MO
M.M.Ommati
Also known as: M.M.Ommati
Henan University of Science and Technology, Shanxi Agricultural University, Shiraz University of Medical Sciences Stem Cell and Transgenic Technology Research Centre
About
Study on different fields including:
• Seminal characteristics
• Reproductive Physiology
• Animal behavior
• Endocrinology
• Innate immunity
• Transgenic and stem cells
• Laboratory Animal
Employment
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Henan University of Science and Technology Associate Professor2023 - Present
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Shanxi Agricultural University Associate Professor2022 - 2023
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Shanxi Agricultural University Associate Professor2021 - 2022
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Shiraz University of Medical Sciences Visiting professor2020 - 2023
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Shanxi Agricultural University Assistant Professor2018 - 2022
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Shanxi Agricultural University International Exchange Ph.D. Candidate2016 - Present
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Shiraz University of Medical Sciences Researcher Assistant and Advisor2015 - Present
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Shiraz University PhD candidate2014 - Present
Education
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Shiraz University of Medical Sciences Stem Cell and Transgenic Technology Research Centre
Projects & Funding
Projects & funding information is unavailable.
Publications (104)
- Correction to “Sex-Specific Mechanisms of Fluoride-Induced Gonadal Injury: A Multi-Omics Investigation into Reproductive Toxicity and Gut Microbiota Disruption” Save
- Fluoride Toxicodynamics and Interactions with Co-Contaminants: Mechanistic Insights with Implications for Agricultural Systems and Food Safety Save
- The silent saboteurs: How ultraviolet (UV)-aged polystyrene nanoplastics disrupt the regenerative capacity of goldfish (Carassius auratus) caudal fins Save
- Fluoride-Induced Autophagy and Apoptosis in the Mouse Ovary: Genomic Insights into IL-17 Signaling and Gut Microbiota Dysbiosis Save
- Molybdenum interferes with MMPs/TIMPs expression to reduce the receptivity of porcine endometrial epithelial cells Save
- Pesticide-Induced Alterations in Locomotor Activity, Anxiety, and Depression-like Behavior Are Mediated through Oxidative Stress-Related Autophagy: A Persistent Developmental Study in Mice Save
- Low‐dose ketamine improves animals' locomotor activity and decreases brain oxidative stress and inflammation in ammonia‐induced neurotoxicity Save
- Taurine Improves Sperm Mitochondrial Indices, Blunts Oxidative Stress Parameters, and Enhances Steroidogenesis and Kinematics of Sperm in Lead-Exposed Mice Save
- Sildenafil Blunts Lung Inflammation and Oxidative Stress in a Rat Model of Cholestasis Save
- Multiomics Analysis Revealed the Molecular Mechanism of miRNAs in Fluoride-Induced Hepatic Glucose and Lipid Metabolism Disorders Save