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Bodipy 标记的半乳糖缀合物的合成及其抗菌性能评价。

Synthesis of Bodipy-Tagged Galactoconjugates and Evaluation of Their Antibacterial Properties.

机构信息

Dipartimento di Scienze Chimiche, Biologiche, Farmaceutiche ed Ambientali, Università degli Studi di Messina, V.le F. Stagno D'Alcontres 31, 98166 Messina, Italy.

Dipartimento di Chimica "Giacomo Ciamician", Università di Bologna, Via Francesco Selmi, 2, 40126 Bologna, Italy.

出版信息

Molecules. 2024 May 14;29(10):2299. doi: 10.3390/molecules29102299.

Abstract

As a development of our research on biocompatible glycoconjugate probes and specifically multi-chromophoric systems, herein, we report the synthesis and early bactericidal tests of two luminescent glycoconjugates whose basic structure is characterized by two boron dipyrromethene difluoride (BODIPY) moieties and three galactoside rings mounted on an oligophenylene ethynylene (OPE) skeleton. BODIPY fluorophores have found widespread application in many branches of biology in the last few decades. In particular, molecular platforms showing two different BODIPY groups have unique photophysical behavior useful in fluorescence imaging. Construction of the complex architecture of the new probes is accomplished through a convergent route that exploits a series of copper-free Heck-Cassar-Sonogashira cross-couplings. The great emergency due to the proliferation of bacterial infections, in conjunction with growing antibiotic resistance, requires the production of new multifunctional drugs and efficient methods for their targeted delivery to control bacteria-associated diseases. Preliminary studies of the glycoconjugate properties as antibacterial agents against representatives of Gram-negative () and Gram-positive () pathogens, which are associated with chronic infections, indicated significant bactericidal activity ascribable to their structural features.

摘要

作为我们对生物相容性糖缀合物探针的研究的发展,特别是多生色团系统,本文报道了两种发光糖缀合物的合成和早期杀菌测试,其基本结构的特点是两个硼二吡咯亚甲基二氟化物(BODIPY)部分和三个安装在寡聚苯乙炔(OPE)骨架上的半乳糖环。BODIPY 荧光团在过去几十年的许多生物学分支中得到了广泛的应用。特别是,显示两个不同 BODIPY 基团的分子平台具有独特的光物理行为,可用于荧光成像。新探针的复杂架构的构建是通过一种收敛的方法完成的,该方法利用了一系列无铜 Heck-Cassar-Sonogashira 交叉偶联反应。由于细菌感染的扩散以及抗生素耐药性的不断增加,迫切需要生产新的多功能药物并有效地将其靶向递送至控制与细菌相关的疾病。作为针对与慢性感染相关的革兰氏阴性()和革兰氏阳性()病原体的抗菌剂的糖缀合物性质的初步研究表明,由于其结构特征,它们具有显著的杀菌活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/22ff/11124175/bb8ceb60d76a/molecules-29-02299-g001.jpg

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