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February 9, 20260 citationsOpen Access

Synthesis and Multidisciplinary Preclinical Investigations of Ferrocenyl, Ruthenocenyl, and Benzyl Derivatives of Thiabendazole as New Drug Candidates against Soil-Transmitted Helminth Infections

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TKTanja KarpsteinAKApollonia KalamatianouSKSarah Keller

Key Points

  • The research aims to develop and evaluate new drug candidates derived from thiabendazole to combat soil-transmitted helminth infections.
  • Synthesize organometallic and benzyl derivatives of thiabendazole.
  • Characterize the chemical structure of the derivatives.
  • Evaluate biological activity on various life stages of nematodes.
  • Conduct toxicity assessments using carcinoma and neuroblastoma cell lines.
  • Perform in vivo studies in mouse models for efficacy assessment.
  • Benzyl derivative showed 80% activity against adult nematodes at 100 μM after 72 hours.
  • Ferrocenyl and ruthenocenyl derivatives demonstrated notable efficacy at 50 μM.
  • Significant reduction of worm burden (61-78%) was observed in mice after single oral doses of 100-200 mg/kg.
  • Thiabendazole derivatives extended the activity profile beyond the parent compound.

Abstract

An estimated 1.5 billion people worldwide are infected with at least one parasitic nematode species classified as soil-transmitted helminths (STHs). The recommended control strategy is to reduce morbidity using a single oral dose of the benzimidazole drugs, albendazole and mebendazole. The extensive use of benzimidazoles over the last decades has increased the risk of emerging drug resistance. Additional drawbacks, such as insufficient drug efficacy, particularly against hookworm and whipworm infections, highlight the urgent need for new and improved treatment options. In this work, we present the synthesis, characterization, and biological evaluation of four novel (organometallic and benzyl) derivatives (-) of the broad-spectrum anthelmintic thiabendazole. The evaluation of the derivatives on different life stages of five nematode species and demonstrated that the activity profile of thiabendazole could be extended. The highest activity was observed with benzyl derivative against adult (80% activity at 100 μM, after 72 h) compared to the parent compound thiabendazole (15% activity). Both ferrocenyl ( and ) and ruthenocenyl () derivatives demonstrated notable efficacy against adult at 50 μM. No toxicity was seen using the hepatocyte-derived carcinoma cell line HUH7 and the human neuroblastoma cell line SH-SY5Y. studies in the mouse model revealed worm burden reductions of 61-78% following single oral doses of 100-200 mg/kg. Future derivatization efforts could focus on two separate targets: one aimed at enhancing STH activity and a second series pursuing the antischistosomal activity.

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Cite This Study

Karpstein et al. (2025) studied this question.

synapsesocial.com/papers/69897a35f0ec2af6756e8952https://doi.org/10.5167/uzh-291087
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Synthesis and Antiparasitic Activities of New Organometallic Derivatives of the Benzimidazole Anthelmintic Drugs.2026
  2. 2Synthesis and Antiparasitic Activities of New Organometallic Derivatives of the Benzimidazole Anthelmintic Drugs2026
  3. 3EFFICACY OF CURRENT DRUGS AGAINST SOIL-TRANSMITTED HELMINTHS2026
  4. 4EFFICACY OF CURRENT DRUGS AGAINST SOIL-TRANSMITTED HELMINTHS2026
  5. 5Multidisciplinary Preclinical Investigations on Ferrocenyl, Ruthenocenyl, and Benzyl Derivatives of Niridazole as New Drug Candidates against Schistosomiasis2025