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Host and fungal factors both contribute to cryptococcosis-associated hyperammonemia (cryptammonia)
Rosanna P Baker1, Maria Schachter2, Steven Phillips3
1Department of Microbiology and Immunology, Johns Hopkins School of Public Health, Baltimore, Maryland, USA.
Abstract:
Cryptococcus neoformans and Cryptococcus gattii are both known urease producers and have the potential to cause hyperammonemia. We hypothesized that the risk of hyperammonemia is increased by renal failure, burden of cryptococcal infection, and fungal strain characteristics. We performed a retrospective review of plasma ammonia levels in patients with cryptococcal infections. Risk factors for hyperammonemia were statistically compared between patients with and without hyperammonemia (>53 µmol/L). Cryptococcal cells from three patients included in the study were recovered from our biorepository. Strain characteristics including urease activity, ammonia production, growth curves, microscopy, melanin production, and M13 molecular typing were analyzed and compared with a wild-type (WT) C. neoformans strain. We included 29 patients, of whom 37.9% had hyperammonemia, 59% had disseminated cryptococcal infection (DCI), and 41% had isolated central nervous system infection. Thirty-eight percent of patients had renal failure and 28% had liver disease. Renal failure was associated with 4.4 times (95% confidence interval [CI] 1.5, 13.0) higher risk of hyperammonemia. This risk was higher in DCIs (RR 6.2, 95% CI 1.0, 40.2) versus isolated cryptococcal meningitis (RR 2.5, 95% CI, 0.40, 16.0). Liver disease and cryptococcal titers were not associated with hyperammonemia. C. neoformans from one patient with extreme hyperammonemia demonstrated a 4- to 5-fold increase in extracellular urease activity, slow growth, enlarged cell size phenotypes, and diminished virulence factors. Hyperammonemia was strongly associated with renal failure in individuals with DCI, surpassing associations with liver failure or cryptococcal titers. However, profound hyperammonemia in one patient was attributable to high levels of urease secretion unique to that cryptococcal strain. Prospective studies are crucial to exploring the significance of this association.IMPORTANCECryptococcus produces and secretes the urease enzyme to facilitate its colonization of the host. Urease breaks down urea into ammonia, overwhelming the liver's detoxification process and leading to hyperammonemia in some hosts. This underrecognized complication exacerbates organ dysfunction alongside the infection. Our study investigated this intricate relationship, uncovering a strong association between the development of hyperammonemia and renal failure in patients with cryptococcal infections, particularly those with disseminated infections. We also explore mechanisms underlying increased urease activity, specifically in strains associated with extreme hyperammonemia. Our discoveries provide a foundation for advancing research into cryptococcal metabolism and identifying therapeutic targets to enhance patient outcomes.
Insights
Renal failure significantly increases hyperammonemia risk in cryptococcal infections, especially disseminated ones. Certain Cryptococcus strains with high urease activity may also cause extreme hyperammonemia.
Area of Science:
- Medical Mycology
- Infectious Diseases
- Nephrology
Background:
- Cryptococcus species produce urease, an enzyme that breaks down urea into ammonia.
- Elevated ammonia levels (hyperammonemia) can overwhelm liver detoxification pathways, potentially worsening organ dysfunction in patients with infections.
Purpose of the Study:
- To investigate the risk factors for hyperammonemia in patients with cryptococcal infections.
- To compare the risk of hyperammonemia between patients with and without renal failure, disseminated cryptococcal infection (DCI), and liver disease.
- To analyze cryptococcal strain characteristics, including urease activity, in patients with varying levels of hyperammonemia.
Main Methods:
- Retrospective review of plasma ammonia levels in 29 patients with cryptococcal infections.
- Statistical comparison of risk factors for hyperammonemia (>53 µmol/L).
- Analysis of cryptococcal strain characteristics (urease activity, ammonia production, growth, microscopy, melanin, M13 typing) from three patients.
Main Results:
- 37.9% of patients had hyperammonemia; 59% had DCI.
- Renal failure was associated with a 4.4-fold increased risk of hyperammonemia.
- The risk of hyperammonemia was higher in DCI (RR 6.2) compared to isolated cryptococcal meningitis (RR 2.5).
- One patient's C. neoformans strain showed significantly increased urease activity, slow growth, and enlarged cell size.
Conclusions:
- Hyperammonemia in cryptococcal infections is strongly linked to renal failure, particularly in DCI.
- Specific Cryptococcus strains with enhanced urease production may contribute to profound hyperammonemia.
- Further prospective studies are needed to understand this association and identify therapeutic targets.
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