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首页> 外文期刊>Bioconjugate Chemistry >In Vitro Gene Transfer Efficacies and Serum Compatibility Profiles of Novel Mono-,Di-,and Tri-Histidinylated Cationic Transfection Lipids: A Structure-Activity Investigation
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In Vitro Gene Transfer Efficacies and Serum Compatibility Profiles of Novel Mono-,Di-,and Tri-Histidinylated Cationic Transfection Lipids: A Structure-Activity Investigation

机译:新型单,双和三组甲酰阳离子转染脂质的体外基因转移效率和血清相容性概况:结构活性研究。

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Recently,we demonstrated that covalent grafting of an endosome-disrupting single histidine functionality in the headgroup region imparts high gene transfer properties to cationic amphiphiles (Kumar,V.V.,et al.Gene Ther.2003,10,1206-1215).However,whether covalent attachment of multiple histidine functionalities in the headgroup region are capable of further enhancing the gene transfer efficacies of cationic amphiphiles remains to be explored.To this end,herein,we report on the design,syntheses,physicochemical characterizations,in vitro gene transfer properties,and serum compatibilites of three novel nontoxic cationic transfection amphiphiles containing mono-,di-,and tri-histidine functionalities in their headgroup regions (lipids 1-3) in multiple cultured cells.Significantly,findings in both the reporter gene expression assay and the whole cell histochemical X-gal staining assay support the notion that there is no linear correlation between the in vitro transfection efficacies and the number of histidine functionalities in the polar headgroup regions for histidinylated cationic amphiphiles.The relative gene transfer efficiencies,as well as the serum compatibilities,of the present histidinylated cationic amphiphiles were found to be strikingly dependent on the medium of lipoplex formation.Most importantly,high serum compatibilities (up to 50% added serum) of the lipoplexes of lipids 1 and 3 make them promising nonviral transfection vectors for future systemic applications.
机译:最近,我们证明了在头基团区域内破坏内体的单个组氨酸功能的共价接枝赋予阳离子两亲物以高的基因转移特性(Kumar,VV等,Gene Ther.2003,10,1206-1215)。头组区域中多个组氨酸功能的共价结合能够进一步提高阳离子两亲物的基因转移效率。为此,我们在此报道了设计,合成,理化特性,体外基因转移特性,在多个培养细胞的头基区域(脂质1-3)中含有单,二和三组氨酸功能的三种新型无毒阳离子转染两亲物的分子和血清相容性。有意义的是,在报告基因表达分析和整个研究中均发现细胞组织化学X-gal染色法支持以下观点:体外转染效率与n组蛋白化的阳离子两亲物在极性头基区域的组氨酸官能团数量众多。发现目前的组蛋白化的阳离子两亲物的相对基因转移效率以及血清相容性显着地取决于脂质复合物形成的介质。最重要的是,高脂质1和3脂质复合物的血清相容性(最多添加50%的血清)使其成为有希望的非病毒转染载体,可用于未来的全身性应用。

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