Abeer Muhammedali Alnasrawi
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.
Researcher
Also affiliated: University of Kerbala (2021)
Graduate Student Researcher
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Abeer Muhammedali Alnasrawi's research has explored the protective effects of natural compounds and microbial agents against cellular damage and disease in animal models. Their work includes investigating how Stellaria media can reduce lipid peroxidation and protect hippocampal and cortical neurons from ischemic damage. Alnasrawi has also examined the immobilization and detoxification of lead in plants using nanoscale materials, as well as the impact of shockwave treatment on seed germination and plant growth. Further research has focused on optimizing conditions for the expression and delivery of plant elicitor peptides from *Bacillus subtilis* via seed treatment to combat nematode infections in soybeans. Collaborations include work with Payal Sanadhya and Fiona L. Goggin at the University of Arkansas at Fayetteville.
Metrics
- h-index: 1
- Publications: 2
- Citations: 15
Selected Publications
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Optimizing Conditions for Bacillus subtilis Ectopic Gene Expression and Delivery via Seed Treatment (2025)
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The Effects of <i>Bacillus subtilis</i> Expressing a Plant Elicitor Peptide on Nematode Infection on Soybean (2024)
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Lead-Immobilization, transformation, and induced toxicity alleviation in sunflower using nanoscale Fe°/BC: Experimental insights with Mechanistic validations (2022)
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Shockwave treated seed germination and physiological growth of Vigna mungo (L) in red soil environment (2021)
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Lipid peroxidation reduction and hippocampal and cortical neurons protection against ischemic damage in animal model using Stellaria media (2021)
Collaboration Network
Top Collaborators
- Lipid peroxidation reduction and hippocampal and cortical neurons protection against ischemic damage in animal model using Stellaria media
- Lead-Immobilization, transformation, and induced toxicity alleviation in sunflower using nanoscale Fe°/BC: Experimental insights with Mechanistic validations
- Shockwave treated seed germination and physiological growth of Vigna mungo (L) in red soil environment
- Lipid peroxidation reduction and hippocampal and cortical neurons protection against ischemic damage in animal model using Stellaria media
- Lead-Immobilization, transformation, and induced toxicity alleviation in sunflower using nanoscale Fe°/BC: Experimental insights with Mechanistic validations
- Shockwave treated seed germination and physiological growth of Vigna mungo (L) in red soil environment
- The Effects of <i>Bacillus subtilis</i> Expressing a Plant Elicitor Peptide on Nematode Infection on Soybean
- Optimizing Conditions for Bacillus subtilis Ectopic Gene Expression and Delivery via Seed Treatment
- The Effects of <i>Bacillus subtilis</i> Expressing a Plant Elicitor Peptide on Nematode Infection on Soybean
- Optimizing Conditions for Bacillus subtilis Ectopic Gene Expression and Delivery via Seed Treatment
- Lipid peroxidation reduction and hippocampal and cortical neurons protection against ischemic damage in animal model using Stellaria media
- Lipid peroxidation reduction and hippocampal and cortical neurons protection against ischemic damage in animal model using Stellaria media
- Lipid peroxidation reduction and hippocampal and cortical neurons protection against ischemic damage in animal model using Stellaria media
- Lipid peroxidation reduction and hippocampal and cortical neurons protection against ischemic damage in animal model using Stellaria media
- Lipid peroxidation reduction and hippocampal and cortical neurons protection against ischemic damage in animal model using Stellaria media
- Shockwave treated seed germination and physiological growth of Vigna mungo (L) in red soil environment
- Shockwave treated seed germination and physiological growth of Vigna mungo (L) in red soil environment
- Shockwave treated seed germination and physiological growth of Vigna mungo (L) in red soil environment
- Shockwave treated seed germination and physiological growth of Vigna mungo (L) in red soil environment
- Lead-Immobilization, transformation, and induced toxicity alleviation in sunflower using nanoscale Fe°/BC: Experimental insights with Mechanistic validations
- Lead-Immobilization, transformation, and induced toxicity alleviation in sunflower using nanoscale Fe°/BC: Experimental insights with Mechanistic validations
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