Vitamin B12 deficiency and metabolism-mediated thrombotic microangiopathy (MM-TMA)

Waleed Sabry1, Mohamed Elemary1, Thierry Burnouf2

  • 1Saskatoon Cancer Centre and College of Medicine, University of Saskatchewan, Saskatoon, Canada.

Insights

Vitamin B12 deficiency can mimic thrombotic microangiopathies (TMA), a condition known as pseudo-TMA or metabolism-mediated TMA (MM-TMA). Prompt identification is crucial as pseudo-TMA and MM-TMA are treatable with vitamin B12 supplementation.

Area of Science:

  • Hematology
  • Internal Medicine
  • Biochemistry

Background:

  • Thrombotic microangiopathies (TMA) present with hemolytic anemia, thrombocytopenia, and organ damage.
  • Severe vitamin B12 deficiency or metabolic defects can mimic TMA, termed metabolism-mediated TMA (MM-TMA).
  • MM-TMA pathogenesis involves red cell fragmentation, reduced platelet production, and endothelial injury from accumulated metabolites.

Purpose of the Study:

  • To highlight the importance of distinguishing MM-TMA from true TMA.
  • To discuss the diagnostic challenges posed by MM-TMA.
  • To explore potential improvements in diagnostic scoring systems for MM-TMA.

Main Methods:

  • Review of clinical presentations and laboratory findings in TMA and MM-TMA.
  • Analysis of the role of vitamin B12 in red cell metabolism and endothelial integrity.
  • Evaluation of the PLASMIC score and potential modifications for identifying MM-TMA.

Main Results:

  • Vitamin B12 deficiency can present with clinical and laboratory features indistinguishable from TMA.
  • The PLASMIC score, incorporating mean corpuscular volume, aids in identifying pseudo-TMA and MM-TMA.
  • Modifications to scoring systems, including reticulocytosis, may enhance MM-TMA identification.

Conclusions:

  • Prompt diagnosis of MM-TMA is essential for appropriate treatment with vitamin B12 supplementation.
  • Distinguishing MM-TMA from TMA avoids unnecessary and potentially harmful TMA therapies.
  • Refining diagnostic tools like the PLASMIC score can improve the accurate identification of MM-TMA.

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