Ain Noor Ul, Wu Shuye, Li Xiang, Li Duxin, Zhang Zhenqing
College of Pharmaceutical Sciences, Soochow University, Suzhou 215021, China.
Materials (Basel). 2022 May 20;15(10):3654. doi: 10.3390/ma15103654.
Licorice is known as "Gan-Cao" in traditional Chinese Medicine (TCM), belonging to the genus (Family: Fabaceae/Leguminosae). It has a long medicinal history and wide applications in China. Polysaccharides of licorice (LPs) are one of the key bioactive components. As herbal polysaccharides attracted increasing interest in the past several decades, their extraction, isolation, structural characterization, pharmacological activities, and medicinal application have been explored extensively. It is worth heeding that the method of extraction and purification effects LPs, apart from specie and origin specificity. This review evaluates the method of extraction and purification and demonstrates its performance in gaining specific composition and its structure-activity relationship, which might lead the readers to a fresh horizon for developing advanced treatment strategies. It is recently reported that the conformation of LPs plays a vital role as biopolymers, such as selenized modification, microencapsulation, nanocomposite, liposome formulation, drug/hydrogel combinations, biosensor device, and synergistic effect with a vaccine. In addition, LPs showed a good thermodynamics profile, as these properties enable them to interact with additional supramolecular interaction by chemical modifications or copolymerization. Functional polymers that are responsive to various external stimuli, such as physical, chemical, and biological signals, are a promising study topic. Thus, LPs are emerging as a new biomaterial that can enhance intended formulation along exerting its inherent medicinal effects. It is hoped that this review will provide a basis for the utilization and further developments of licorice polysaccharides in the vast medium.
甘草在传统中医中被称为“甘草”,属于甘草属(豆科)。它在中国有着悠久的药用历史和广泛的应用。甘草多糖(LPs)是其关键的生物活性成分之一。在过去几十年里,随着草药多糖越来越受到关注,人们对其提取、分离、结构表征、药理活性及药用应用进行了广泛研究。值得注意的是,除了物种和产地特异性外,提取和纯化方法也会影响甘草多糖。本综述评估了提取和纯化方法,并展示了其在获得特定成分及其构效关系方面的表现,这可能会为读者开拓开发先进治疗策略的新视野。最近有报道称,甘草多糖的构象作为生物聚合物起着至关重要的作用,例如硒化修饰、微囊化、纳米复合材料、脂质体制剂、药物/水凝胶组合、生物传感器装置以及与疫苗的协同作用。此外,甘草多糖表现出良好的热力学特性,因为这些特性使其能够通过化学修饰或共聚与其他超分子相互作用。对各种外部刺激(如物理、化学和生物信号)有响应的功能聚合物是一个有前景的研究课题。因此,甘草多糖正在成为一种新型生物材料,它在发挥其固有药用作用的同时还能增强预期的制剂效果。希望本综述能为甘草多糖在广大介质中的利用和进一步开发提供依据。