State Key Laboratory of Southwestern Chinese Medicine Resources, Pharmacy School, Chengdu University of Traditional Chinese Medicine, Chengdu, China.
Key Laboratory of Coarse Cereal Processing of Ministry of Agriculture and Rural Affairs, Chengdu University, Chengdu, China.
Drug Deliv. 2023 Dec;30(1):2204207. doi: 10.1080/10717544.2023.2204207.
How to achieve stable co-delivery of multiple phytochemicals is a common problem. This study focuses on the development, optimization and characterization of Huanglian-HouPo extract nanoemulsion (HLHPEN), with multiple components co-delivery, to enhance the anti-ulcerative colitis (UC) effects. The formulation of HLHPEN was optimized by pseudo-ternary phase diagram combined with Box-Behnken design. The physicochemical properties of HLHPEN were characterized, and its anti-UC activity was evaluated in DSS-induced UC mice model. Based on preparation process optimization, the herbal nanoemulsion HLHPEN was obtained, with the droplet size, PDI value, encapsulation efficiency (EE) for 6 phytochemicals (berberine, epiberberine, coptisine, bamatine, magnolol and honokiol) of 65.21 ± 0.82 nm, 0.182 ± 0.016, and 90.71 ± 0.21%, respectively. The TEM morphology of HLHPEN shows the nearly spheroidal shape of particles. The optimized HLHPEN showed a brownish yellow milky single-phase and optimal physical stability at 25 °C for 90 days. HLHPEN exhibited the good particle stability and gradual release of phytochemicals in SGF and SIF, to resist the destruction of simulated stomach and small intestine environment. Importantly, the oral administration of HLHPEN significantly restored the shrunk colon tissue length and reduced body weight, ameliorated DAI value and colon histological pathology, decreased the levels of inflammatory factors in DSS-induced UC mice model. These results demonstrated that HLHPEN had a significant therapeutic effect on DSS-induced UC mice, as a potential alternative UC therapeutic agent.
如何实现多种植物化学物质的稳定共递是一个常见的问题。本研究聚焦于黄连-黄柏提取物纳米乳(HLHPEN)的开发、优化和表征,旨在实现多种成分的共递,以增强其抗溃疡性结肠炎(UC)的效果。通过伪三元相图结合 Box-Behnken 设计优化 HLHPEN 的配方。对 HLHPEN 的理化性质进行了表征,并在 DSS 诱导的 UC 小鼠模型中评价了其抗 UC 活性。基于制备工艺的优化,获得了草药纳米乳 HLHPEN,其载药 6 种植物化学物质(小檗碱、表小檗碱、黄连碱、巴马汀、厚朴酚和和厚朴酚)的粒径、PDI 值和包封率分别为 65.21 ± 0.82nm、0.182 ± 0.016 和 90.71 ± 0.21%。HLHPEN 的 TEM 形态显示出粒子的近球形形状。优化后的 HLHPEN 呈棕黄色乳光单相,在 25°C 下 90 天具有最佳的物理稳定性。HLHPEN 表现出良好的颗粒稳定性和植物化学物质的缓慢释放,能够抵抗模拟胃和小肠环境的破坏。重要的是,HLHPEN 的口服给药显著恢复了 DSS 诱导的 UC 小鼠缩短的结肠组织长度,降低了体重,改善了 DAI 值和结肠组织病理学,降低了 DSS 诱导的 UC 小鼠模型中炎症因子的水平。这些结果表明,HLHPEN 对 DSS 诱导的 UC 小鼠具有显著的治疗作用,有望成为一种潜在的 UC 治疗药物。