National Pharmaceutical Engineering Center for Solid Preparation in Chinese Herbal Medicine, Jiangxi University of Chinese Medicine, Nanchang, 330006, People's Republic of China.
AAPS PharmSciTech. 2024 Sep 5;25(7):206. doi: 10.1208/s12249-024-02898-4.
Intestinal lymphatic transport offers an alternative and effective way to deliver drugs, such as avoiding first-pass metabolism, enhancing oral bioavailability, and facilitating the treatment of targeted lymphoid-related diseases. However, the clinical use of luteolin (LUT) is limited by its poor water solubility and low bioavailability, and enhancing lymphatic transport by nanoemulsion may be an efficient way to enhance its oral bioavailability. The objective of this work is to prepare the luteolin nanoemulsions (LUT NEs), optimized its preparation parameters by using Box-Behnken design optimization (BBD) and evaluated it in vitro and in vivo. An Caco-2 / Raji B cell co-incubation monolayer model was established to simulate the M-cell pathway, and the differences in the transmembrane transport of LUT and NEs were compared. Cycloheximide (CHX) was utilized to establish rat chylomicron (CM) blocking model, and for investigating the influence of pharmacokinetic parameters in rats thereafter. The results showed that LUT NEs have good stability, the particle sizes were about 23.87 ± 0.57 nm. Compared with LUT suspension, The P of LUT NEs was enhanced for 3.5-folds, the oral bioavailability was increased by about 2.97-folds. In addition, after binding with chylomicron, the oral bioavailability of LUT NEs was decreased for about 30% (AUC (μg/L*h): 5.356 ± 1.144 vs 3.753 ± 0.188). These results demonstrated that NEs could enhance the oral absorption of luteolin via lymphatic transport routes.
肠淋巴转运为药物提供了一种替代且有效的传递途径,例如避免首过代谢、提高口服生物利用度,并有助于治疗靶向淋巴相关疾病。然而,木樨草素(LUT)的临床应用受到其较差的水溶性和低生物利用度的限制,通过纳米乳增强淋巴转运可能是提高其口服生物利用度的有效方法。本工作旨在制备木樨草素纳米乳(LUT NEs),通过 Box-Behnken 设计优化(BBD)优化其制备参数,并对其进行体内外评价。建立了 Caco-2/Raji B 细胞共培养单层模型来模拟 M 细胞途径,并比较了 LUT 和 NEs 的跨膜转运差异。利用环己酰亚胺(CHX)建立大鼠乳糜微粒(CM)阻断模型,研究其对大鼠药代动力学参数的影响。结果表明,LUT NEs 具有良好的稳定性,粒径约为 23.87±0.57nm。与 LUT 混悬液相比,LUT NEs 的 P 值提高了 3.5 倍,口服生物利用度提高了约 2.97 倍。此外,与乳糜微粒结合后,LUT NEs 的口服生物利用度降低了约 30%(AUC(μg/L*h):5.356±1.144 比 3.753±0.188)。这些结果表明 NEs 可以通过淋巴转运途径增强木樨草素的口服吸收。