Muldakhmetov Zeinolla, Fazylov Serik, Nurkenov Oral, Gazaliev Arstan, Sarsenbekova Akmaral, Pustolaikina Irina, Nurmaganbetov Zhangeldy, Seilkhanov Olzhas, Alsfouk Aisha A, Elkaeed Eslam B, Eissa Ibrahim H, Metwaly Ahmed M
Institute of Organic Synthesis and Coal Chemistry, Karaganda 100012, Kazakhstan.
Department of Physical and Analytical Chemistry, Chemistry Faculty, Karagandy University of the Name of Academician E.A. Buketov, Karaganda 100024, Kazakhstan.
Plants (Basel). 2022 Aug 31;11(17):2283. doi: 10.3390/plants11172283.
The encapsulation of the famous alkaloid, anabasine, with β-CD was studied to obtain a more stable and bioavailable inclusion complex. Various in silico and experimental studies of the obtained β-CD-anabasine complex are presented. Firstly, molecular docking studies were conducted against the α, β, and γ cyclodextrins to explore which subclass is the best for encapsulation. The obtained results that pointed at β-cyclodextrin were further confirmed by five MD simulations and MM-PBSA studies. Experimentally, the spectral properties of the anabasine β-cyclodextrin complex were determined by FT-IR, H, and C-NMR spectroscopic methods. Additionally, the surface morphology of the anabasine β-cyclodextrin was investigated using a scanning electron microscope. Furthermore, the outputs of the thermographic measurements utilizing a differential scanning calorimeter were displayed. The activation energy of the reaction of thermo-oxidative destruction of the clathrate complex was calculated, and the kinetic parameters of the thermal destruction processes were decided using the Freeman-Carroll, Sharpe-Wentworth, Achar, and Coates-Redfern methods. The kinetic parameters of the thermal decomposition of the anabasine β-cyclodextrin were in agreement and verified the reliability of the obtained results. The obtained computational, spectral, morphological, and thermogravimetric results verified the successful formation of the anabasine β-cyclodextrin complex.
对著名生物碱新烟草碱与β-环糊精的包封进行了研究,以获得更稳定且生物可利用的包合物。介绍了所获得的β-环糊精-新烟草碱复合物的各种计算机模拟和实验研究。首先,针对α、β和γ环糊精进行了分子对接研究,以探索哪个亚类最适合包封。指向β-环糊精的所得结果通过五次分子动力学模拟和分子力学/泊松-玻尔兹曼表面积法研究得到进一步证实。在实验上,新烟草碱β-环糊精复合物的光谱性质通过傅里叶变换红外光谱、氢谱和碳-核磁共振光谱法测定。此外,使用扫描电子显微镜研究了新烟草碱β-环糊精的表面形态。此外,展示了利用差示扫描量热仪进行的热成像测量结果。计算了包合物热氧化破坏反应的活化能,并使用弗里曼-卡罗尔法、夏普-温特沃斯法、阿查尔法和科茨-雷德费恩法确定了热破坏过程的动力学参数。新烟草碱β-环糊精热分解的动力学参数一致,并验证了所得结果的可靠性。所获得的计算、光谱、形态和热重分析结果证实了新烟草碱β-环糊精复合物的成功形成。