1,698
Views
1
CrossRef citations to date
0
Altmetric
Clinical Research

An outbreak of Amanita exitialis poisoning

ORCID Icon, , , , , , , , , , & ORCID Icon show all
Pages 270-275 | Received 20 Sep 2022, Accepted 13 Dec 2022, Published online: 15 Mar 2023

References

  • Diaz JH. Amatoxin-containing mushroom poisonings: species, toxidromes, treatments, and outcomes. Wilderness Environ Med. 2018;29(1):111–118.
  • Cai Q, Tulloss RE, Tang LP, et al. Multi-locus phylogeny of lethal amanitas: implications for species diversity and historical biogeography. BMC Evol Biol. 2014;14:143.
  • Tang S, Zhou Q, He Z, et al. Cyclopeptide toxins of lethal amanitas: compositions, distribution and phylogenetic implication. Toxicon. 2016;120:78–88.
  • Chen ZH, Zhang P, Zhang GZ. Investigation and analysis of 102 mushroom poisoning cases in Southern China from 1994 to 2012. Fungal Diversity. 2014;64(1):123–131.
  • Wu J, Gong X, Hu Z, et al. Acute liver failure caused by Amanita verna: a case series and review of the literature. BMC Surg. 2021;21(1):436.
  • Geng J, Cao Z, Ma X, et al. Mushroom poisoning: an overlooked cause of acute liver injury in China. Liver Int. 2017;37(3):468–469.
  • Sun J, Li HJ, Zhang HS, et al. Investigating and analyzing three cohorts of mushroom poisoning caused by Amanita exitialis in Yunnan, China. Hum Exp Toxicol. 2018;37(7):665–678.
  • Le Daré B, Ferron PJ, Gicquel T. Toxic effects of amanitins: repurposing toxicities toward new therapeutics. Toxins. 2021;13(6):417.
  • Tavassoli M, Afshari A, Arsene AL, et al. Toxicological profile of Amanita virosa – a narrative review. Toxicol Rep. 2019;6:143–150.
  • Li P, Deng WQ, Li TH, et al. Illumina-based de novo transcriptome sequencing and analysis of Amanita exitialis basidiocarps. Gene. 2013;532(1):63–71.
  • Hu J, Zhang P, Zeng J, et al. Determination of amatoxins in different tissues and development stages of Amanita exitialis. J Sci Food Agric. 2012;92(13):2664–2667.
  • Persson HE, Sjöberg GK, Haines JA, et al. Poisoning severity score. Grading of acute poisoning. J Toxicol Clin Toxicol. 1998;36(3):205–213.
  • Deng WQ, Li TH, Zhang M, et al. Analysis of common poisonous species of amanita and their poisoning cases in South China. Mycosystema. 2020;39(9):1750–1758.
  • Broussard CN, Aggarwal A, Lacey SR, et al. Mushroom poisoning–from diarrhea to liver transplantation. Am J Gastroenterol. 2001;96(11):3195–3198.
  • Karlson-Stiber C, Persson H. Cytotoxic fungi–an overview. Toxicon. 2003;42(4):339–349.
  • Diaz JH. Syndromic diagnosis and management of confirmed mushroom poisonings. Crit Care Med. 2005;33(2):427–436.
  • Eyer F, Felgenhauer N, Zilker T. The development of a toxic megacolon due to Amanita phalloides poisoning. A rare complication. Dtsch Med Wochenschr. 2004;129(4):137–140.
  • Huang L, Liu XL, Cao CS, et al. Outbreak of fatal mushroom poisoning with Amanita franchetii and Ramaria rufescens. BMJ Case Rep. 2009;2009:bcr06.2008.0327.
  • Hilty MP, Halama M, Zimmermann AK, et al. Ulcerating ileocolitis in severe amatoxin poisoning. Case Rep Gastrointest Med. 2015;2015:632085.
  • Barceloux D, McGuigan M, Hartigan-Go K. Position statement: cathartics. American Academy of Clinical Toxicology; European Association of Poisons Centres and Clinical Toxicologists. J Toxicol Clin Toxicol. 1997;35(7):743–752.
  • Trabulus S, Altiparmak MR. Clinical features and outcome of patients with amatoxin-containing mushroom poisoning. Clin Toxicol. 2011;49(4):303–310.
  • Wang Q, Sun M, Lv H, et al. Amanita fuliginea poisoning with thrombocytopenia: a case series. Toxicon. 2020;174:43–47.
  • Lin LY, Tong YL, Lu YQ. The characteristics of liver injury induced by amanita and clinical value of α-amanitin detection. Hepatobiliary Pancreat Dis Int. 2022;21(3):257–266.
  • Agarwal B, Wright G, Gatt A, et al. Evaluation of coagulation abnormalities in acute liver failure. J Hepatol. 2012;57(4):780–786.
  • Stravitz RT, Bowling R, Bradford RL, et al. Role of procoagulant microparticles in mediating complications and outcome of acute liver injury/acute liver failure. Hepatology. 2013;58(1):304–313.
  • Stravitz RT, Ellerbe C, Durkalski V, et al. Thrombocytopenia is associated with multi-organ system failure in patients with acute liver failure. Clin Gastroenterol Hepatol. 2016;14(4):613–620.e4.
  • Mooberry MJ, Key NS. Microparticle analysis in disorders of hemostasis and thrombosis. Cytometry A. 2016;89(2):111–122.
  • Lee KCL, Baker L, Mallett S, et al. Hypercoagulability progresses to hypocoagulability during evolution of acetaminophen-induced acute liver injury in pigs. Sci Rep. 2017;7(1):9347.
  • Chen X, Shao B, Yu C, et al. Energy disorders caused by mitochondrial dysfunction contribute to α-amatoxin-induced liver function damage and liver failure. Toxicol Lett. 2021;336:68–79.
  • Leist M, Gantner F, Naumann H, et al. Tumor necrosis factor-induced apoptosis during the poisoning of mice with hepatotoxins. Gastroenterology. 1997;112(3):923–934.
  • Eren SH, Demirel Y, Ugurlu S, et al. Mushroom poisoning: retrospective analysis of 294 cases. Clinics. 2010;65(5):491–496.
  • Ward J, Kapadia K, Brush E, et al. Amatoxin poisoning: case reports and review of current therapies. J Emerg Med. 2013;44(1):116–121.
  • Bonacini M, Shetler K, Yu I, et al. Features of patients with severe hepatitis due to mushroom poisoning and factors associated with outcome. Clin Gastroenterol Hepatol. 2017;15(5):776–779.
  • Gao Y, Zhang H, Zhong H, et al. Lactate and blood ammonia on admission as biomarkers to predict the prognosis of patients with acute mushroom poisoning and liver failure: a retrospective study. Toxicol Res. 2021;10(4):850–855.
  • Huang J, Xuan D, Li X, et al. The value of APACHE II in predicting mortality after paraquat poisoning in Chinese and Korean population: a systematic review and meta-analysis. Medicine. 2017;96(30):e6838.
  • Wu X, Xie W, Cheng Y, et al. Severity and prognosis of acute organophosphorus pesticide poisoning are indicated by C-reactive protein and copeptin levels and APACHE II score. Exp Ther Med. 2016;11(3):806–810.