Diminazene aceturate (DIZE), an antiparasitic, is an ACE2 activator, and studies show that activators of this enzyme may be beneficial for COVID-19, disease caused by SARS-CoV-2. Thus, the objective was to evaluate the in silico and in vitro affinity of diminazene aceturate against molecular targets of SARS-CoV-2. 3D structures from DIZE and the proteases from SARS-CoV-2, obtained through the Protein Data Bank and Drug Database (Drubank), and processed in computer programs like AutodockTools, LigPlot, Pymol for molecular docking and visualization and GROMACS was used to perform molecular dynamics. The results demonstrate that DIZE could interact with all tested targets, and the best binding energies were obtained from the interaction of Protein S (closed conformation -7.87 kcal/mol) and M (-6.23 kcal/mol), indicating that it can act both by preventing entry and viral replication. The results of molecular dynamics demonstrate that DIZE was able to promote a change in stability at the cleavage sites between S1 and S2, which could prevent binding to ACE2 and fusion with the membrane. In addition, in vitro tests confirm the in silico results showing that DIZE could inhibit the binding between the spike receptor-binding domain protein and ACE2, which could promote a reduction in the virus infection. However, tests in other experimental models with in vivo approaches are needed.
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http://dx.doi.org/10.1016/j.cbi.2022.110161 | DOI Listing |
J Vet Med Sci
December 2024
Laboratory of Veterinary Small Animal Internal Medicine, Department of Veterinary Medicine, Faculty of Agriculture, Iwate University.
A comprehensive and quantitative method to compare gene expression may be useful for investigating the mechanisms responsible for diminazene aceturate (DA) resistance in Babesia gibsoni. Therefore, the gene expression of B. gibsoni cultured with DA was compared with those without DA using RNA sequencing (RNA-seq).
View Article and Find Full Text PDFParasitology
October 2024
College of Public Health Medical and Veterinary Sciences, James Cook University, Townsville, Australia.
Communities living in African animal trypanosomiasis (AAT) endemic areas of Zambia use several control strategies to protect their livestock from the devastating effects of trypanosomiasis. Several studies have reported the effectiveness of trypanosomiasis control strategies based on retrospective data. In this study, we assessed incidence rates of AAT in cattle ( = 227) using a prospective cohort study comprising 4 treatment groups, i.
View Article and Find Full Text PDFTrop Med Infect Dis
August 2024
Department of Biology and Biotechnology, Worcester Polytechnic Institute, Worcester, MA 01609, USA.
The resistance of trypanosomes to the doses of trypanocide administered by farmers to their animals acts as a real brake on efforts to control to combat African trypanosomiasis. Thus, in-depth knowledge of the use of these different molecules and their resistance profiles will be necessary to establish an integrated strategy to combat African trypanosomiasis. To achieve these objectives, a participatory survey among farmers and a resistance diagnosis of trypanosome strains identified in three regions of northern Côte d'Ivoire (Bagoué, Poro and Tchologo) was carried out using the PCR-RFLP technique, followed by sequencing of genes of interest.
View Article and Find Full Text PDFIran J Parasitol
January 2024
Poultry Disease Diagnosis and Surveillance Laboratory, Veterinary College and Research Institute, Tamil Nadu Veterinary and Animal Sciences University, Namakkal, Tamil Nadu, India.
Vet Parasitol Reg Stud Reports
September 2024
Biotechnology Research Institute, KALRO, P.O. Box 362, -00902, Kikuyu, Kenya.
The non-cyclic trypanosomiasis (surra), caused by Trypanosoma evansi, and mechanically transmitted by biting flies, hinders camel productivity in Kenya. Trypanocides are the most commonly used drugs to control surra. However, emergence of drug resistance by the parasites is a major limitation to control efforts.
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