Ankita Srivastava. PhD
Indian Institute of Toxicology Research, University of Lucknow, National Dope Testing Laboratory
About
With more than 10+ years of experience in molecular neurobiology and proteomics, complemented by a robust background in research, I have established myself as a skilled observer and an adept learner. My expertise is deeply rooted in proteomic techniques such as nano-LC-HRMS, Western blotting, In Vitro Toxicology, electrophoresis, and immunohistochemistry etc. In addition to my laboratory skills, I possess comprehensive experience in both in-vivo and in-vitro experimental methodologies. This includes proficiency in animal handling, stereotaxis, dissections, perfusion, and conducting experiments with several Neuronal cells.
My career is marked by successful collaborations, resulting in contributions to three peer-reviewed scientific publications, with a prominent role as the first author in one. As a recipient of the prestigious Dr. D.S. Kothari Postdoctoral Grant, I have continually demonstrated my commitment to excellence in research.
I am a dedicated team player and strive for perfection in all my endeavors. My enthusiasm is consistently driven by a desire to be part of intellectually stimulating research environments, where I can continue to grow and contribute significantly to the field of neuroscience and neurodegenerative disorders.
Employment
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Indian Institute of Toxicology Research Project Scientist II2023 - Present
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University of Lucknow Post Doctoral Fellow2021 - 2023
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National Dope Testing Laboratory Research Associate2020 - 2021
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Indian Institute of Toxicology Research Researcher2014 - 2020
Education
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University of Lucknow Dr D S Kothari Post Doctoral Fellow2021 - Present
Projects & Funding
Projects & funding information is unavailable.
Publications (8)
- Clinical behaviour and salivary miRNAs- proteins for risk assessment of ECC Save
- Targeting TDP-43 Proteinopathy in hiPSC-Derived Mutated hNPCs with Mitoxantrone Drugs and miRNAs Save
- Proteomic-miRNA Biomics Profile Reveals 2D Cultures of Human iPSC-Derived Neural Progenitor Cells More Sensitive than 3D Spheroid System Against the Experimental Exposure to Arsenic Save
- Pesticide mediated silent neurotoxicity and its unmasking: An update on recent progress Save
- Proteome architecture of human-induced pluripotent stem cell-derived three-dimensional organoids as a tool for early diagnosis of neuronal disorders. Save
- A proteomic approach to investigate enhanced responsiveness in rechallenged adult rats prenatally exposed to lindane Save
- Overexpression of cerebral cytochrome P450s in prenatally exposed offspring modify the toxicity of lindane in rechallenged offspring. Save
- Proteomic approaches to investigate age related vulnerability to lindane induced neurodegenerative effects in rats Save