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树状高分子的外围官能基调节活细胞内的内化和细胞内运输。

Peripheral functionalization of dendrimers regulates internalization and intracellular trafficking in living cells.

机构信息

NEST , Scuola Normale Superiore and Istituto Nanoscienze-CNR, I-56127 Pisa, Italy.

出版信息

Bioconjug Chem. 2012 May 16;23(5):1059-68. doi: 10.1021/bc300079h. Epub 2012 Apr 16.

Abstract

GATG (gallic acid-triethylene glycol) dendrimers represent appealing nanostructures for biomedical applications. The incorporation of specific ligands and targeting and imaging agents on their surface has resulted in promising tools in diagnosis and drug delivery. With the aim to further explore the versatility of GATG dendrimers in the biomedical field, in this work we study the effect of peripheral substitution on their uptake and intracellular trafficking in living cells. To this end, peripheral groups with different physicochemical properties and biological relevance have been installed on the surface of GATG dendrimers, and their interactions, uptake efficacy, and specificity for certain cell populations studied by confocal microscopy. Finally, this information was used to design a pH-sensitive drug delivery system for the selective release of cargo molecules inside cells after lysosomal localization. These results along with the easy functionalization and modular architecture of GATG dendrimers reveal these systems as promising nanotools in biomedicine.

摘要

GATG(没食子酸三乙二醇)树状大分子是一种有应用前景的医学纳米结构。在其表面结合特定的配体、靶向和成像试剂,已成为诊断和药物输送的有前途的工具。为了进一步探索 GATG 树状大分子在生物医学领域的多功能性,本工作研究了外围取代对其在活细胞中的摄取和细胞内运输的影响。为此,在 GATG 树状大分子的表面上安装了具有不同物理化学性质和生物学相关性的外围基团,并通过共聚焦显微镜研究它们的相互作用、摄取效率和对某些细胞群体的特异性。最后,利用这些信息设计了一种 pH 敏感的药物输送系统,用于在溶酶体定位后选择性地在细胞内释放货物分子。这些结果以及 GATG 树状大分子易于功能化和模块化的结构,表明这些系统是生物医学中很有前途的纳米工具。

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