Tahrir Alenezi
This is a likely match — the affiliation was inferred from OpenAlex, ORCID, and web sources but has not been fully confirmed. Treat with appropriate caution.
Role not yet determined Is this you? Add your title
Also affiliated: Northern Border University (2023–2025); Long Island University (2020)
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Tahrir Alenezi's research focuses on microbial infections and disease mechanisms, particularly in animal models. His work investigates the virulence factors of bacterial pathogens like *Clostridium perfringens* and *Campylobacter jejuni*. Alenezi has explored the role of secondary bile acids in controlling *Clostridium perfringens*-induced necrotic enteritis in chickens and has studied the potential of bacterial metabolites and sporulation proteins in mitigating these infections. He also examines the efficacy of natural compounds, such as those found in Myrrh, against bacteria and investigates the impact of microbiota on host-pathogen interactions. His research includes studies on antibiotic resistance and biofilm formation in bacteria like *Acinetobacter*. Alenezi has a publication record of 10 articles with an h-index of 6 and 128 citations. He has collaborated with researchers at the University of Arkansas at Fayetteville, including Xiaolun Sun and Ying Fu.
Metrics
- h-index: 6
- Publications: 10
- Citations: 128
Selected Publications
-
The Mechanistic Target of Rapamycin Mediates Clostridium perfringens-Induced Chicken Necrotic Enteritis Attenuated by Secondary Bile Acid Deoxycholic Acid (2025)
-
Recombinant Bile Salt Hydrolase Enhances the Inhibition Efficiency of Taurodeoxycholic Acid against Clostridium perfringens Virulence (2024)
-
Potent Bile Acid Microbial Metabolites Modulate Clostridium perfringens Virulence (2023)
-
Vaccines Using Clostridium perfringens Sporulation Proteins Reduce Necrotic Enteritis in Chickens (2022)
-
Clostridium perfringens-Induced Necrotic Diseases: An Overview (2022)
-
Microbiota from Specific Pathogen-Free Mice Reduces Campylobacter jejuni Chicken Colonization (2021)
-
Specific Secondary Bile Acids Control Chicken Necrotic Enteritis (2021)
-
Microbiota attenuates chicken transmission-exacerbated campylobacteriosis in Il10−/− mice (2020)
Collaboration Network
Top Collaborators
- Clostridium perfringens-Induced Necrotic Diseases: An Overview
- Specific Secondary Bile Acids Control Chicken Necrotic Enteritis
- Vaccines Using Clostridium perfringens Sporulation Proteins Reduce Necrotic Enteritis in Chickens
- Potent Bile Acid Microbial Metabolites Modulate Clostridium perfringens Virulence
- Microbiota attenuates chicken transmission-exacerbated campylobacteriosis in Il10−/− mice
Showing 5 of 8 shared publications
- Clostridium perfringens-Induced Necrotic Diseases: An Overview
- Specific Secondary Bile Acids Control Chicken Necrotic Enteritis
- Vaccines Using Clostridium perfringens Sporulation Proteins Reduce Necrotic Enteritis in Chickens
- Potent Bile Acid Microbial Metabolites Modulate Clostridium perfringens Virulence
- Microbiota attenuates chicken transmission-exacerbated campylobacteriosis in Il10−/− mice
Showing 5 of 8 shared publications
- Specific Secondary Bile Acids Control Chicken Necrotic Enteritis
- Vaccines Using Clostridium perfringens Sporulation Proteins Reduce Necrotic Enteritis in Chickens
- Potent Bile Acid Microbial Metabolites Modulate Clostridium perfringens Virulence
- Microbiota attenuates chicken transmission-exacerbated campylobacteriosis in Il10−/− mice
- Microbiota from Specific Pathogen-Free Mice Reduces Campylobacter jejuni Chicken Colonization
Showing 5 of 6 shared publications
- Specific Secondary Bile Acids Control Chicken Necrotic Enteritis
- Vaccines Using Clostridium perfringens Sporulation Proteins Reduce Necrotic Enteritis in Chickens
- Microbiota attenuates chicken transmission-exacerbated campylobacteriosis in Il10−/− mice
- Microbiota from Specific Pathogen-Free Mice Reduces Campylobacter jejuni Chicken Colonization
- The Mechanistic Target of Rapamycin Mediates Clostridium perfringens-Induced Chicken Necrotic Enteritis Attenuated by Secondary Bile Acid Deoxycholic Acid
- Potent Bile Acid Microbial Metabolites Modulate Clostridium perfringens Virulence
- Microbiota attenuates chicken transmission-exacerbated campylobacteriosis in Il10−/− mice
- Recombinant Bile Salt Hydrolase Enhances the Inhibition Efficiency of Taurodeoxycholic Acid against Clostridium perfringens Virulence
- Microbiota from Specific Pathogen-Free Mice Reduces Campylobacter jejuni Chicken Colonization
- Specific Secondary Bile Acids Control Chicken Necrotic Enteritis
- Recombinant Bile Salt Hydrolase Enhances the Inhibition Efficiency of Taurodeoxycholic Acid against Clostridium perfringens Virulence
- The Mechanistic Target of Rapamycin Mediates Clostridium perfringens-Induced Chicken Necrotic Enteritis Attenuated by Secondary Bile Acid Deoxycholic Acid
- Specific Secondary Bile Acids Control Chicken Necrotic Enteritis
- The Mechanistic Target of Rapamycin Mediates Clostridium perfringens-Induced Chicken Necrotic Enteritis Attenuated by Secondary Bile Acid Deoxycholic Acid
- Potent Bile Acid Microbial Metabolites Modulate Clostridium perfringens Virulence
- The Mechanistic Target of Rapamycin Mediates Clostridium perfringens-Induced Chicken Necrotic Enteritis Attenuated by Secondary Bile Acid Deoxycholic Acid
- Recombinant Bile Salt Hydrolase Enhances the Inhibition Efficiency of Taurodeoxycholic Acid against Clostridium perfringens Virulence
- The Mechanistic Target of Rapamycin Mediates Clostridium perfringens-Induced Chicken Necrotic Enteritis Attenuated by Secondary Bile Acid Deoxycholic Acid
- Microbiota attenuates chicken transmission-exacerbated campylobacteriosis in Il10−/− mice
- Specific Secondary Bile Acids Control Chicken Necrotic Enteritis
- Specific Secondary Bile Acids Control Chicken Necrotic Enteritis
- Specific Secondary Bile Acids Control Chicken Necrotic Enteritis
- Microbiota from Specific Pathogen-Free Mice Reduces Campylobacter jejuni Chicken Colonization
- Vaccines Using Clostridium perfringens Sporulation Proteins Reduce Necrotic Enteritis in Chickens
Similar Researchers
Based on overlapping research topics