进行优化。

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