State Key Laboratory of Component‑Based Chinese Medicine, College of Pharmaceutical Engineering of Traditional Chinese Medicine, Haihe Laboratory of Modern Chinese Medicine, Tianjin University of Traditional Chinese Medicine, Tianjin, 301617, China.
Military Medicine Section, Dongli District, Logistics University of People's Armed Police Force, 1 Huizhihuan Road, Tianjin, 300309, China.
Drug Deliv Transl Res. 2023 Dec;13(12):3132-3144. doi: 10.1007/s13346-023-01376-x. Epub 2023 Jun 25.
The absorption of drugs was impeded in the posterior part of the eye due to the special structure. In addition, it was crucial to comprehend transport laws of molecules in ocular drug delivery for designing effective strategies. However, the current quality evaluation methods of the eye were backward and lack of dynamic monitoring of drug processes in vivo. Herein, nano-drug delivery system and three-dimensional (3D) model were combined to overcome the problems of low bioavailability and diffusion law. The model drugs were screened by molecular docking. The flexible nano-liposome (FNL) and temperature-sensitive gel (TSG) composite formulation was characterized through comprehensive evaluation. COMSOL software was utilized to build 3D eyeball to predict the bioavailability of drugs. The size of the preparation was about 98.34 nm which is relatively optimal for the enhanced permeability of the eyes. The formulation showed a stronger safety and non-irritant. The pharmacokinetics results of aqueous humor showed that the AUC of two drugs in this system increased by 3.79 and 3.94 times, respectively. The results of 3D calculation model proved that the concentrations of drugs reaching the retina were 1.90×10 mol/m and 6.37×10 mol/m. In conclusion, the FNL-TSG markedly improved the bioavailability of multiple components in the eye. More importantly, a simplified 3D model was developed to preliminarily forecast the bioavailability of the retina after drug infusion, providing technical support for the accurate evaluation of ocular drug delivery. It provided new pattern for the development of intelligent versatile ophthalmic preparations.
由于特殊的结构,药物在后眼部的吸收受到了阻碍。此外,理解眼部药物传递中分子的转运规律对于设计有效的策略至关重要。然而,目前眼部的质量评价方法落后,缺乏对体内药物过程的动态监测。在此,通过将纳米药物传递系统和三维(3D)模型相结合,克服了生物利用度低和扩散规律的问题。通过分子对接筛选模型药物。通过综合评价,对柔性纳米脂质体(FNL)和温敏凝胶(TSG)复合制剂进行了表征。利用 COMSOL 软件建立 3D 眼球来预测药物的生物利用度。制剂的大小约为 98.34nm,这对于增强眼部通透性相对较为理想。该制剂表现出更强的安全性和非刺激性。房水的药代动力学结果表明,两种药物在该系统中的 AUC 分别增加了 3.79 倍和 3.94 倍。3D 计算模型的结果表明,到达视网膜的药物浓度分别为 1.90×10mol/m 和 6.37×10mol/m。总之,FNL-TSG 显著提高了眼部多种成分的生物利用度。更重要的是,开发了简化的 3D 模型,初步预测了药物输注后视网膜的生物利用度,为眼部药物传递的准确评价提供了技术支持。为智能多功能眼科制剂的发展提供了新的模式。