Departamento de Farmacología, Farmacia y Tecnología Farmacéutica, I+D Farma (GI-1645), Facultad de Farmacia, Instituto de Materiales (iMATUS) and Health Research Institute of Santiago de Compostela (IDIS), Universidade de Santiago de Compostela, 15782 Santiago de Compostela, Spain.
Departamento de Zooloxía, Xenética y Antropoloxía Física, Facultade de Veterinaria, Universidade de Santiago de Compostela, 27002 Lugo, Spain.
Int J Pharm. 2022 Nov 25;628:122281. doi: 10.1016/j.ijpharm.2022.122281. Epub 2022 Oct 13.
Ocular health may strongly benefit from the supply of antioxidant agents that counteract free radicals and reactive oxygen species responsible for long-term eye diseases. Additionally, natural antioxidants like resveratrol can inhibit bacteria growth and restore natural microbiota. However, their use is hindered by limited solubility, fast degradation, and low ocular permeability. This work aimed to overcome these limitations by preparing single and mixed micelles of Pluronic® F127 and casein that serve as resveratrol nanocarriers. Single and mixed (0.1 % casein) micelles (0.0 to -17.0 mV; 2.4 to 32.7 nm) increased 50-fold resveratrol solubility, remained stable for one month at 4 °C, withstood fast dilution, underwent sol-to-gel transitions in the 23.9-27.1 °C range, and exhibited potent antioxidant properties. All formulations successfully passed the HET-CAM assay but showed Pluronic®-casein dose-dependent toxicity in the zebrafish embryo model. Resveratrol-loaded single and mixed micelles (10-15 mM Pluronic® F127) displayed antimicrobial activity against S. aureus and P. aeruginosa. The micelles favored resveratrol accumulation in cornea and sclera, but mixed micelles showed larger lag times and provided lower amount of resveratrol permeated through sclera. In vivo (rabbit) tests confirmed the safety of resveratrol-loaded single micelles and their capability to supply resveratrol to anterior and posterior eye segments.
眼部健康可能会从供应抗氧化剂中受益,这些抗氧化剂可以对抗自由基和活性氧物种,这些物质是导致长期眼部疾病的原因。此外,天然抗氧化剂如白藜芦醇可以抑制细菌生长并恢复天然微生物群。然而,它们的使用受到有限的溶解度、快速降解和低眼部通透性的限制。本工作旨在通过制备 Pluronic® F127 和酪蛋白的单一和混合胶束来克服这些限制,这些胶束可用作白藜芦醇的纳米载体。单一和混合(0.1%酪蛋白)胶束(-17.0 mV;2.4 至 32.7 nm)将白藜芦醇的溶解度提高了 50 倍,在 4°C 下稳定一个月,能耐受快速稀释,在 23.9-27.1°C 范围内发生溶胶-凝胶转变,具有很强的抗氧化性能。所有制剂均成功通过 HET-CAM 试验,但在斑马鱼胚胎模型中显示出 Pluronic®-酪蛋白剂量依赖性毒性。负载白藜芦醇的单一和混合胶束(10-15 mM Pluronic® F127)对金黄色葡萄球菌和铜绿假单胞菌表现出抗菌活性。胶束有利于白藜芦醇在角膜和巩膜中的积累,但混合胶束显示出更大的滞后时间,并且透过巩膜的白藜芦醇量较低。体内(兔)试验证实了负载白藜芦醇的单一胶束的安全性及其向眼前段和眼后段提供白藜芦醇的能力。