Li Jiaying, Li Tingyuan, Gong Mingjie, Wang Xiaowen, Hua Qinyang, Jiang Xia, Wang Qilong, Toreniyazov Elmurat, Yu Jiangnan, Cao Xia, Adu-Frimpong Michael, Xu Ximing
Department of Pharmaceutics, School of Pharmacy, Center for Nano Drug/Gene Delivery and Tissue Engineering, Jiangsu Provincial Research Center for Medicinal Function Development of New Food Resources, Jiangsu University, Zhenjiang, China.
Tashkent State Agricultural University (Nukus Branch), Nukus, Uzbekistan.
J Drug Target. 2025 Aug;33(7):1167-1178. doi: 10.1080/1061186X.2025.2469753. Epub 2025 Feb 24.
Phloretin exhibits strong antioxidant and anti-ageing properties by inhibiting mitochondrial oxidation of glutamate, succinic acid, and ascorbic acid. However, its clinical application is limited by poor aqueous solubility and low oral bioavailability. To enhance its bioavailability and efficacy, we incorporated phloretin into nano-micelles (phloretin-MM) using the thin film dispersion method. Characterisation revealed that the optimal formulation had TPGS and Pluronic F68 in a 4:1 ratio as the excipients, which resulted in spherical micelles with an average particle size of 33.28 nm and an encapsulation efficiency of 71.2 ± 0.48%. The release profile showed that the phloretin-MM showed significantly higher cumulative release rates than free phloretin across various pH conditions, while the pharmaceutical analysis in rats indicated that phloretin-MM significantly improved the oral bioavailability of phloretin (about 5 folds) in circulation. Additionally, through the analysis of the staining of zebrafish under light microscopy and the average gray value, it can be concluded that phloretin has anti-ageing drug effect, and phloretin-MM is better than free phloretin. These findings suggest that TPGS/Pluronic F68-modified phloretin-MM could serve as an excellent nano-drug carrier system, potentially enhancing the solubility, bioavailability, and anti-ageing effects of phloretin for broader clinical applications.
根皮素通过抑制谷氨酸、琥珀酸和抗坏血酸的线粒体氧化,表现出强大的抗氧化和抗衰老特性。然而,其临床应用受到水溶性差和口服生物利用度低的限制。为了提高其生物利用度和疗效,我们采用薄膜分散法将根皮素载入纳米胶束(根皮素-MM)。表征显示,最佳配方以4:1的比例使用TPGS和普朗尼克F68作为辅料,形成了平均粒径为33.28nm的球形胶束,包封率为71.2±0.48%。释放曲线表明,在各种pH条件下,根皮素-MM的累积释放率均显著高于游离根皮素,而在大鼠体内的药物分析表明,根皮素-MM显著提高了根皮素在循环中的口服生物利用度(约5倍)。此外,通过光学显微镜下斑马鱼染色和平均灰度值分析,可以得出根皮素有抗衰老药物作用,且根皮素-MM优于游离根皮素的结论。这些发现表明,TPGS/普朗尼克F68修饰的根皮素-MM可作为一种优良的纳米药物载体系统,有可能提高根皮素的溶解度、生物利用度和抗衰老效果,以用于更广泛的临床应用。