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Encapsulation of Chemotherapeutic Drug Melphalan inCucurbit7uril: Effects on Its Alkylating Activity Hydrolysis andCytotoxicity

机译:化疗药物美法仑的包封葫芦7尿素:对其烷基化活性水解和细胞毒性

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摘要

The formation of inclusion complexes between drugs and macrocycles has proven to be an effective strategy to increase solubilization and stabilization of the drug, while in several cases improving their biological activity. In this context, we explored the formation of an inclusion complex between chemotherapeutic drug Melphalan (Mel) and cucurbit[7]uril (CB[7]), and studied its effect on Mel alkylating activity, hydrolysis, and cytotoxicity. The formation of the inclusion complex (Mel@CB[7]) was proven by absorption and fluorescence spectroscopy, NMR, docking studies, and molecular dynamics simulations. The binding constant for Mel and CB[7] was fairly high at pH 1 ((1.7 ± 0.7) × 106 M–1), whereas no binding was observed at neutral pH. The Mel@CB[7] complex showed a slightly decreased alkylating activity, whereas the cytotoxicity on the HL-60 cell line was maintained. The formation of the complex did not protect Mel from hydrolysis, and this result is discussed based on the simulated structure for the complex.
机译:事实证明,药物与大环化合物之间形成包涵体复合物是增加药物的溶解性和稳定性的有效策略,同时在某些情况下还可以改善其生物活性。在这种情况下,我们探索了化学治疗药物美法仑(Melphalan)和葫芦[7] uril(CB [7])之间的包合物的形成,并研究了其对Mel烷基化活性,水解和细胞毒性的影响。包合物(Mel @ CB [7])的形成已通过吸收和荧光光谱,NMR,对接研究和分子动力学模拟得到证明。 Mel和CB [7]的结合常数在pH 1时相当高((1.7±0.7)×10 6 M –1 ),而在pH 1时未观察到结合中性pH。 Mel @ CB [7]复合物显示出略微降低的烷基化活性,而维持了HL-60细胞系的细胞毒性。配合物的形成并不能保护Mel免受水解,因此基于配合物的模拟结构讨论了该结果。

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