Response of earthworm coelomocytes and catalase to pentanone and hexanone: a revelation of the toxicity of conventional solvents at the cellular and molecular level
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Summary
The results show that 2-pentanone and 2-hexanone that induced the accumulation of reactive oxygen species can eventually reduce coelomocytes viability, accompanying by the regular changes of antioxidant activity and lipid peroxidation level.
- Type
- preprint
- Published
- 2021-04-23
- Cited by
- 15
- References
- 144
- Access
- Open access
- OpenAlex
- https://openalex.org/W3158317234
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:235551314
Keywords
Catalase, Intracellular, Antioxidant, Chemistry, Cytotoxicity
References
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- Protonation effects on the UV/Vis absorption spectra of imatinib: a theoretical and experimental study.
- Assessment of flavonoids and volatile compounds in tea infusions of water lily flowers and their antioxidant activities.
- Dihydrocapsaicin (DHC), a saturated structural analog of capsaicin, induces autophagy in human cancer cells in a catalase-regulated manner
- Site‐directed mutagenesis of the lower parts of the major substrate channel of yeast catalase A leads to highly increased peroxidatic activity
- The effect of 2-hexanone and 2-hexanone metabolites on pupillomotor activity and growth.
- Changes of lipid peroxidation in carbon disulfide-treated rat nerve tissues and serum.
- Establishment of toxicity thresholds in subpopulations of coelomocytes (amoebocytes vs. eleocytes) of Eisenia fetida exposed in vitro to a variety of metals: implications for biomarker measurements
- Megakaryocytes constitute a functional component of a plasma cell niche in the bone marrow.
- Interaction of 3'-azido-3'-deamino daunorubicin with DNA: multispectroscopic and molecular modeling.
- Measuring reactive oxygen and nitrogen species with fluorescent probes: challenges and limitations
- Liquid-Liquid Equilibria of the Ternary Mixtures Water + Propanoic Acid + Methyl Ethyl Ketone and Water + Propanoic Acid + Methyl Propyl Ketone
- Induction of chromosome loss by mixtures of organic solvents including neurotoxins.
- Protein mechanics: a route from structure to function
- Relationship between the carbon skeleton length of ketonic solvents and potentiation of chloroform-induced hepatotoxicity in rats.
- Individual responses to chemotherapy-induced oxidative stress
Cited by
- Evaluation of the biological response of propofol in zebrafish (Danio rerio): Focusing on biochemical, transcriptional, and molecular level.
- The culprits of superoxide dismutase inactivation under size-dependent stress of ultrafine carbon black: Superoxide anion, genotoxicity and protein corona.
- Characterizing the binding interactions between virgin/aged microplastics and catalase in vitro.
- Probing the molecular mechanism of interaction between polystyrene nanoplastics and catalase by multispectroscopic techniques.
- The combined effects of polystyrene nanoplastics with nickel on oxidative stress and related toxic effects to earthworms from individual and cellular perspectives.
- Ratiometric fluorescence turn-off probe for highly selective recognition of 2-pentanone based on a Eu3+- functionalized MOF
- Effects of municipal sludge composition on hydrothermal liquefaction products: Aqueous phase characterization and biodegradability assessment.
- Response and defense mechanisms of the earthworms Eisenia foetida to natural saline soil stress.
- New mechanistic insights of nanoplastics synergistic cadmium induced overactivation of trypsin: Joint analysis from protein multi-level conformational changes and computational modeling.
- In vivo oxidative stress responses and mechanism to chlorinated and methylated p-benzoquinone oxidation byproducts: A comparison study.
- Nanoplastics Intensify the Inhibitory Effect of Di‐n‐octylo‐phthalate on Trypsin: Spectroscopic and Computer Simulation Analysis
- Beyond whole-organism assays: Compartmentalized multi-biomarkers in earthworm gut for cadmium and pyrene contamination.
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