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Design, synthesis, and delivery properties of novel guanidine-containing molecular transporters built on dimeric inositol scaffolds

机译:基于二聚肌醇支架构建的新型含胍类分子转运蛋白的设计,合成和传递特性

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摘要

We have developed a novel class of synthetic molecular transporters that contain eight residues of guanidine with an inositol dimer as the scaffold. The dimers were prepared by connecting two units of myo- or scyllo-inositol via a carbonate or amide linkage, and the multiple units of the guanidine functionality were constructed on the inositol scaffold by means of peracylation with omega-aminocarboxylate derivatives of varying length. Bioassays based on confocal laser scanning microscopy and fluorescence-activated cell sorter analyses indicated that these transporters display a varying degree of membrane translocating ability, and the intracellular localization and mouse-tissue distribution studies strongly suggested that these transporters undergo substantially different mechanistic processes from those of peptide transporters reported to date. It was also shown that doxorubicin, an anticancer antibiotic, can be efficiently delivered into mouse brain by aid of this type of transporter.
机译:我们已经开发出一类新型的合成分子转运蛋白,其中包含八个残基的胍基和一个肌醇二聚体作为支架。通过经由碳酸酯或酰胺键连接两个单元的肌醇或鲨肌醇来制备二聚体,并通过用不同长度的ω-氨基羧酸酯衍生物进行过酰基化,在肌醇支架上构建多个胍官能团。基于共聚焦激光扫描显微镜和荧光激活细胞分选仪分析的生物测定表明,这些转运蛋白表现出不同程度的膜转运能力,并且细胞内定位和小鼠组织分布研究强烈表明,这些转运蛋白经历与迄今为止报道的肽转运蛋白。还显示出通过这种转运蛋白可以将阿霉素(一种抗癌抗生素)有效地递送到小鼠大脑中。

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