Rady Al-Shimaa S M, Sidhom Peter A, Mohamed Lamiaa A, Ibrahim Khalid Elfaki, Khan Shahzeb, Ibrahim Mahmoud A A
Computational Chemistry Laboratory, Chemistry Department, Faculty of Science, Minia University Minia 61519 Egypt
Department of Pharmaceutical Chemistry, Faculty of Pharmacy, Tanta University Tanta 31527 Egypt.
RSC Adv. 2025 Sep 10;15(39):32626-32637. doi: 10.1039/d5ra04351d. eCollection 2025 Sep 5.
Cyclodextrins (CDs) have emerged as a promising strategy for the targeted drug delivery process. Herein, the potential of β-cyclodextrin (β-CD) as a drug delivery system for the Ampyra (AMP) drug was extensively investigated. By means of the molecular dynamics (MD) simulation technique, the inclusion process of AMP with β-CD was first examined and consequently subjected to clustering analysis. Upon the obtained five configurations (A↔E) of AMP⋯β-CD complex, extensive density functional theory (DFT) calculations were executed. The favorability of the quested encapsulation process was affirmed by negative adsorption and interaction energies of the selected configurations A↔E affirmed the occurrence of the quested encapsulation process. In particular, configuration A is more energetically preferred compared to other analogs. The insights from SAPT analysis verified the dominant role of electrostatic and dispersion forces in the interactions within the studied configurations A↔E. From QTAIM and NCI analyses, the occurrence and nature of intermolecular interactions within the studied configurations A↔E were illustrated. As per the electronic analysis, the effect of the AMP encapsulation process on the electronic features of β-CD was emphasized. The enhancing impact of the aqueous medium on the studied configurations A↔E was verified by negative adsorption and solvation energies. Moreover, the calculated recovery time values pinpointed the separation potential of AMP from β-CD at the target cell. Overall, the obtained outcomes provided insights into the potential application of β-CD as a drug delivery system, particularly for AMP drug.
环糊精(CDs)已成为靶向药物递送过程中一种很有前景的策略。在此,对β-环糊精(β-CD)作为Ampyra(AMP)药物递送系统的潜力进行了广泛研究。借助分子动力学(MD)模拟技术,首先研究了AMP与β-CD的包合过程,并对其进行聚类分析。在获得AMP⋯β-CD复合物的五种构型(A↔E)后,进行了广泛的密度泛函理论(DFT)计算。所选构型A↔E的负吸附和相互作用能证实了所研究包封过程的可行性,证实了所研究包封过程的发生。特别是,与其他类似物相比,构型A在能量上更受青睐。SAPT分析的结果证实了静电和色散力在所研究构型A↔E相互作用中的主导作用。通过QTAIM和NCI分析,阐明了所研究构型A↔E内分子间相互作用的发生和性质。根据电子分析,强调了AMP包封过程对β-CD电子特征的影响。负吸附和溶剂化能证实了水介质对所研究构型A↔E的增强作用。此外,计算得到的恢复时间值确定了在靶细胞处AMP与β-CD的分离潜力。总体而言,所得结果为β-CD作为药物递送系统,特别是用于AMP药物的潜在应用提供了见解。