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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.
Background:
Poisoning by cytotoxic mushrooms (Amanita phalloides and related species) is associated with severe morbidity and a high mortality rate (lethality > 20% in adults and > 50% in children). The main causes of this intoxication are the amatoxines, which inhibit DNA-dependent RNA Polymerase II or B. This interaction leads to a tight complex, and the inhibition is of a non-competitive type (1); in addition to those tight binding inhibitors of adenosine kinase, papain, cathepsin L, cathepsin B, cysteine proteinase and bromelain (2), inhibit the synthesis of messenger RNA in the hepatocytes, decrease the formation of coagulation factors and of immunoglobulins and effect a vasoconstriction. They also have an influence on the transcription and lesions that are seen in cells with rapid protein synthesis, particularly in liver and renal cells, with the cellular changes causing the fragmentation and segregation of all nuclear components, even at low toxin concentrations (3). Phallotoxin, which is the other toxin isolated from death cap, binds with a high affinity to microfilamentous structures - in particular, to F-actin, which stimulates the polymerization of G-actin, stabilizes the F-actin filaments, irreversibly polymerizes actin filaments and causes cholestasis (4). Liver is recognized as the target organ for Amanita phalloides toxins; it is presented by fatty degeneration, acute toxic dystrophy and centrilobular necroses (5). Therapeutic options employed to treat mushroom intoxication, such as hemodiaperfusion on activated charcoal, high dosages of penicillin G, oral charcoal, etc., very often failed to act properly and liver transplantation (when a graft is available) appeared to be the only solution. The most polarized debate concerns the value of extracorporeal elimination. Plasmapheresis and peritoneal dialysis proved much less useful for this purpose; neither haemodialysis (HD) nor haemoperfusion (HP) contributed to the clearance of amatoxin (6, 7). Recently, Stange et al. (8). introduced a new detoxication method (referred to as MARS) for protein-bound substances in patients with liver failure and grade III and IV hepatic encephalopathy. MARS was performed with an albumin-containing dialysate, which is recycled in a closed loop that contains a charcoal cartridge, an anion exchanger resin adsorber and a conventional haemodialyser. With dialysis using an albumin-containing dialysate, protein-bound substances, which are usually not sufficiently dialysable, can be eliminated. The treatments increase the rate of toxin elimination to the extent that the toxic exposure of highly susceptible cells, such as hepatocytes, is minimized. This leads to the surprise recovery of the poisoning patient, despite her severe condition, even as late as up to a week after mushroom ingestion.
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.

