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1.
Chinese Journal of Industrial Hygiene and Occupational Diseases ; (12): 443-447, 2023.
Artigo em Chinês | WPRIM | ID: wpr-986047

RESUMO

Objective: To explore the characteristics of Banna miniature pig liver failure induced by amanita exitialis. Methods: From September to October 2020, a reverse high performance liquid chromatography (RP-HPLC) method was used to determine the toxin content of amanita exitialis solution, and 2.0 mg/kg amanita exitialis solution (α-amanitins+β-amanitins) was administered orally to Banna miniature pigs. Toxic symptoms, blood biochemical indexes and histopathological changes of liver, heart and kidney were observed at each time point. Results: All Banna miniature pigs died within 76 h of exposure, and different degrees of digestive tract symptoms such as nausea, vomiting and diarrhea appeared between 6 and 36 h. The biochemical indexes of alanine aminotransferase, aspartate aminotransferase, total bilirubin, lactate dehydrogenase, myoglobin, creatine kinase isoenzyme, blood urea nitrogen and creatinine increased significantly at 52 h after exposure, and the differences were statistically significant compared with 0 h (P<0.05). The bleeding of liver and heart was obvious under macroscopic and microscopic observation, hepatocyte necrosis, renal tubule epithelial cell swelling. Conclusion: Large dose of amanita exitialis can cause acute liver failure of Banna miniature pigs, which is in line with the pathophysiological characteristics of acute liver failure, and lays a foundation for further research on the toxic mechanism and detoxification drugs of amanita exitialis induced liver failure.


Assuntos
Animais , Suínos , Amanitinas/metabolismo , Porco Miniatura/metabolismo , Amanita/metabolismo , Falência Hepática Aguda , Intoxicação Alimentar por Cogumelos/diagnóstico
2.
Chinese Journal of Emergency Medicine ; (12): 1263-1268, 2016.
Artigo em Chinês | WPRIM | ID: wpr-515515

RESUMO

Objective To establish acute hepatotoxic model induced by Amanita exitialis and to study the characteristics of acute toxic liver failure induced by mushrooms containing peptide toxins,in hope for providing some help to experimental research on poisoning induced by mushrooms containing peptide toxins.Methods UPLC-MS/MS (Ultra performance liquid chromatography-tandem mass spectrometry) method was used to detect peptide toxins in Amanita exitialis.To establish acute toxic liver hepatic failure model,the beagles were fed with 60 mg/kg of lyophilized powder of Amanita exitialis fungus which encapsulated in starch capsules.Toxic sighs were observed,coagulation function,hepatic and renal function,liver histopathological morphology,peptide toxin concentration in plasma and urine were detected during the experiment.Results Total peptide toxins in Amanita exitialis was (3 482.6 ± 124.94) mg/ kg.All the beagles had toxic signs including vomiting and diarrhea in 12-48 h after ingestion.On 24 h after ingestion,the beagles' ALT,AST,TBIL,ALP,PT and APTT levels increased obviously.On 36 h after ingestion,the beagles' ALT,AST,PT and APTT values reached their peaks (ALT:283.2 ± 112.9 Kallmann unit;AST:223.9 ±93.8 Kallmann units;PT:132.9 ± 152.6 s;APTT:131.4 ± 153.9 s).On 48 h after ingestion,the beagles' TBIL and ALP levels reached their peaks (TBIL:23.3 ± 14.6 mol/L;ALP:274.5 ± 115.5 U/L).The beagles' TBIL,TP and APTT returned to normal 1 week after ingestion,their ALT,AST and ALP levels returned to normal 3 weeks after ingestion.Three dogs died during 24-72 h after ingestion.Liver histopathological morphology study showed hemorrhagic necrosis of hepatocytes.Peptide toxins can be detected in plasma within 24 h after ingestion.Peptide toxins can be detected in urine within 96 h after ingestion.Conclusion Amanita peptide toxins can cause hemorrhagic necrosis of liver cells and lead to acute liver failure.This model is consistent with clinical pathophysiological process of acute toxic liver failure induced by mushrooms containing peptide toxins,and it can be applied to the study of diagnosis and treatment of poisoning induced by mushrooms containing peptide toxins.

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