IN SILICO INVESTIGATION OF ACETYLCHOLINESTERASE-INSECTICIDE INTERACTIONS IN ANOPHELES STEPHENSI AND ANOPHELES CULICIFACIES USING MOLECULAR DOCKING

In silico investigation of acetylcholinesterase-insecticide interactions in Anopheles stephensi and Anopheles culicifacies using molecular docking

Background & objectives: Malaria remains a significant public health challenge globally, with an estimated 249 million cases reported across 85 endemic countries and regions in 2022, reflecting an increase of 5 million cases from the previous year.Anopheles mosquitoes are the primary vectors responsible for transmitting malaria parasites to humans,

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Methicillin-Resistant Staphylococcus aureus (MRSA): One Health Perspective Approach to the Bacterium Epidemiology, Virulence Factors, Antibiotic-Resistance, and Zoonotic Impact

Abdelazeem M Algammal,1 Helal F Hetta,2,3 Amr Elkelish,4 Dalal Hussien H Alkhalifah,5 Wael N Hozzein,6,7 Gaber El-Saber Batiha,8 Nihal El Nahhas,9 Mahmoud A Mabrok10,11 1Department of Bacteriology, Immunology and Mycology, Faculty of pothys slogan in english Veterinary Medicine, Suez Canal University, Ismailia 41522, Egypt; 2Department of Medical M

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