Area of research
Small Animals · Animal Science and Zoology
Research interest
Research interests include Coccidia and coccidiosis research, Helminth infection and control, Parasites and Host Interactions, and Veterinary medicine and infectious diseases.
Vaccination with formulations targeting Eimeria maxima and Clostridium perfringens conferred comprehensive protection using a dual-infection challenge model of necrotic enteritis
PLGA-Encapsulated Haemonchus contortus Antigen ES-15 Augments Immune Responses in a Murine Model
Protective Efficacy Induced by the Common Eimeria Antigen Elongation Factor 2 against Challenge with Three Eimeria Species in Chickens
A multiepitope vaccine encoding four Eimeria epitopes with PLGA nanospheres: a novel vaccine candidate against coccidiosis in laying chickens
An Eimeria maxima Antigen: Its Functions on Stimulating Th1 Cytokines and Protective Efficacy Against Coccidiosis
Identification of excretory and secretory proteins from Haemonchus contortus inducing a Th9 immune response in goats
Pathogenic Effects of Single or Mixed Infections of Eimeria mitis, Eimeria necatrix, and Eimeria tenella in Chickens
Nano vaccines for T. gondii Ribosomal P2 Protein With Nanomaterials as a Promising DNA Vaccine Against Toxoplasmosis
PLGA Nanospheres as Delivery Platforms for Eimeria mitis 1a Protein: A Novel Strategy to Improve Specific Immunity
Immunization With Recombinant Haemonchus contortus Y75B8A.8 Partially Protects Local Crossbred Female Goats From Haemonchus contortus Infection
Additional file 7 of Identification of excretory and secretory proteins from Haemonchus contortus inducing a Th9 immune response in goats
Additional file 2 of Identification of excretory and secretory proteins from Haemonchus contortus inducing a Th9 immune response in goats
Additional file 8 of Identification of excretory and secretory proteins from Haemonchus contortus inducing a Th9 immune response in goats
Additional file 5 of Identification of excretory and secretory proteins from Haemonchus contortus inducing a Th9 immune response in goats
Additional file 4 of Identification of excretory and secretory proteins from Haemonchus contortus inducing a Th9 immune response in goats
Additional file 9 of Identification of excretory and secretory proteins from Haemonchus contortus inducing a Th9 immune response in goats
Additional file 10 of Identification of excretory and secretory proteins from Haemonchus contortus inducing a Th9 immune response in goats
Additional file 3 of Identification of excretory and secretory proteins from Haemonchus contortus inducing a Th9 immune response in goats
Additional file 6 of Identification of excretory and secretory proteins from Haemonchus contortus inducing a Th9 immune response in goats
Poly (D, L-lactide-co-glycolide) delivery system improve the protective efficacy of recombinant antigen TA4 against Eimeria tenella infection
Protection studies of an excretory–secretory protein HcABHD against Haemonchus contortus infection
With Chitosan and PLGA as the Delivery Vehicle, Toxoplasma gondii Oxidoreductase-Based DNA Vaccines Decrease Parasite Burdens in Mice
Nanoparticles of Chitosan/Poly(D,L-Lactide-Co-Glycolide) Enhanced the Immune Responses of Haemonchus contortus HCA59 Antigen in Model Mice
Characteristics of Biotin lipoyl attachment and 2‐oxoacid dehydrogenase acyltransferase of the parasitic nematode <i>Haemonchus contortus</i> and its modulatory functions on goat PBMCs <i>in vitro</i>
Eimeria maxima Rhomboid-like Protein 5 Provided Partial Protection against Homologous Challenge in Forms of Recombinant Protein and DNA Plasmid in Chickens
Recombinant Toxoplasma gondii Ribosomal Protein P2 Modulates the Functions of Murine Macrophages In Vitro and Provides Immunity against Acute Toxoplasmosis In Vivo
Actin-depolymerizing factor from Eimeria tenella promotes immunogenic function of chicken dendritic cells
Advances in the Development of Anti-Haemonchus contortus Vaccines: Challenges, Opportunities, and Perspectives
A Novel α/β Hydrolase Domain Protein Derived From Haemonchus contortus Acts at the Parasite-Host Interface
Proteomic analysis revealed T cell hyporesponsiveness induced by Haemonchus contortus excretory and secretory proteins