Franklin Stephen J, Myrdal Paul B
College of Pharmacy, University of Arizona, P.O Box 210202, Tucson, AZ, 85721, USA.
AAPS PharmSciTech. 2015 Dec;16(6):1400-8. doi: 10.1208/s12249-015-0329-6. Epub 2015 May 19.
Myricetin (MYR) is a natural compound that has been investigated as a chemopreventative agent. MYR has been shown to suppresses ultraviolet B (UVB)-induced cyclooxygenase-2 (COX-2) protein expression and reduce the incidence of UVB-induced skin tumors in mice. Despite MYR's promise as a therapeutic agent, minimal information is available to guide the progression of formulations designed for future drug development. Here, data is presented describing the solid-state and solution characterization of MYR. Investigation into the solid-state properties of MYR identified four different crystal forms, two hydrates (MYR I and MYR II) and two metastable forms (MYR IA and MYR IIA). From solubility studies, it was evident that all forms are very insoluble (<5 μg/ml) in pure water. MYR I was found to be the most stable form at 23, 35, and 56°C. Stability determination indicated that MYR undergoes rapid apparent first-order degradation under basic pH conditions, and that degradation was influenced by buffer species. Apparent first-order degradation was also seen when MYR was introduced to an oxidizing solution. Improved stability was achieved after introducing 0.1% antioxidants to the solution. MYR was found to have good stability following exposure to ultraviolet radiation (UVR), which is a consideration for topical applications. Finally, a partitioning study indicated that MYR possess a log P of 2.94 which, along with its solid-state properties, contributes to its poor aqueous solubility. Both the solid-state properties and solution stability of MYR are important to consider when developing future formulations.
杨梅素(MYR)是一种天然化合物,已被作为一种化学预防剂进行研究。研究表明,MYR可抑制紫外线B(UVB)诱导的环氧合酶-2(COX-2)蛋白表达,并降低小鼠UVB诱导的皮肤肿瘤发生率。尽管MYR有望成为一种治疗剂,但目前可用于指导未来药物开发配方进展的信息却很少。在此,本文呈现了描述MYR固态和溶液特性的数据。对MYR固态性质的研究确定了四种不同的晶体形式,两种水合物(MYR I和MYR II)以及两种亚稳形式(MYR IA和MYR IIA)。通过溶解度研究发现,所有形式在纯水中都极难溶解(<5μg/ml)。在23、35和56°C下,MYR I被发现是最稳定的形式。稳定性测定表明,MYR在碱性pH条件下会迅速发生明显的一级降解,且降解受缓冲液种类影响。当将MYR引入氧化溶液时也会出现明显的一级降解。向溶液中加入0.1%的抗氧化剂后稳定性得到改善。研究发现,MYR在暴露于紫外线辐射(UVR)后具有良好的稳定性,这对于局部应用来说是一个需要考虑的因素。最后,一项分配研究表明,MYR的log P为2.94,这与其固态性质一起导致了其水溶性较差。在开发未来配方时,MYR的固态性质和溶液稳定性都是需要考虑的重要因素。