University Institute of Pharmaceutical Sciences-UGC Centre of Advanced Study, Faculty of Pharmaceutical Sciences, Panjab University, Chandigarh, India.
University Institute of Pharmaceutical Sciences-UGC Centre of Advanced Study, Faculty of Pharmaceutical Sciences, Panjab University, Chandigarh, India.
J Pharm Sci. 2017 Aug;106(8):2026-2036. doi: 10.1016/j.xphs.2017.04.038. Epub 2017 Apr 26.
Cocrystal screening of hesperetin with certain countermolecules generated highly soluble noncovalent derivatives in the form of eutectics, instead of expected cocrystals. As adhesive forces established by complimentary functional groups on hesperetin and coformers were unable to overcome the stress due to size shape mismatch of component molecules, thus, eutectics were formed. Hesperetin, a polyphenolic antioxidant with potent anticancer and cardioprotective effects, has an underdeveloped role in modern therapeutics on account of its critically low aqueous solubility resulting in stunted bioavailability. The liquid-assisted cogrinding of hesperetin and coformers generated binary-phase eutectics in fixed stoichiometry with theophylline (1:1.5), adenine (2:1), gallic acid (1.5:1), and theobromine (2:1). Primarily characterized by lower melting endotherm in differential scanning calorimetry, the eutectics showed complete melting in hot-stage microscopy. Apart from characteristic V-shaped binary-phase diagram, no discernible changes in the FTIR and powder X-ray diffraction spectra further confirm eutectic formation. The morphological differences were analyzed by SEM measurements. A 2 to 4 times enhanced dissolution profile of the eutectics measured in pH 7.4 aqueous buffer was coupled with the in vitro (1,1-diphenyl-2-picryl hydroxyl free radical antioxidant assay and RBC antihemolytic assay) studies to present a complete preliminary data on the improved bioavailability of hesperetin eutectics.
橙皮素与某些抗衡分子的共晶筛选以共晶的形式生成了高度可溶的非共价衍生物,而不是预期的共晶。由于组成分子的大小形状不匹配导致的应力,橙皮素和共晶形成体上互补官能团建立的粘附力无法克服,因此形成了共晶。橙皮素是一种具有强大抗癌和心脏保护作用的多酚抗氧化剂,由于其极低的水溶解度导致生物利用度受限,因此在现代治疗中的作用尚未得到充分发挥。橙皮素和共晶形成体的液辅助共研磨以茶碱(1:1.5)、腺嘌呤(2:1)、没食子酸(1.5:1)和可可碱(2:1)的固定化学计量比生成二元相共晶。共晶主要通过差示扫描量热法中的较低熔融吸热来表征,在热台显微镜下显示完全熔融。除了特征性的 V 形二元相图外,傅里叶变换红外光谱和粉末 X 射线衍射光谱没有明显变化进一步证实了共晶的形成。通过扫描电子显微镜测量分析了形态差异。在 pH 7.4 水性缓冲液中测量的共晶的溶解曲线提高了 2 到 4 倍,与体外(1,1-二苯基-2-苦基苯肼自由基抗氧化测定和 RBC 抗溶血测定)研究相结合,提供了关于橙皮素共晶生物利用度提高的完整初步数据。