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description
| - wetenschappelijk artikel (nl)
- наукова стаття, опублікована в січні 1980 (uk)
- articolo scientifico (pubblicato il 1980) (it)
- artículu científicu espublizáu en xineru de 1980 (ast)
- im Januar 1980 veröffentlichter wissenschaftlicher Artikel (de)
- 1980 թվականի հունվարի 1-ին հրատարակված գիտական հոդված (hy)
- artikull shkencor i botuar më 01 janar 1980 (sq)
- scientific article published on 01 January 1980 (en)
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rdfs:label
| - Decrease of reduced glutathione in isolated rat hepatocytes caused by acrolein, acrylonitrile, and the thermal degradation products of styrene copolymers (en)
- Decrease of reduced glutathione in isolated rat hepatocytes caused by acrolein, acrylonitrile, and the thermal degradation products of styrene copolymers (nl)
- Decrease of reduced glutathione in isolated rat hepatocytes caused by acrolein, acrylonitrile, and the thermal degradation products of styrene copolymers (sq)
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skos:prefLabel
| - Decrease of reduced glutathione in isolated rat hepatocytes caused by acrolein, acrylonitrile, and the thermal degradation products of styrene copolymers (en)
- Decrease of reduced glutathione in isolated rat hepatocytes caused by acrolein, acrylonitrile, and the thermal degradation products of styrene copolymers (nl)
- Decrease of reduced glutathione in isolated rat hepatocytes caused by acrolein, acrylonitrile, and the thermal degradation products of styrene copolymers (sq)
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name
| - Decrease of reduced glutathione in isolated rat hepatocytes caused by acrolein, acrylonitrile, and the thermal degradation products of styrene copolymers (en)
- Decrease of reduced glutathione in isolated rat hepatocytes caused by acrolein, acrylonitrile, and the thermal degradation products of styrene copolymers (nl)
- Decrease of reduced glutathione in isolated rat hepatocytes caused by acrolein, acrylonitrile, and the thermal degradation products of styrene copolymers (sq)
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title
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title
| - Decrease of reduced glutathione in isolated rat hepatocytes caused by acrolein, acrylonitrile, and the thermal degradation products of styrene copolymers (en)
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DOI
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DOI
| - 10.1016/0300-483X(80)90014-1
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is about
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is cites work
of | - A new pathway of acrolein metabolism in rats
- NADH-Dependent reductive stress and ferritin-bound iron in allyl alcohol-induced lipid peroxidation in vivo: The protective effect of vitamin E
- Protection against oxidative damage of erythrocyte membrane by the flavonoid quercetin and its relation to iron chelating activity
- Depletion of nasal mucosal glutathione by acrolein and enhancement of formaldehyde-induced DNA-protein cross-linking by simultaneous exposure to acrolein
- The glycine deportation system and its pharmacological consequences.
- Better IVF outcomes following improvements in laboratory air quality
- The effectiveness of N-acetylcysteine in isolated hepatocytes, against the toxicity of paracetamol, acrolein, and paraquat
- Mutagenicity, carcinogenicity, and teratogenicity of acrylonitrile.
- Formation, toxicity and inactivation of acrolein during biotransformation of cyclophosphamide as studied in freshly isolated cells from rat liver and kidney.
- Detoxication of industrial pollutants by the glutathione glutathione-S-transferase system in the liver of Anabas testudineus (Bloch)
- Acrolein-an α,β-Unsaturated Aldehyde: A Review of Oral Cavity Exposure and Oral Pathology Effects
- Acute pulmonary toxicity of acrolein in rats--underlying mechanism
- Acrylonitrile butadiene styrene (ABS) and polycarbonate (PC) filaments three-dimensional (3-D) printer emissions-induced cell toxicity
- Nanomedicine strategies for treatment of secondary spinal cord injury
- Effects of single and repeated exposures to thermo-oxidative degradation products of poly(acrylonitrile-butadiene-styrene) (ABS) on rat lung, liver, kidney, and brain
- Acrylonitrile exposure: the effect on p53 and p21(WAF1) protein levels in the blood plasma of occupationally exposed workers and in vitro in human diploid lung fibroblasts
- Mechanisms of action of (meth)acrylates in hemolytic activity, in vivo toxicity and dipalmitoylphosphatidylcholine (DPPC) liposomes determined using NMR spectroscopy
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