Department of Chemistry, Faculty of Science, Silpakorn University, Nakhon Pathom 73000, Thailand.
Center of Excellence in Structural and Computational Biology, Department of Biochemistry, Chulalongkorn University, Bangkok 10330, Thailand.
Int J Mol Sci. 2022 Aug 29;23(17):9776. doi: 10.3390/ijms23179776.
Aurisin A (AA), an aristolane dimer sesquiterpene isolated from the luminescent mushroom Neonothopanus nambi, exhibits various biological and pharmacological effects. However, its poor solubility limits its use for further medicinal applications. This study aimed to improve the water solubility of AA via complexation with β-cyclodextrin (βCD) and its derivatives (2,6-di-O-methyl-βCD (DMβCD) and 2-hydroxypropyl-βCD (HPβCD). A phase solubility analysis demonstrated that the solubility of AA linearly enhanced with increasing concentrations of βCDs (ranked in the order of AA/DMβCD > AA/HPβCD > AA/βCD). Notably, βCDs, especially DMβCD, increased the thermal stability of the inclusion complexes. The thermodynamic study indicated that the complexation between AA and βCD(s) was a spontaneous endothermic reaction, and AA/DMβCD possesses the highest binding strength. The complex formation between AA and DMβCD was confirmed by means of FT-IR, DSC, and SEM. Molecular dynamics simulations revealed that the stability and compactness of the AA/DMβCD complex were higher than those of the DMβCD alone. The encapsulation of AA led to increased intramolecular H-bond formations on the wider rim of DMβCD, enhancing the complex stability. The antiproliferative activity of AA against A549 and H1975 lung cancer cells was significantly improved by complexation with DMβCD. Altogether, the satisfactory water solubility, high thermal stability, and enhanced antitumor potential of the AA/DMβCD inclusion complex would be useful for its application as healthcare products or herbal medicines.
Aurisin A (AA),一种从夜光蘑菇 Neonothopanus nambi 中分离出来的薁烷二聚倍半萜烯,具有多种生物和药理作用。然而,其较差的水溶性限制了其在进一步医学应用中的使用。本研究旨在通过与β-环糊精(βCD)及其衍生物(2,6-二-O-甲基-βCD(DMβCD)和 2-羟丙基-βCD(HPβCD))形成包合物来提高 AA 的水溶性。相溶解度分析表明,AA 的溶解度随βCD 浓度的增加呈线性增加(AA/DMβCD > AA/HPβCD > AA/βCD)。值得注意的是,βCD,特别是 DMβCD,提高了包合物的热稳定性。热力学研究表明,AA 与βCD 之间的络合是自发的吸热反应,AA/DMβCD 具有最高的结合强度。AA 与 DMβCD 之间的包合作用通过 FT-IR、DSC 和 SEM 得到证实。分子动力学模拟表明,AA/DMβCD 复合物的稳定性和紧凑性高于 DMβCD 单独存在的稳定性和紧凑性。AA 的包合导致 DMβCD 较宽边缘上的分子内氢键形成增加,从而增强了复合物的稳定性。与 DMβCD 络合后,AA 对 A549 和 H1975 肺癌细胞的增殖活性显著提高。总之,AA/DMβCD 包合物具有令人满意的水溶性、高热稳定性和增强的抗肿瘤潜力,可用于保健品或草药的应用。