Xiao Yongrui, Ilić Tanja, Tošić Anđela, Ivković Branka, Tsaoulidis Dimitrios, Savić Snežana, Chen Tao
School of Chemistry and Chemical Engineering, University of Surrey, Guildford GU2 7XH, UK.
Department of Pharmaceutical Technology and Cosmetology, University of Belgrade-Faculty of Pharmacy, Vojvode Stepe 450, 11221 Belgrade, Serbia.
Int J Pharm. 2025 Mar 15;672:125306. doi: 10.1016/j.ijpharm.2025.125306. Epub 2025 Jan 31.
Topical skin products aim to address aesthetic, protective, and/or therapeutic needs through interaction with the human epidermal system. Traditionally, formulation development relies on empirical knowledge and trial-and-error experiments. In this paper, we introduced the Bayesian optimisation method and compared it with the traditional response surface methodology (RSM) for topical drug formulation. The objective was to optimise the formulation composition of ibuprofen gel-like to achieve a maximum flux through in vitro permeation tests (IVPTs). As a model system, poloxamer 407, ethanol, and propylene glycol (PG) were selected as the key excipients, whose concentrations were optimised. Strat-M membrane, serving as a surrogate for human skin, and Franz cell diffusion were employed in IVPTs. Two sets of experiments were conducted under identical conditions for 30 h. Under the RSM approach, the optimised ibuprofen gel-like formulation was identified with a poloxamer 407: ethanol: PG ratio of 20:20:10, achieving a measured permeation flux of 11.28 ± 0.35 μg cmh. In comparison, Bayesian optimisation, after four iterations, yielded an optimised formulation with a ratio of 20.95:19.44:12.14, resulting in a permeation flux of 14.15 ± 0.77 μg cmh. These findings highlight the potential of Bayesian optimisation as an effective tool for improving topical drug formulations.
局部皮肤产品旨在通过与人体表皮系统相互作用来满足美学、保护和/或治疗需求。传统上,制剂开发依赖于经验知识和反复试验实验。在本文中,我们介绍了贝叶斯优化方法,并将其与用于局部药物制剂的传统响应面法(RSM)进行了比较。目的是优化布洛芬凝胶样制剂的组成,以通过体外渗透试验(IVPT)实现最大通量。作为模型系统,选择泊洛沙姆407、乙醇和丙二醇(PG)作为关键辅料,并对其浓度进行了优化。在IVPT中采用Strat-M膜作为人体皮肤的替代物,并使用Franz细胞扩散法。在相同条件下进行了两组30小时的实验。在RSM方法下,确定了泊洛沙姆407:乙醇:PG比例为20:20:10的优化布洛芬凝胶样制剂,测得的渗透通量为11.28±0.35μg/cm²/h。相比之下,贝叶斯优化经过四次迭代后,得到了比例为20.95:19.44:12.14的优化制剂,渗透通量为14.15±0.77μg/cm²/h。这些发现突出了贝叶斯优化作为改进局部药物制剂的有效工具的潜力。