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N-Acetyl-p-benzoquinone Imine, the Toxic Metabolite of Acetaminophen, Is a  Topoisomerase II Poison | Biochemistry
N-Acetyl-p-benzoquinone Imine, the Toxic Metabolite of Acetaminophen, Is a Topoisomerase II Poison | Biochemistry

Bioengineering | Free Full-Text | Microscale 3D Liver Bioreactor for In  Vitro Hepatotoxicity Testing under Perfusion Conditions
Bioengineering | Free Full-Text | Microscale 3D Liver Bioreactor for In Vitro Hepatotoxicity Testing under Perfusion Conditions

Überdosis Paracetamol
Überdosis Paracetamol

N-Acetyl-4-benzoquinone imine (NAPQI, N-Acetyl-p-benzoquinonimine, CAS  Number: 50700-49-7) | Cayman Chemical
N-Acetyl-4-benzoquinone imine (NAPQI, N-Acetyl-p-benzoquinonimine, CAS Number: 50700-49-7) | Cayman Chemical

What Are the Potential Sites of Protein Arylation by N-Acetyl-p-benzoquinone  Imine (NAPQI)? | Chemical Research in Toxicology
What Are the Potential Sites of Protein Arylation by N-Acetyl-p-benzoquinone Imine (NAPQI)? | Chemical Research in Toxicology

N-Acetyl-p-benzoquinone Imine, the Toxic Metabolite of Acetaminophen, Is a  Topoisomerase II Poison | Biochemistry
N-Acetyl-p-benzoquinone Imine, the Toxic Metabolite of Acetaminophen, Is a Topoisomerase II Poison | Biochemistry

Zum Einfluss repetitiv duodenal applizierter Aktivkohlegaben auf die  Elimination von intravenös verabreichtem Paracetamol
Zum Einfluss repetitiv duodenal applizierter Aktivkohlegaben auf die Elimination von intravenös verabreichtem Paracetamol

N-Acetyl-4-benzoquinone imine (NAPQI, N-Acetyl-p-benzoquinonimine, CAS  Number: 50700-49-7) | Cayman Chemical
N-Acetyl-4-benzoquinone imine (NAPQI, N-Acetyl-p-benzoquinonimine, CAS Number: 50700-49-7) | Cayman Chemical

Paracetamol-Überdosis: Langsames Leberversagen | PTA-Forum
Paracetamol-Überdosis: Langsames Leberversagen | PTA-Forum

What Are the Potential Sites of Protein Arylation by N-Acetyl-p-benzoquinone  Imine (NAPQI)? | Chemical Research in Toxicology
What Are the Potential Sites of Protein Arylation by N-Acetyl-p-benzoquinone Imine (NAPQI)? | Chemical Research in Toxicology

N-Acetyl-4-benzoquinone Imine | CAS 50700-49-7 | SCBT - Santa Cruz  Biotechnology
N-Acetyl-4-benzoquinone Imine | CAS 50700-49-7 | SCBT - Santa Cruz Biotechnology

N-Acetyl-p-benzoquinone Imine, the Toxic Metabolite of Acetaminophen, Is a  Topoisomerase II Poison | Biochemistry
N-Acetyl-p-benzoquinone Imine, the Toxic Metabolite of Acetaminophen, Is a Topoisomerase II Poison | Biochemistry

What Are the Potential Sites of Protein Arylation by N-Acetyl-p-benzoquinone  Imine (NAPQI)? | Chemical Research in Toxicology
What Are the Potential Sites of Protein Arylation by N-Acetyl-p-benzoquinone Imine (NAPQI)? | Chemical Research in Toxicology

What Are the Potential Sites of Protein Arylation by N-Acetyl-p-benzoquinone  Imine (NAPQI)? | Chemical Research in Toxicology
What Are the Potential Sites of Protein Arylation by N-Acetyl-p-benzoquinone Imine (NAPQI)? | Chemical Research in Toxicology

Entwicklung von Arzneistoffen | SpringerLink
Entwicklung von Arzneistoffen | SpringerLink

Dringender Sicherheits- und Warnhinweis
Dringender Sicherheits- und Warnhinweis

Wirkstoff-Lexikon: Paracetamol
Wirkstoff-Lexikon: Paracetamol

Frontiers | Death Receptor Interactions With the Mitochondrial Cell Death  Pathway During Immune Cell-, Drug- and Toxin-Induced Liver Damage
Frontiers | Death Receptor Interactions With the Mitochondrial Cell Death Pathway During Immune Cell-, Drug- and Toxin-Induced Liver Damage

IJMS | Free Full-Text | Ecto-Nucleotide Triphosphate Diphosphohydrolase-2  (NTPDase2) Deletion Increases Acetaminophen-Induced Hepatotoxicity
IJMS | Free Full-Text | Ecto-Nucleotide Triphosphate Diphosphohydrolase-2 (NTPDase2) Deletion Increases Acetaminophen-Induced Hepatotoxicity

What Are the Potential Sites of Protein Arylation by N-Acetyl-p-benzoquinone  Imine (NAPQI)? | Chemical Research in Toxicology
What Are the Potential Sites of Protein Arylation by N-Acetyl-p-benzoquinone Imine (NAPQI)? | Chemical Research in Toxicology

In-source formation of N-acetyl-p-benzoquinone imine (NAPQI), the  putatively toxic acetaminophen (paracetamol) metabolite, after  derivatization with pentafluorobenzyl bromide and GC–ECNICI-MS analysis -  ScienceDirect
In-source formation of N-acetyl-p-benzoquinone imine (NAPQI), the putatively toxic acetaminophen (paracetamol) metabolite, after derivatization with pentafluorobenzyl bromide and GC–ECNICI-MS analysis - ScienceDirect

N-Acetyl-p-benzochinonimin
N-Acetyl-p-benzochinonimin

Full article: The acetaminophen metabolite N-acetyl-p-benzoquinone imine  (NAPQI) inhibits glutathione synthetase in vitro; a clue to the mechanism  of 5-oxoprolinuric acidosis?
Full article: The acetaminophen metabolite N-acetyl-p-benzoquinone imine (NAPQI) inhibits glutathione synthetase in vitro; a clue to the mechanism of 5-oxoprolinuric acidosis?

What Are the Potential Sites of Protein Arylation by N-Acetyl-p-benzoquinone  Imine (NAPQI)? | Chemical Research in Toxicology
What Are the Potential Sites of Protein Arylation by N-Acetyl-p-benzoquinone Imine (NAPQI)? | Chemical Research in Toxicology