Wang Xiao, Gu Huan, Zhang Huan, Xian Jing, Li Jingjing, Fu Chaomei, Zhang Chen, Zhang Jinming
State Key Laboratory of Southwestern Chinese Medicine Resources, School of Pharmacy, Chengdu University of Traditional Chinese Medicine, Chengdu 611130, China.
Department of Pharmacology and Pharmacy, University of Hong Kong, Hong Kong 999077, China.
ACS Appl Mater Interfaces. 2021 Jul 28;13(29):33948-33961. doi: 10.1021/acsami.1c09804. Epub 2021 Jul 15.
Although magnolol (Mag), an anti-inflammatory natural compound, has been demonstrated to play protective effects on ulcerative colitis (UC), its application as an alternative therapeutic reagent for UC treatment is still greatly impeded due to its poor stability in the gastrointestinal tract and insufficient accumulation in the inflamed colon lesion. Nano-/microsized drug delivery systems can potentially overcome some challenges regarding the oral administration of phytochemicals, which still confront premature early drug release, degradation of NPs, or the sustained drug release of MPs. In this study, we primarily loaded Mag into the core-shell zein-based nanoparticles with chondroitin sulfate coating (Mag@CS-Zein NPs) with an average size of 142.27 ± 5.11 nm, showing significant macrophage-targeting and enhanced colon epithelial cellular uptake capacity. Then, we embedded Mag@CS-Zein NPs into hydrogel microspheres via an electrospraying technology. The Mag@CS-Zein NPsinMPs presented a uniform-sized sphere with an average size of 164.36 ± 6.29 μm and sustained drug-release profiles. Compared to CS-Zein NPs, the developed CS-Zein NPsinMPs exhibited prolonged colon retention on the inflammatory surface, as seen from and imaging fluorescence adhesion experiments. Based on the advantage of the combination of hybrid nanoparticles-in-microparticles, oral administration of Mag@CS-Zein NPsinMPs significantly alleviated colitis symptoms in DSS-treated mice by regulating the expression levels of proinflammatory cytokines (TNF-α, IL-6, and IL-1β) and anti-inflammatory cytokines (IL-10) and factor accelerated colonic mucosal barrier repair via upregulating the expression of ZO-1 and occludin. This study provides great insights into the oral drug delivery of natural compounds for UC therapy.
尽管厚朴酚(Mag)作为一种抗炎天然化合物,已被证明对溃疡性结肠炎(UC)具有保护作用,但其作为UC治疗的替代治疗试剂的应用仍然受到极大阻碍,因为它在胃肠道中稳定性差,且在炎症性结肠病变中的蓄积不足。纳米/微米级药物递送系统有可能克服植物化学物质口服给药方面的一些挑战,这些挑战仍然包括药物过早释放、纳米颗粒降解或微颗粒药物持续释放等问题。在本研究中,我们首先将厚朴酚负载到平均尺寸为142.27±5.11 nm的硫酸软骨素包被的核壳型玉米醇溶蛋白纳米颗粒(Mag@CS-Zein NPs)中,该纳米颗粒显示出显著的巨噬细胞靶向性和增强的结肠上皮细胞摄取能力。然后,我们通过电喷雾技术将Mag@CS-Zein NPs嵌入水凝胶微球中。Mag@CS-Zein NPs-in-MPs呈现出平均尺寸为164.36±6.29μm的均匀尺寸球体,并具有药物持续释放曲线。与CS-Zein NPs相比,从成像荧光粘附实验可以看出,所开发的CS-Zein NPs-in-MPs在炎症表面的结肠滞留时间延长。基于纳米颗粒-微颗粒组合的优势,口服Mag@CS-Zein NPs-in-MPs通过调节促炎细胞因子(TNF-α、IL-6和IL-1β)和抗炎细胞因子(IL-10)的表达水平,显著减轻了DSS处理小鼠的结肠炎症状,并且通过上调ZO-1和闭合蛋白的表达加速了结肠黏膜屏障修复。本研究为UC治疗中天然化合物的口服药物递送提供了重要见解。