Molecular Docking and Molecular Dynamics Simulations in Related to Leishmania donovani: An Update and Literature Review

Author:

Challapa-Mamani Mabel R.12ORCID,Tomás-Alvarado Eduardo3,Espinoza-Baigorria Angela4,León-Figueroa Darwin A.5ORCID,Sah Ranjit67ORCID,Rodriguez-Morales Alfonso J.89ORCID,Barboza Joshuan J.1

Affiliation:

1. Escuela de Medicina, Universidad Cesar Vallejo, Trujillo 13007, Peru

2. Sociedad Científica de Estudiantes de Medicina de la Universidad César Vallejo, Trujillo 13007, Peru

3. Hospital General Regional 17, Instituto Mexicano del Seguro Social, Cancún 75533, Mexico

4. Escuela de Medicina, Universidad Privada Antenor Orrego, Trujillo 13008, Peru

5. Facultad de Medicina Humana, Universidad San Martín de Porres, Chiclayo 14006, Peru

6. Department of Clinical Microbiology, Institute of Medicine, Tribhuvan University Teaching Hospital, Kathmandu 44600, Nepal

7. Department of Microbiology, Dr. D. Y. Patil Medical College, Hospital and Research Centre, Dr. D. Y. Patil Vidyapeeth, Pune 411018, Maharashtra, India

8. Faculty of Health Sciences, Universidad Científica del Sur, Lima 150152, Peru

9. Gilbert and Rose-Marie Chagoury School of Medicine, Lebanese American University, Beirut 350000, Lebanon

Abstract

Leishmaniasis, a disease caused by Leishmania parasites and transmitted via sandflies, presents in two main forms: cutaneous and visceral, the latter being more severe. With 0.7 to 1 million new cases each year, primarily in Brazil, diagnosing remains challenging due to diverse disease manifestations. Traditionally, the identification of Leishmania species is inferred from clinical and epidemiological data. Advances in disease management depend on technological progress and the improvement of parasite identification programs. Current treatments, despite the high incidence, show limited efficacy due to factors like cost, toxicity, and lengthy regimens causing poor adherence and resistance development. Diagnostic techniques have improved but a significant gap remains between scientific progress and application in endemic areas. Complete genomic sequence knowledge of Leishmania allows for the identification of therapeutic targets. With the aid of computational tools, testing, searching, and detecting affinity in molecular docking are optimized, and strategies that assess advantages among different options are developed. The review focuses on the use of molecular docking and molecular dynamics (MD) simulation for drug development. It also discusses the limitations and advancements of current treatments, emphasizing the importance of new techniques in improving disease management.

Publisher

MDPI AG

Subject

Infectious Diseases,Public Health, Environmental and Occupational Health,General Immunology and Microbiology

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