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March 6, 2026Discover Oncology0 citationsOpen Access

N-benzylbenzamide derivative (SBM685) as a novel MDR1 inhibitor for overcoming 5 fluorouracil resistance in gastric cancer through computational and in vitro analysis

MFMajed Al FayiADAyed A. Dera

Key Points

  • The aim is to develop and assess SBM685, a small molecule that inhibits MDR1 to combat 5-FU resistance in gastric cancer.
  • Used computational modeling with various tools like Discovery Studio and GROMACS to identify MDR1 inhibitors.
  • Conducted in vitro assays using MKN-45 and SNU-5 gastric cancer cell lines to test the efficacy of SBM685.
  • Measured docking scores and binding energies to evaluate the interactions between SBM685 and MDR1.
  • SBM685 showed a significant docking score of -9.4 kcal/mol and a favorable Gibbs binding free energy of -49.02 kcal/mol.
  • SBM685 reduced the population of MDR1-positive cells in treated gastric cancer lines.
  • Unlike 5-FU, SBM685 induced apoptosis in both parental and MDR1⁺ gastric cancer cells, proving more effective against chemoresistance.

Abstract

The overexpression of Multidrug Resistance Protein 1 (MDR1) contributes to the failure of existing chemotherapeutic agents like 5-fluorouracil (5FU). This study aims to identify and evaluate a novel small molecule inhibitor of MDR1 in 5FU-resistant gastric cancer (GC). Comprehensive in silico approach using Discovery Studio Visualizer, Protein-Ligand Interaction Profiler, GROMACS, and GMXMMPBSA methods were employed to identify potential MDR1 inhibitors from the ZINC natural product-like compound library. MKN-45 and SNU-5 cells were utilized in cell proliferative and flow cytometry assays for in vitro validations. Virtual screening identified SBM685 as a promising MDR1 inhibitor, with a docking score of -9. 4 kcal/mol. Root Mean Square Deviation (RMSD) values were around 0. 2 nm. Gibbs binding free energy calculations indicated a highly favorable binding energy of -49. 02 kcal/mol. SBM685 reduced the MDR1-positive (MDR1⁺) cell population in MKN-45 and SNU-5 gastric cancer cells. SBM685 also inhibited the proliferation of parental MKN-45 cells as well as MDR1⁺ MKN-45 and MDR1⁺ SNU-5 cells. In contrast, 5-fluorouracil (5-FU) showed limited efficacy in suppressing proliferation in MDR1⁺ gastric cancer cells. In addition, SBM685 induced apoptosis in both parental and MDR1⁺ gastric cancer cells, whereas 5-FU failed to promote apoptosis in MDR1⁺ cells. The combination of computational and in vitro evaluations indicates that SBM685 is a potent MDR1 inhibitor which is also effective in MDR1+ GC cells where 5FU exhibited resistance. The findings of this study highlight SBM685 as a promising candidate for further preclinical evaluations, that could pave the way for new therapeutic strategies in overcoming the MDR1-mediated chemoresistance of GC.

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Cite This Study

Fayi et al. (2026) studied this question.

synapsesocial.com/papers/69aa710d531e4c4a9ff5b5b6https://doi.org/10.1007/s12672-026-04767-x
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