Alallam Batoul, Abd Kadir Erazuliana, Dewi Firli Rahmah Primula, Yong Yoke Keong, Lim Vuanghao
Advanced Medical and Dental Institute, Universiti Sains Malaysia, Bertam, 13200 Kepala Batas, Penang, Malaysia.
Department of Biology, Faculty of Science and Technology, Universitas Airlangga, Surabaya 60115, Indonesia.
Int J Biol Macromol. 2025 Jan;287:138552. doi: 10.1016/j.ijbiomac.2024.138552. Epub 2024 Dec 7.
Malaysian seaweed, particularly Sargassum polycystum, has potential for alginate production, yet an extraction protocol for this seaweed remains lacking. This study aimed to optimize the extraction process to maximize alginate yield while characterizing the physicochemical properties of the extracted alginate and its potential applications. An alkali-based extraction method was employed, with key parameters, including alkali concentration, extraction temperature, and time, carefully optimized to yield 30.17 ± 0.76 % (g alginate/100 g dry seaweed biomass) of alginate. Sodium alginate extracted from Sargassum polycystum has a viscosity-average molecular weight of 4.73 ± 0.001 × 10 g/mol and an M/G ratio of 2.87. The physicochemical properties and biochemical composition of the extracted alginate revealed its capacity to be utilized as a natural antioxidant. An alginate-based nanohybrid for polyphenol delivery was developed to explore the potential applications of extracted alginate. This nanohybrid showed favorable properties (hydrodynamic particle size: 415 nm, PDI: 0.3, zeta potential: -44.7 mV), high encapsulation (80.13 %), and loading efficiency (19.21 ± 1.69 %). Alginate coating on the nanohybrid protected polyphenol from premature release, significantly enhancing its antioxidant activity. These findings suggest that alginate extracted from Malaysian Sargassum polycystum could be a valuable natural material for developing controlled-release delivery systems.
马来西亚海藻,特别是多胞马尾藻,具有生产藻酸盐的潜力,但仍缺乏针对这种海藻的提取方案。本研究旨在优化提取工艺,以最大限度地提高藻酸盐产量,同时表征提取的藻酸盐的物理化学性质及其潜在应用。采用了一种基于碱的提取方法,对包括碱浓度、提取温度和时间在内的关键参数进行了仔细优化,以获得30.17±0.76%(藻酸盐克数/100克干海藻生物质)的藻酸盐产量。从多胞马尾藻中提取的海藻酸钠的粘均分子量为4.73±0.001×10克/摩尔,M/G比为2.87。提取的藻酸盐的物理化学性质和生化组成表明其有能力用作天然抗氧化剂。开发了一种用于多酚递送的基于藻酸盐的纳米杂化物,以探索提取的藻酸盐的潜在应用。这种纳米杂化物表现出良好的性质(流体动力学粒径:415纳米,PDI:0.3,zeta电位:-44.7毫伏)、高包封率(80.13%)和负载效率(19.21±1.