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The Increased Toxicity of UV-Degraded Nitroguanidine and IMX-101 Exposures in Zebrafish Larvae: Evidence Implicating Oxidative Stress
PubMed Similar studies Analyze with GEO2R
The Increased Toxicity of UV-Degraded Nitroguanidine and IMX-101 Exposures in Zebrafish Larvae: Evidence Implicating Oxidative Stress [6]
The Increased Toxicity of UV-Degraded Nitroguanidine and IMX-101 Exposures in Zebrafish Larvae: Evidence Implicating Oxidative Stress [5]
The Increased Toxicity of UV-Degraded Nitroguanidine and IMX-101 Exposures in Zebrafish Larvae: Evidence Implicating Oxidative Stress [4]
The Increased Toxicity of UV-Degraded Nitroguanidine and IMX-101 Exposures in Zebrafish Larvae: Evidence Implicating Oxidative Stress [3]
The Increased Toxicity of UV-Degraded Nitroguanidine and IMX-101 Exposures in Zebrafish Larvae: Evidence Implicating Oxidative Stress [2]
The Increased Toxicity of UV-Degraded Nitroguanidine and IMX-101 Exposures in Zebrafish Larvae: Evidence Implicating Oxidative Stress [1]
Transcriptomics Provides Mechanistic Indicators of Mixture Toxicology for IMX-101 and IMX-104 Formulations in Fathead Minnows (Pimephales promelas)
Transcriptomics Provides Mechanistic Indicators of Mixture Toxicology for IMX-101 and IMX-104 Formulations in Fathead Minnows (Pimephales promelas) [IMX-104]
Transcriptomics Provides Mechanistic Indicators of Mixture Toxicology for IMX-101 and IMX-104 Formulations in Fathead Minnows (Pimephales promelas) [IMX-101]
Transcriptomics Provides Mechanistic Indicators of Mixture Toxicology for IMX-101 and IMX-104 Formulations in Fathead Minnows (Pimephales promelas) [NQ]
Transcriptomics Provides Mechanistic Indicators of Mixture Toxicology for IMX-101 and IMX-104 Formulations in Fathead Minnows (Pimephales promelas) [NTO]
Transcriptomics Provides Mechanistic Indicators of Mixture Toxicology for IMX-101 and IMX-104 Formulations in Fathead Minnows (Pimephales promelas) [DNAN]
Molecular Evaluation of Impacted Reproductive Physiology in Fathead Minnow Testes Provides Mechanistic Insights into Insensitive Munitions Toxicology (IMX-101)
Molecular Evaluation of Impacted Reproductive Physiology in Fathead Minnow Testes Provides Mechanistic Insights into Insensitive Munitions Toxicology (NTO)
Comparative Toxicological Evaluation of the Insensitive Munition (IM) 1-methyl-3-nitroguanidine versus its UV-Degradation Products in Fathead Minnow
Genomic Investigations of Acute Munitions Exposures on the Health and Skin Microbiome Composition of Leopard Frog (Rana pipiens) Tadpoles
PubMed Similar studies SRA Run Selector
Mechanistic Evaluation of Reduced Reproduction in Daphnia pulex Exposed to the Insensitive Munition, 1-methyl-3-nitro-1-nitroguanidine (MeNQ)
PubMed Full text in PMC Similar studies Analyze with GEO2R
Concentration dependent transcriptome responses of zebrafish embryos after exposure to cadmium, cobalt and copper.
Mitochondrial dysfunction, disruption of F-actin polymerization, and transcriptomic alterations in zebrafish larvae exposed to trichloroethylene
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