Department of Pharmaceutics, School of Pharmacy, Ningxia Medical University, Yinchuan, China.
Department of Medical Science and Technology Research Center Department, Ningxia Medical University, Yinchuan, China.
Int J Pharm. 2022 Mar 25;616:121522. doi: 10.1016/j.ijpharm.2022.121522. Epub 2022 Jan 29.
Using nanocrystals (NCs) technology may be a promising drug delivery strategy for oral administration of multicomponent anticancer drugs. However, the intestinal epithelium and the mucus layer on the intestine extremely limited drug transport and absorption by orally. In this study, we selected multicomponent inartificial compound Bufadienolides (BU) with broad spectrum antitumor activity as the model drug to prepare BU NCs with different stabilizers by wet grinding, and explored the efficiency of penetrating through the mucus layer and transporting intestinal epithelial cells in vitro and ex vivo. Results revealed that BU NCs can dramatically improve dissolution behavior synergistically and the efficiency of mucus permeation. Besides, we found that BU NCs with different stabilizers enhanced cellular uptake, which was mainly attributed to increasing or changing the endocytosis pathway and plasma membrane/Endoplasmic reticulum (ER) pathway involved in the transmembrane transport of NCs. Furthermore, BU NCs could definitely improve intestinal absorption efficiency and change the absorption site of BU ex vivo. This multi-angle exploration will provide reference for the development of BU oral delivery formulations.
利用纳米晶体(NCs)技术可能是一种很有前途的药物输送策略,可用于口服多组分抗癌药物。然而,肠道上皮细胞和肠道上的黏液层极大地限制了药物的传输和吸收。在本研究中,我们选择具有广谱抗肿瘤活性的多组分人工合成化合物蟾毒内酯(BU)作为模型药物,通过湿磨法用不同稳定剂制备 BU NCs,并探讨了其在体外和体内穿透黏液层和转运肠上皮细胞的效率。结果表明,BU NCs 可以显著改善协同增溶作用和黏液渗透效率。此外,我们发现不同稳定剂的 BU NCs 增强了细胞摄取,这主要归因于增加或改变了内吞作用途径和参与 NCs 跨膜转运的质膜/内质网(ER)途径。此外,BU NCs 可以显著提高肠道吸收效率并改变 BU 的吸收部位。这种多角度的探索将为 BU 口服制剂的开发提供参考。