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Developmental Neuroscience|June 9, 2016
Neonatal Benzo[a]pyrene Exposure Induces Oxidative Stress and DNA Damage Causing Neurobehavioural Changes during the Early Adolescence Period in RatsBhupesh Patel, Saroj Kumar Das, Manorama PatriNeurotoxicity Research|January 8, 2017
Modulation of Benzo[a]Pyrene Induced Anxiolytic-Like Behavior by Retinoic Acid in Zebrafish: Involvement of Oxidative Stress and Antioxidant Defense SystemRatnalipi Mohanty, Saroj Kumar Das, Manorama PatriNeuroscience Letters|December 5, 2019
Chronic waterborne exposure to benzo[a]pyrene induces locomotor dysfunction and development of neurodegenerative phenotypes in zebrafishSaroj Kumar Das, Sai Aparna, Manorama PatriMicrobial Pathogenesis|May 19, 2020
Microbial communities modulating brain functioning and behaviors in zebrafish: A mechanistic approachLarica Mohanta, Bhaskar C Das, Manorama PatriAnnals of Neurosciences|November 15, 2024
Amlodipine Attenuates Carrageenan-induced Oxidative Stress Targeting Transsynaptic
Neuronal Damage by Promoting Survival of
Retinal Ganglion Cells in Adult Zebrafish
(<i>Danio rerio)</i>Ashirbad Nanda, Sai Aparna, Rudra Narayan Sahoo, et al.Drug and Chemical Toxicology|August 31, 2023
Saffron stigma extract and crocin play an important neuroprotective role in therapeutic measures against benzo[a]pyrene-induced behavioral alterations in zebrafishNamita Muduli, Sai Aparna, Manorama Patri, et al.Zebrafish|March 30, 2016
Withania somnifera Leaf Extract Ameliorates Benzo[a]pyrene-Induced Behavioral and Neuromorphological Alterations by Improving Brain Antioxidant Status in Zebrafish (Danio rerio)Ratnalipi Mohanty, Saroj Kumar Das, Nihar Ranjan Singh, et al.International Journal of Developmental Neuroscience : the Official Journal of the International Society for Developmental Neuroscience|March 7, 2016
Neonatal exposure to benzo[a]pyrene induces oxidative stress causing altered hippocampal cytomorphometry and behavior during early adolescence period of male Wistar ratsBhupesh Patel, Saroj Kumar Das, Swagatika Das, et al.Genomics & Informatics|April 12, 2021
In silico discovery and evaluation of phytochemicals binding mechanism against human catechol-O-methyltransferase as a putative bioenhancer of L-DOPA therapy in Parkinson diseaseSurya Narayan Rath, Lingaraja Jena, Rajabrata Bhuyan, et al.Pageof 2