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Curcumin encapsulation and protection based on lysozyme nanoparticles

机译:基于溶菌酶纳米粒子的姜黄素封装和保护

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Curcumin possesses antioxidant, anti‐inflammatory, and other properties. However, this compound exhibits low bioavailability because of its poor solubility and stability. In this paper, lysozyme nanoparticles were fabricated through solvent evaporation, and then, the solubilization and protection capability of curcumin were investigated. Lysozyme nanoparticles were characterized by dynamic light scattering technique, atomic force microscopy, transmission electron microscopy, and Fourier transform infrared spectroscopy. The load capacity and stability in thermal environment were further explored. Results showed that the lysozyme nanoparticle displayed a spherical structure (127.9?±?2.12?nm) with favorable distribution. The solubility of curcumin can increase to 22?μg/mL. After encapsulation by lysozyme nanoparticles, the retentive curcumin can reach up to 67.9% and 30.25% at 25°C and 50°C, respectively, significantly higher than that of free curcumin. Meanwhile, experiments on DPPH free radicals indicated the curcumin loaded by lysozyme nanoparticle possessed higher free radical scavenging activity than that of free curcumin with same treatments. The results confirmed that lysozyme nanoparticles exhibit potential applications in solubilizing and protecting the environment‐sensitive hydrophobic functional components.
机译:姜黄素具有抗氧化剂,抗炎和其他性质。然而,由于其溶解度和稳定性差,该化合物具有低生物利用度。本文通过溶剂蒸发制造溶菌酶纳米粒子,然后研究了姜黄素的溶解和保护能力。通过动态光散射技术,原子力显微镜,透射电子显微镜和傅里叶变换红外光谱,表征溶菌酶纳米粒子。进一步探索了热环境中的负载能力和稳定性。结果表明,溶菌酶纳米粒子呈现出具有良好分布的球形结构(127.9?±2.12μm)。姜黄素的溶解度可以增加至22Ωμg/ ml。通过溶菌酶纳米颗粒封装后,避孕姜黄素可分别在25℃和50℃下达到67.9%和30.25%,显着高于游离姜黄素。同时,对DPPH自由基的实验表明,溶菌酶纳米颗粒负荷的姜黄素具有比具有相同处理的游离姜黄素更高的自由基清除活性。结果证实,溶菌酶纳米颗粒在溶解和保护环境敏感的疏水性官能组分中表现出潜在的应用。

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