Rao Monica R P, Shirsath Chaitanya
Department of Pharmaceutics, AISSMS College of Pharmacy, Kennedy road, Near R.T.O, Pune, 411001, Maharashtra, India.
AAPS PharmSciTech. 2017 Jul;18(5):1728-1738. doi: 10.1208/s12249-016-0636-6. Epub 2016 Oct 18.
Efavirenz is a non-nucleoside reverse transcriptase inhibitor which is chronically prescribed for HIV patients. However, it exhibits solubility-limited bioavailability. Aim of this work was to enhance the solubility and dissolution of the Biopharmaceutical Classification System (BCS) class II drug efavirenz, using beta-cyclodextrin-based nanosponges. Nanosponges have high drug loading capacity and are effective for solubility enhancement. Beta-cyclodextrin was crosslinked with carbonates in different ratios to prepare nanosponges. The nanosponges were loaded with efavirenz by solvent evaporation method and the nanosponge with higher drug loading capacity was selected for further studies. Binary and ternary complexes with EFA, NS, and PVP K30 were prepared and characterized by phase solubility, solution state interaction, saturation solubility, in vitro dissolution, and in vivo pharmacokinetics. Spectral analysis by Fourier transform infrared spectroscopy, powder X-ray diffraction, differential scanning calorimetry, and field emission scanning electron microscopy was performed. Results obtained from spectral characterization confirmed inclusion complexation. Stability constant for ternary complex was found to be 1997 lit/mole, which indicates stable complex formation. The saturation solubility was found to be 17-fold higher with ternary complex in distilled water and about 4-fold in simulated gastric fluid. In vitro dissolution was improved 3 folds with ternary complex. Ternary nanosponge complexes were found to have 2-fold increase in oral bioavailability of efavirenz as compared to plain drug.
依非韦伦是一种非核苷类逆转录酶抑制剂,长期用于治疗艾滋病患者。然而,它的生物利用度受溶解度限制。本研究旨在使用β-环糊精基纳米海绵提高生物药剂学分类系统(BCS)II类药物依非韦伦的溶解度和溶出度。纳米海绵具有较高的载药量,对提高溶解度有效。将β-环糊精与不同比例的碳酸盐交联制备纳米海绵。通过溶剂蒸发法将依非韦伦载入纳米海绵中,选择载药量较高的纳米海绵进行进一步研究。制备了依非韦伦(EFA)、纳米海绵(NS)和聚乙烯吡咯烷酮K30(PVP K30)的二元和三元复合物,并通过相溶解度、溶液状态相互作用、饱和溶解度、体外溶出度和体内药代动力学进行表征。采用傅里叶变换红外光谱、粉末X射线衍射、差示扫描量热法和场发射扫描电子显微镜进行光谱分析。光谱表征结果证实了包合络合作用。发现三元复合物的稳定常数为1997升/摩尔,表明形成了稳定的复合物。在蒸馏水中,三元复合物的饱和溶解度提高了17倍,在模拟胃液中提高了约4倍。三元复合物的体外溶出度提高了3倍。与普通药物相比,三元纳米海绵复合物使依非韦伦的口服生物利用度提高了2倍。