First Multigram Scale-Up and Synthesis of Novel Valerolactam- Benzimidazole Hybrid Anthelmintic

Author:

Ramos Juan Carlos12ORCID,Manta Eduardo12,Colobbio Maximiliano12ORCID,Duarte Gerardo12,Melian María Elisa34,Silvera Mauricio12,Teixeira Ramiro35,Dominguez Laura3

Affiliation:

1. Laboratorio de Química Fina, Instituto Polo Tecnológico de Pando (IPTP), Facultad de Química, Universidad de la República (UdelaR), Pando, Uruguay

2. Departamento de Química Orgánica (DQO), Facultad de Química, Universidad de la República (UdelaR), Montevideo, Uruguay

3. Área Farmacología, Departamento de Ciencias Farmacéuticas (CIENFAR), Facultad de Química, Universidad de la República (UdelaR), Montevideo, Uruguay

4. Graduate Program in Chemistry, Facultad de Química, Universidad de la República (UdelaR), Montevideo , Uruguay

5. Graduate Program in Chemistry, Facultad de Química, Universidad de la República (UdelaR), Montevideo, Uruguay

Abstract

Background: Infections caused by helminth parasites are the main cause of economic losses in the livestock industry worldwide. The rapid resistance acquired by different parasites against commercially available drugs motivates the search, design and development of new compounds capable of overcoming this situation. Previously, our group reported the novel hybrid valerolactam-fenbendazole (VAL-FBZ) compound with in vitro anthelmintic activity and good ex vivo parasite permeation. Objective: Optimization of the novel hybrid VAL-FBZ compound synthesis and scale-up to multigram order necessary for in vivo assays. Methods: For the hybrid VAL-FBZ synthesis, convergent strategy was utilized. To obtain the benzimidazole core, widely available fenbendazole and L-Ornithine hydrochloride synthesis were used. The key step was the coupling reaction, for which an inexpensive coupling agent of uronium salt family was used. Optimization was carried out searching the minimizing risks and costs at up scaling to multigram level. Results: In the first stage, the most precursors of Valerolactam and Benzimidazole cores were synthesized on a decagram scale getting better results than previous reports. Also, the coupling reaction was carried out using HBTU to obtain VAL-FBZ with above 99% HPLC purity, and an overall yield of 48%. The successful synthesis was developed without chromatographic purification in any step to minimize few risks for the operator. Conclusion: Successfully, an efficient multigram and economic process is reported.

Publisher

Bentham Science Publishers Ltd.

Subject

Drug Discovery,Pharmaceutical Science,Molecular Medicine

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