Department of Pharmaceutics, Semmelweis University, Hőgyes E. Street 7-9, Budapest, 1092, Hungary.
Department of Organic Chemistry, Semmelweis University, Hőgyes E. Street 7-9, Budapest, 1092, Hungary.
AAPS PharmSciTech. 2019 Sep 16;20(8):314. doi: 10.1208/s12249-019-1525-6.
Baicalin is a flavone glycoside extracted from Scutellaria baicalensis, a traditional Chinese herbal medicine. Numerous pharmacological effects of baicalin were reported (e.g. antioxidant, anxiolytic); nevertheless, the most important physicochemical properties influencing the pharmacokinetic behaviour and the concomitant oral bioavailability have not yet been described in a comprehensive study. The aim of this project was to characterize the acid-base, lipophilicity, biorelevant solubility and permeability properties of the drug substance and providing scientific data to support the dosage form design. Another important objective was the comparative evaluation of six various baicalin-cyclodextrin (CD) inclusion complexes along with the creation of a suitable Drug Delivery System (DDS) for this BCS IV drug. Biorelevant profiling was carried out by NMR-pH titrations, saturation shake-flask and distribution coefficients (logP) measurements, while CD inclusion studies were fulfilled by experimental methods (phase solubility, H/C NMR, 2D ROESY) and computational approaches. Due to low aqueous solubility (67.03 ± 1.60 μg/ml) and low permeability (P = 0.037 × 10 cm/s), baicalin is classified as BCS IV. The γ-CD complexation significantly increased the solubility of baicalin (~ 5 times). The most promoted chemical shift change occurred in baicalin-γ-CD complex. Computational studies showed disparate binding pattern for baicalin in case of β- and γ-CD; furthermore, the calculated complexation energy was - 162.4 kJ mol for β-CD, while it was significantly stronger for γ-CD (- 181.5 kJ mol). The physicochemical and structural information of baicalin and its CD complexes introduced herein can create molecular basis for a promising DDS with enhanced bioavailability containing a bioactive phytopharmacon.
黄芩苷是一种从黄芩中提取的黄酮糖苷,黄芩是一种传统的中药。已有大量关于黄芩苷的药理作用的报道(例如抗氧化、抗焦虑);然而,尚未有综合研究描述影响药代动力学行为和口服生物利用度的最重要理化性质。本项目的目的是表征药物的酸碱、亲脂性、生物相关溶解度和渗透性,并提供科学数据以支持剂型设计。另一个重要目标是比较评价六种不同的黄芩-环糊精(CD)包合物,并为该 BCS IV 药物创建合适的药物传递系统(DDS)。生物相关分析通过 NMR-pH 滴定、饱和振摇瓶和分配系数(logP)测量进行,而 CD 包合研究通过实验方法(相溶解度、H/C NMR、二维 ROESY)和计算方法进行。由于水溶解度低(67.03±1.60μg/ml)和渗透性低(P=0.037×10cm/s),黄芩苷被归类为 BCS IV。γ-CD 络合显著提高了黄芩苷的溶解度(约 5 倍)。黄芩苷-γ-CD 络合物的化学位移变化最大。计算研究表明,β-CD 和 γ-CD 对黄芩苷的结合模式不同;此外,β-CD 的计算络合能为-162.4kJ/mol,而 γ-CD 的络合能显著更强(-181.5kJ/mol)。本文介绍的黄芩及其 CD 络合物的理化和结构信息可以为含有生物活性植物药的具有增强生物利用度的有前途的 DDS 奠定分子基础。