Ding Lijun, Luo Xiao, Xian Qingyue, Zhu Sishi, Wen Weijia
Thrust of Bioscience and Biomedical Engineering, The Hong Kong University of Science and Technology (Guangzhou), Guangzhou 511400, China.
Department of Physics, The Hong Kong University of Science and Technology, Kowloon 999077, Hong Kong, China.
Int J Mol Sci. 2024 Nov 28;25(23):12825. doi: 10.3390/ijms252312825.
Fucoxanthin (FN), a carotenoid derived from brown seaweed and algae, offers significant health benefits. However, its unique structure leads to challenges in stability and bioavailability. To overcome these issues, we successfully encapsulated fucoxanthin in solid lipid nanoparticles (SLNs) utilizing health-safe materials, achieving remarkable results. SLNs exhibited a nanoscale size of 248.98 ± 4.0 nm, along with an impressive encapsulation efficiency of 98.30% ± 0.26% and a loading capacity of 5.48% ± 0.82% in lipid. The polydispersity index (PDI) was measured at 0.161 ± 0.03, indicating a narrow size distribution, while the high negative zeta potential of -32.93 ± 1.2 mV suggests excellent stability. Pharmacokinetic studies conducted in Sprague-Dawley rats revealed an exceptional oral bioavailability of 2723.16% compared to fucoxanthin crystals, likely attributed to the enhanced stability and improved cellular uptake of the SLNs. To further improve bioavailability, we creatively applied enteric coatings to the freeze-dried SLNs, effectively protecting fucoxanthin from gastric degradation, which is supported by in vitro digestion results. These findings underscore the potential of SLNs as a superior delivery system for fucoxanthin, significantly enhancing its therapeutic efficacy and broadening its application in the food and pharmaceutical industries.
岩藻黄质(FN)是一种源自褐藻和藻类的类胡萝卜素,具有显著的健康益处。然而,其独特的结构导致其在稳定性和生物利用度方面存在挑战。为了克服这些问题,我们利用健康安全的材料成功地将岩藻黄质包裹在固体脂质纳米粒(SLNs)中,取得了显著成果。SLNs呈现出248.98±4.0纳米的纳米级尺寸,脂质中的包封率高达98.30%±0.26%,载药量为5.48%±0.82%。多分散指数(PDI)测得为0.161±0.03,表明粒径分布狭窄,而-32.93±1.2毫伏的高负zeta电位表明具有出色的稳定性。在Sprague-Dawley大鼠身上进行的药代动力学研究显示,与岩藻黄质晶体相比,口服生物利用度高达2723.16%,这可能归因于SLNs稳定性的提高和细胞摄取的改善。为了进一步提高生物利用度,我们创造性地对冻干的SLNs应用肠溶包衣,有效地保护岩藻黄质不被胃降解,体外消化结果证实了这一点。这些发现强调了SLNs作为岩藻黄质优良递送系统的潜力,显著提高了其治疗效果,并拓宽了其在食品和制药行业的应用。