•  
  •  
 

Journal of Metals, Materials and Minerals

Publication Date

2026

Abstract

N-(4-Bromobenzoyl)-8-methoxypsoralen-4-amine (BNB) is a psoralen derivative with potent cytotoxic activity against breast cancer cells but with limited pharmaceutical application and therapeutic potential due to its extremely low aqueous solubility. To overcome this limitation, β-cyclodextrin (βCD) and its derivatives dimethyl-βCD (DMβCD), hydroxypropyl-βCD (HPβCD), and sulfobutylether-βCD (SBEβCD) were investigated as carriers to enhance BNB's aqueous solubility via cyclodextrin inclusion complexation. A combined computational–experimental strategy was employed, integrating molecular docking, 500-ns all-atom molecular dynamics simulations in quintuplicate runs (2.5 µs in total), and experimental validation by phase solubility analysis, scanning electron microscopy (SEM), and differential scanning calorimetry (DSC). Docking and simulations revealed stable host–guest interactions, with SBEβCD showing the most favorable binding free energies, the highest number of atomic contacts, and the lowest solvent-accessible surface area, indicative of deep and stable encapsulation. Phase solubility studies corroborated these findings, with BNB/SBEβCD exhibiting the highest apparent stability constant. The formation of the inclusion complex was further supported by SEM and DSC, which revealed pronounced morphological changes and thermal evidence consistent with encapsulation, including suppression of the BNB melting endotherm. 1H NMR spectroscopic analysis further confirmed complex formation through observed peak broadening and chemical shift perturbations upon complexation. Collectively, these results identify SBEβCD as a highly effective carrier for BNB, offering a rational approach to improve solubility through stable complex formation, and supporting its potential as a promising chemotherapeutic candidate for breast cancer treatment.

DOI

10.55713/jmmm.v36i3.2610

First Page

1

Last Page

10

Share

COinS
 
 

To view the content in your browser, please download Adobe Reader or, alternately,
you may Download the file to your hard drive.

NOTE: The latest versions of Adobe Reader do not support viewing PDF files within Firefox on Mac OS and if you are using a modern (Intel) Mac, there is no official plugin for viewing PDF files within the browser window.