MARS: optimistic therapy method in fulminant hepatic failure secondary to cytotoxic mushroom poisoning--a case report

Yufei Shi1, Jianglong He, Shibin Chen

  • 1Blood Detoxication Center, Department of Infectious, the first affiliated hospital, Jiangxi Medical College, P.R.China.

Liver
|September 11, 2002
PubMed
Abstract

Insights

Cytotoxic mushroom poisoning, caused by amatoxins, is highly lethal. Molecular Adsorbent Recirculating System (MARS) therapy effectively removes these toxins, improving patient outcomes and offering a new treatment option for severe liver failure.

Area of Science:

  • Toxicology
  • Hepatology
  • Critical Care Medicine

Background:

  • Cytotoxic mushroom poisoning, primarily from Amanita phalloides, results in high mortality due to amatoxins inhibiting RNA Polymerase II.
  • Amatoxins cause severe liver damage, including fatty degeneration and necrosis, with limited effective treatments beyond liver transplantation.
  • Phallotoxins contribute to cholestasis by interacting with F-actin, further exacerbating liver injury.

Observation:

  • Traditional treatments like hemodialysis and hemoperfusion are ineffective in clearing amatoxins.
  • The Molecular Adsorbent Recirculating System (MARS), utilizing albumin-containing dialysate, is a novel approach for removing protein-bound toxins.
  • MARS therapy involves a closed-loop system with charcoal, anion exchanger resin, and a conventional hemodialyzer.

Findings:

  • MARS therapy demonstrated successful elimination of protein-bound amatoxins, which are typically poorly dialyzable.
  • This enhanced toxin clearance minimized toxic exposure to susceptible cells, particularly hepatocytes.
  • A patient with severe mushroom poisoning experienced a surprising recovery even when treatment was initiated a week after ingestion.

Implications:

  • MARS therapy represents a promising alternative or adjunct to liver transplantation for severe cytotoxic mushroom poisoning.
  • The ability to remove protein-bound toxins offers new therapeutic avenues for various forms of liver failure.
  • Further research into MARS therapy could optimize treatment protocols for toxin-induced liver injury.

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