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8-溴黄芩素与β-环糊精包合络合的体外和计算机模拟研究

In vitro and in silico studies of the inclusion complexation of 8-bromobaicalein with β-cyclodextrins.

作者信息

Yasuda Noriyuki, Ali Saba, Aman Aamir, Krusong Kuakarun, Herfindo Noval, Chavasiri Warinthorn, Choowongkomon Kiattawee, Wolschann Peter, Mahalapbutr Panupong, Rungrotmongkol Thanyada, Hannongbua Supot

机构信息

Program in Biotechnology, Faculty of Science, Chulalongkorn University, Bangkok, 10330, Thailand.

Center of Excellence in Structural and Computational Biology, Department of Biochemistry, Faculty of Science, Chulalongkorn University, Bangkok, 10330, Thailand.

出版信息

J Mol Graph Model. 2024 Nov;132:108840. doi: 10.1016/j.jmgm.2024.108840. Epub 2024 Jul 31.

Abstract

Baicalein, a flavone derived from Scutellaria baicalensis Georgi, exhibits potent anti-inflammatory, antiviral, and anticancer properties. Its derivative, known as 8-bromobaicalein (BB), has been found to have strong cytotoxic effect on MCF-7 human breast cancer cells. However, its limited solubility in water has hindered its potential for wider applications. To address this issue, we investigated the use of cyclodextrins specifically βCD, 2,6-di-O-methyl-β-cyclodextrin (DMβCD), and hydroxypropyl-β-cyclodextrin (HPβCD) to improve the solubility of BB through inclusion complexation. During 250 ns molecular dynamics simulations, it was found that BB can form inclusion complexes with all βCDs. These complexes exhibit two distinct orientations: chromone group insertion (C-form) and phenyl group insertion (P-form). The formation of these complexes is primarily driven by van der Waals interactions. DMβCD has the highest number of atom contacts with BB and the lowest solvent accessibility in the hydrophobic cavity. These results coincide with the highest binding affinity from the MM/GBSA-based free energy calculation method. Experimental phase solubility diagrams revealed a 1:1 stoichiometric ratio (A type) between BB and βCDs, in which BB/DMβCD showed the highest stability. The formation of inclusion complexes was confirmed by differential scanning calorimetry and scanning electron microscope methods. Additionally, the BB/DMβCD inclusion complex demonstrated significantly higher anticancer activity against MCF-7 human breast cancer cells compared to BB alone. These findings underscore the potential of DMβCD for formulating BB in pharmaceutical and medical applications.

摘要

黄芩素是一种从黄芩中提取的黄酮类化合物,具有强大的抗炎、抗病毒和抗癌特性。其衍生物8-溴黄芩素(BB)对MCF-7人乳腺癌细胞具有很强的细胞毒性作用。然而,其在水中的溶解度有限,阻碍了其更广泛应用的潜力。为了解决这个问题,我们研究了使用环糊精,特别是β-环糊精(βCD)、2,6-二-O-甲基-β-环糊精(DMβCD)和羟丙基-β-环糊精(HPβCD),通过包合作用来提高BB的溶解度。在250纳秒的分子动力学模拟中,发现BB可以与所有βCD形成包合物。这些包合物呈现出两种不同的取向:色酮基团插入(C型)和苯基基团插入(P型)。这些包合物的形成主要由范德华相互作用驱动。DMβCD与BB的原子接触数最多,在疏水腔内的溶剂可及性最低。这些结果与基于MM/GBSA的自由能计算方法得出的最高结合亲和力一致。实验相溶解度图显示BB与βCD之间的化学计量比为1:1(A型),其中BB/DMβCD表现出最高的稳定性。通过差示扫描量热法和扫描电子显微镜方法证实了包合物的形成。此外,与单独的BB相比,BB/DMβCD包合物对MCF-7人乳腺癌细胞显示出显著更高的抗癌活性。这些发现强调了DMβCD在制药和医学应用中配制BB的潜力。

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