Mondal Modhusudan, Basak Shatarupa, Ali Salim, Roy Debadrita, Saha Subhadeep, Ghosh Biswajit, Ghosh Narendra Nath, Lepcha Khusboo, Roy Kanak, Roy Mahendra Nath
Department of Chemistry, University of North Bengal Darjeeling-734013 India
Department of Chemistry, Government General Degree College Pedong Kalimpong-734311 India.
RSC Adv. 2022 Oct 28;12(48):30936-30951. doi: 10.1039/d2ra05072b. eCollection 2022 Oct 27.
The co-evaporation approach was used to examine the host-guest interaction and to explore the cytotoxic and antibacterial properties of an important anti-cancer medication, 6-mercaptopurine monohydrate (6-MP) with β-cyclodextrin (β-CD). The UV-Vis investigation confirmed the inclusion complex's (IC) 1 : 1 stoichiometry and was also utilized to oversee the viability of this inclusion process. FTIR, NMR, and XRD, among other spectrometric techniques, revealed the mechanism of molecular interactions between β-CD and 6-MP which was further hypothesized by DFT to verify tentative outcomes. TGA and DSC studies revealed that 6-MP's thermal stability increased after encapsulation. Because of the protection of drug 6-MP by β-CD, the formed IC was found to have higher photostability. This work also predicts the release behavior of 6-MP in the presence of CT-DNA without any chemical changes. An evaluation of the complex's antibacterial activity revealed that it was more effective than pure 6-MP. The cytotoxic activity against the human kidney cancer cell line (ACHN) was also found to be significant for the IC (IC = 4.18 μM) compared to that of pure 6-MP (IC = 5.49 μM). These findings suggest that 6-MP incorporation β-CD may result in 6-MP stability and effective presentation of its solubility, cytotoxic and antibacterial properties.
采用共蒸发法研究了主客体相互作用,并探究了一种重要抗癌药物一水合6-巯基嘌呤(6-MP)与β-环糊精(β-CD)的细胞毒性和抗菌性能。紫外-可见光谱研究证实了包合物(IC)的化学计量比为1:1,还用于监测该包合过程的可行性。傅里叶变换红外光谱(FTIR)、核磁共振(NMR)和X射线衍射(XRD)等光谱技术揭示了β-CD与6-MP之间的分子相互作用机制,密度泛函理论(DFT)进一步对其进行了假设以验证初步结果。热重分析(TGA)和差示扫描量热法(DSC)研究表明,6-MP包封后的热稳定性提高。由于β-CD对药物6-MP的保护作用,发现形成的IC具有更高的光稳定性。这项工作还预测了6-MP在CT-DNA存在下的释放行为,且无任何化学变化。对该配合物抗菌活性的评估表明,它比纯6-MP更有效。与纯6-MP(IC = 5.49 μM)相比,该IC对人肾癌细胞系(ACHN)的细胞毒性活性也很显著(IC = 4.18 μM)。这些发现表明,6-MP与β-CD结合可能会提高6-MP的稳定性,并有效展现其溶解性、细胞毒性和抗菌性能。