Chen Junyi, Ma Xutao, Edgar Kevin J
College of Polymer Science and Engineering, Qingdao University of Science and Technology, Qingdao 266042, China.
Department of Sustainable Biomaterials, Virginia Tech, Blacksburg, VA 24061, USA.
Polymers (Basel). 2021 Jun 8;13(12):1905. doi: 10.3390/polym13121905.
Polysaccharide conjugates are important renewable materials. If properly designed, they may for example be able to carry drugs, be proactive (e.g., with amino acid substituents) and can carry a charge. These aspects can be particularly useful for biomedical applications. Herein, we report a simple approach to preparing polysaccharide conjugates. Thiol-Michael additions can be mild, modular, and efficient, making them useful tools for post-modification and the tailoring of polysaccharide architecture. In this study, hydroxypropyl cellulose (HPC) and dextran (Dex) were modified by methacrylation. The resulting polysaccharide, bearing α,β-unsaturated esters with tunable DS (methacrylate), was reacted with various thiols, including 2-thioethylamine, cysteine, and thiol functional quaternary ammonium salt through thiol-Michael addition, affording functionalized conjugates. This click-like synthetic approach provided several advantages including a fast reaction rate, high conversion, and the use of water as a solvent. Among these polysaccharide conjugates, the ones bearing quaternary ammonium salts exhibited competitive antimicrobial performance, as supported by a minimum inhibitory concentration (MIC) study and tracked by SEM characterization. Overall, this methodology provides a versatile route to polysaccharide conjugates with diverse functionalities, enabling applications such as antimicrobial activity, gene or drug delivery, and biomimicry.
多糖缀合物是重要的可再生材料。如果设计得当,例如它们可能能够携带药物、具有活性(例如带有氨基酸取代基)并且可以携带电荷。这些特性在生物医学应用中可能特别有用。在此,我们报道了一种制备多糖缀合物的简单方法。硫醇-迈克尔加成反应可以是温和的、模块化的且高效的,使其成为多糖结构后修饰和剪裁的有用工具。在本研究中,羟丙基纤维素(HPC)和葡聚糖(Dex)通过甲基丙烯酸酯化进行修饰。所得带有具有可调取代度(甲基丙烯酸酯)的α,β-不饱和酯的多糖,通过硫醇-迈克尔加成反应与各种硫醇反应,包括2-硫代乙胺、半胱氨酸和硫醇官能化季铵盐,得到功能化缀合物。这种类似点击化学的合成方法具有几个优点,包括反应速率快、转化率高以及使用水作为溶剂。在这些多糖缀合物中,带有季铵盐的缀合物表现出具有竞争力的抗菌性能,这得到了最低抑菌浓度(MIC)研究的支持,并通过扫描电子显微镜(SEM)表征进行跟踪。总体而言,该方法为具有多种功能的多糖缀合物提供了一条通用途径,可实现抗菌活性、基因或药物递送以及仿生等应用。