Shah Irshad Ahmad, Kavitake Digambar, Tiwari Swati, Devi Palanisamy Bruntha, Reddy G Bhanuprakash, Jaiswal Krishna Kumar, Jaiswal Amit K, Shetty Prathapkumar Halady
Department of Food Science and Technology, Pondicherry University, Pondicherry, 605014, India.
Biochemistry Division, ICMR - National Institute of Nutrition, Hyderabad, 500007, India.
Curr Res Food Sci. 2024 Aug 18;9:100824. doi: 10.1016/j.crfs.2024.100824. eCollection 2024.
In recent years, there has been a burgeoning interest in the utilization of microbial exopolysaccharides (EPS) because of the added advantage of their renewable, biocompatible, and biodegradable nature in addition to intended applications. The endowed properties of bacterial EPS make them valuable candidates for a wide array of industrial applications. Modification of native EPS is known to enhance various physico-chemical and functional properties. Various modifications such as physical, chemical, biological, and enzymatic modifications were practiced improving the bioactivity of EPS. This paper comprehensively aims to review the most recent chemical modification techniques employed to modify the physico-chemical and functional changes of bacterial EPS in comparison with the unmodified forms. Chemical modification entails strategic alterations to the structure and properties of EPS through various synthetic and semi-synthetic methodologies. Emphasis is given to the antioxidant potential and functional role of these EPS derivatives in human health. Antioxidant properties reveal a significant augmentation in activity compared to their native counterparts. Such enhancement holds a strong promise for potential benefits and therapeutic applications. Chemical derivatives of EPS with overwhelming functional benefits could surely encourage EPS application, particularly as potential hydrocolloids in industrial and biomedical contexts.
近年来,由于微生物胞外多糖(EPS)除了预期应用外还具有可再生、生物相容和可生物降解的额外优势,人们对其利用的兴趣迅速增长。细菌EPS的固有特性使其成为广泛工业应用的有价值候选物。已知对天然EPS进行修饰可增强各种物理化学和功能特性。人们采用了各种修饰方法,如物理、化学、生物和酶促修饰,以提高EPS的生物活性。本文全面旨在综述与未修饰形式相比,用于修饰细菌EPS物理化学和功能变化的最新化学修饰技术。化学修饰需要通过各种合成和半合成方法对EPS的结构和性质进行战略性改变。重点关注这些EPS衍生物在人类健康中的抗氧化潜力和功能作用。与天然对应物相比,抗氧化性能显示出活性的显著增强。这种增强为潜在益处和治疗应用带来了巨大希望。具有压倒性功能益处的EPS化学衍生物肯定会促进EPS的应用,特别是作为工业和生物医学领域潜在的水胶体。