Natural and Synthetic Naphthoquinones as Potential Anti-Infective Agents

Author:

Ortiz-Pérez Eyra1,Rivera Gildardo1,Salas Cristian O.2,Zarate-Ramos Juan J.3,Trofymchuk Oleksandra S.4,Hernandez-Soberanis Lucio5,Perales-Flores Juanita D.6,Vázquez Karina3ORCID

Affiliation:

1. Laboratorio de Biotecnologia Farmaceutica, Centro de Biotecnologia Genomica, Instituto Politecnico Nacional, Reynosa, Mexico

2. Departamento de Quimica Organica, Facultad de Quimica y de Farmacia, Pontificia Universidad Catolica de Chile, Santiago, Chile

3. Facultad de Medicina y Veterinaria, Universidad Autonoma de Nuevo Leon, Gral. Escobedo, Mexico

4. Departamento de Quimica Organica y Fisicoquimica, Facultad de Ciencias Quimicas y Farmaceuticas, Universidad de Chile, Santiago, Chile

5. Departamento de Ciencias de la Salud, Campus Cumbres, Universidad del Valle de Mexico, Monterrey, Mexico

6. Facultad de Agronomia, Universidad Autonoma de Nuevo León, Monterrey, Mexico

Abstract

Background: Naphthoquinones are a class of aromatic compounds relevant for their chemical characteristics, structural properties, and biological activity. These compounds are found in nature with a wide range of effects, highlighting their antibacterial, antifungal, and antiprotozoal properties. Additionally, naphthoquinones are used as a scaffold to obtain new derivatives with pharmacological potential, mainly compounds against parasitic diseases. Objective: The purpose of this work was to carry out a comprehensive review of naphthoquinones and their derivatives obtained from both natural and synthetic sources, also, to analyze their biological activity against Leishmania spp. (Leishmaniasis), Trypanosoma cruzi (Chagas disease), Plasmodium falciparum (Malaria), Toxoplasma gondii (Toxoplasmosis), and Toxocara canis (Toxocariasis). All of these agents are responsible for relevant diseases worldwide. Results : Natural naphthoquinones, such as plumbagin, diospyrin, burmanin, lapachol, lawsone and psychorubrin, show an antiprotozoal activity similar or enhanced antiprotozoal activity to reference drugs. Some naphthoquinones obtained by synthesis or semi-synthesis showed better biological activity or less toxic effects than natural compounds. Conclusion: In this review, natural and synthetic naphthoquinones showed antiparasitic activity, in most cases, with improved results than current drugs currently used in clinical trials. A modification of their structure with different functional groups can enhance their biological effects, improve solubility, and reduce undesirable side effects. Therefore, naphthoquinones are important molecules in the development of new chemotherapeutic agents against parasitic diseases.

Publisher

Bentham Science Publishers Ltd.

Subject

Drug Discovery,General Medicine

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