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October 11, 2025Scientific Reports6 citationsOpen Access

Molecular docking and pharmacokinetics of benzimidazole-based FtsZ inhibitors for tuberculosis

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PSPratiksha N. SonwaneMKManoj Ramesh Kumbhare

Key Points

  • Molecular docking revealed that some benzimidazole derivatives exhibit binding affinities greater than standard drugs.
  • Docking scores ranged from −6.8 to −9.6 kcal/mol, showcasing the promise of these compounds against tuberculosis.
  • Pharmacokinetic profiles predicted oral bioavailability, highlighting their potential effectiveness as treatments for tuberculosis.
  • The study integrates molecular docking with pharmacokinetics, identifying lead candidates for further development against tuberculosis.

Abstract

Benzimidazole derivatives are privileged heterocyclic scaffolds with broad-spectrum pharmacological activities, notably antitubercular and antibacterial. In particular, 1,2-disubstituted benzimidazoles have emerged as potent bioactive candidates due to their unique structural features and target specificity. In this study, fifty novel 1,2-disubstituted benzimidazole derivatives were computationally screened against Mycobacterium tuberculosis cell division protein FtsZ (PDB ID: 2Q1Y, GTP-γ-S complex) using AutoDock Vina v1.5.6. Docking poses were analyzed via PyMOL and Discovery Studio Visualizer to elucidate key binding interactions. Pharmacokinetic evaluation through SwissADME was performed to predict drug-likeness and ADME profiles. ADME analysis revealed that several lead candidates possessed favorable absorption, distribution, metabolism, and excretion properties, underscoring their suitability as orally bioavailable agents. Docking scores ranged from − 6.8 to − 9.6 kcal/mol, with multiple derivatives surpassing the binding affinity of standard antitubercular drugs, including isoniazid and para-aminosalicylic acid. The integration of structure-based molecular docking with in silico pharmacokinetic profiling highlights substituted benzimidazole scaffolds as promising next-generation FtsZ inhibitors for antitubercular drug development.

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Cite This Study

Sonwane et al. (2025) studied this question.

synapsesocial.com/papers/68ea72339f1bd4df558cec95https://doi.org/10.1038/s41598-025-18084-w
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