Anjani Qonita Kurnia, Demartis Sara, Volpe-Zanutto Fabiana, Li Huanhuan, Sabri Akmal Hidayat Bin, Gavini Elisabetta, Donnelly Ryan F
School of Pharmacy, Queen's University Belfast, Medical Biology Centre, 97 Lisburn Road, Belfast BT9 7BL, UK.
Fakultas Farmasi, Universitas Megarezky, Jl. Antang Raya No. 43, Makassar 90234, Indonesia.
Pharmaceutics. 2023 Jan 25;15(2):408. doi: 10.3390/pharmaceutics15020408.
Rose Bengal (RB) is a fluorescent dye with several potential biomedical applications, particularly in dermatology. Due to RB's poor physicochemical properties, several advanced delivery systems have been developed as a potential tool to promote its permeation across the skin. Nevertheless, no validated quantitative method to analyse RB within the skin is described in the literature. Considering RB exhibits a conjugated ring system, the current investigation proposes fluorescence-based techniques beneficial for qualitatively and quantitatively determining RB delivered to the skin. Notably, the development and validation of a fluorescence-coupled HPLC method to quantify RB within the skin matrix are herein described for the first time. The method was validated based on the ICH, FDA and EMA guidelines, and the validated parameters included specificity, linearity, LOD, LLOQ, accuracy and precision, and carry-over and dilution integrity. Finally, the method was applied to evaluate RB's ex vivo permeation and deposition profiles when loaded into dermatological formulations. Concerning qualitative determination, multiphoton microscopy was used to track the RB distribution within the skin strata, and fluorescence emission spectra were investigated to evaluate RB's behaviour when interacting with different environments. The analytical method proved specific, precise, accurate and sensitive to analyse RB in the skin. In addition, qualitative side-analytical techniques were revealed to play an essential role in evaluating the performance of RB's dermatological formulation.
孟加拉玫瑰红(RB)是一种具有多种潜在生物医学应用的荧光染料,尤其在皮肤病学领域。由于RB的物理化学性质不佳,已开发出几种先进的递送系统作为促进其透过皮肤的潜在工具。然而,文献中未描述用于分析皮肤内RB的经过验证的定量方法。考虑到RB具有共轭环系统,当前的研究提出了基于荧光的技术,这些技术有利于定性和定量测定递送至皮肤的RB。值得注意的是,本文首次描述了一种用于定量皮肤基质中RB的荧光耦合高效液相色谱法的开发和验证。该方法根据国际人用药品注册技术协调会(ICH)、美国食品药品监督管理局(FDA)和欧洲药品管理局(EMA)的指南进行了验证,验证的参数包括特异性、线性、检测限(LOD)、定量限(LLOQ)、准确度和精密度,以及残留和稀释完整性。最后,该方法被应用于评估RB负载到皮肤病学制剂中的离体渗透和沉积概况。关于定性测定,使用多光子显微镜跟踪RB在皮肤各层中的分布,并研究荧光发射光谱以评估RB与不同环境相互作用时的行为。该分析方法被证明对分析皮肤中的RB具有特异性、精确性、准确性和灵敏性。此外,定性的辅助分析技术在评估RB皮肤病学制剂的性能方面发挥了重要作用。