Enhanced oral delivery of zeaxanthin via chitosan/alginate nanoparticles: Optimizing stability and antioxidant efficacy in retinal cells

抗氧化剂 化学 玉米黄质 生物化学 细胞内 活性氧 流式细胞术 生物物理学 Zeta电位 谷胱甘肽 生物利用度 细胞凋亡 药理学 粒径 体外 氧化应激 类胡萝卜素 纳米颗粒 细胞生物学 槲皮素 内吞作用
作者
Feuangthit Niyamissara Sorasitthiyanukarn,Chawanphat Muangnoi,Nonthaneth Nalinratana,Pranee Rojsitthisak,Pranee Rojsitthisak,Pornchai Rojsitthisak,Pornchai Rojsitthisak
出处
期刊:Food hydrocolloids for health [Elsevier]
卷期号:8: 100254-100254
标识
DOI:10.1016/j.fhfh.2025.100254
摘要

• ZT-CS/ALG-NPs were successfully optimized for oral delivery using Box-Behnken design. • CS/ALG-NPs improved stability and bioaccessibility of ZT. • CS/ALG-NPs as an oral delivery system to enhance the the functions of ZT • ZT-CS/ALG-NPs enhanced antioxidant enzyme activity and reduced ROS in retinal cells. • The NPs protected cells from apoptosis by modulating mitochondrial signaling pathways. . Zeaxanthin (ZT), a lipophilic carotenoid with strong antioxidant potential, suffers from poor aqueous solubility and low oral bioavailability, limiting its therapeutic application. In this study, chitosan/alginate nanoparticles (CS/ALG-NPs) were developed and optimized for oral ZT delivery using a Box-Behnken design. The optimized NPs showed a particle size of 268 ± 35 nm, zeta potential of −25.2 ± 0.8 mV, and encapsulation efficiency of 75.4 ± 3.4%. In vitro release under simulated gastrointestinal (GI) conditions exhibited sustained release with improved digestive stability and bioaccessibility compared to free ZT. The optimized ZT-CS/ALG-NPs exhibited favorable stability, maintaining particle size, surface charge, and encapsulation efficiency during storage at 4°C, and retained their spherical morphology and uniform dispersion after simulated gastrointestinal digestion, supporting their potential for oral delivery applications. In ARPE-19 cells, ZT-CS/ALG-NPs significantly reduced intracellular reactive oxygen species, restored antioxidant enzyme activities (SOD, CAT, GPx), and increased intracellular glutathione (GSH) levels compared to free ZT. Under H 2 O 2 -induced oxidative stress, ZT-CS/ALG-NPs reduced the expression of pro-apoptotic proteins (Bax and cytochrome c) and increased the expression of anti-apoptotic protein (Bcl-2) in ARPE-19 cells (vs H 2 O 2 group). Transmission electron microscopy and flow cytometry confirmed cellular uptake. These findings demonstrate the potential of CS/ALG-NPs as a polysaccharide-based oral delivery system to enhance the stability, bioaccessibility, and antioxidant efficacy of hydrophobic bioactives such as zeaxanthin. .
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