ICSH guidelines for the laboratory diagnosis of nonimmune hereditary red cell membrane disorders

M-J King1, L Garçon, J D Hoyer

  • 1Membrane Biochemistry, NHS Blood and Transplant, Bristol, UK.

Insights

Diagnosing hereditary red cell disorders like hereditary spherocytosis (HS), hereditary elliptocytosis (HE), and hereditary stomatocytosis (HSt) involves reviewing clinical history, blood counts, and morphology. Specialist tests confirm diagnoses and guide patient management.

Area of Science:

  • Hematology
  • Genetics
  • Biochemistry

Background:

  • Hereditary spherocytosis (HS), hereditary elliptocytosis (HE), and hereditary stomatocytosis (HSt) are inherited red cell disorders.
  • These conditions result from defects in red cell membrane proteins, affecting cytoskeleton or cation permeability.
  • Hereditary stomatocytosis (HSt) requires specific awareness due to poor outcomes after splenectomy.

Purpose of the Study:

  • To identify characteristic clinical features and red cell parameters for HS, HE, and HSt.
  • To describe current screening tests for HS and highlight their limitations.
  • To emphasize the importance of accurate diagnosis for effective patient management.

Main Methods:

  • Review of clinical features and red cell morphology.
  • Analysis of blood count, reticulocyte count, and chemistry results.
  • Description of screening tests for HS and specialist investigations like SDS-PAGE, cation flux, and genetic analysis.

Main Results:

  • Diagnosis is often achievable by integrating screening tests with clinical and laboratory data.
  • Specialist tests like SDS-polyacrylamide gel electrophoresis, monovalent cation flux, and molecular analysis provide further diagnostic support.
  • Red cell morphology is crucial for differentiating between disorders of the cytoskeleton (HS, HE) and abnormal cation permeability (HSt).

Conclusions:

  • Specialist tests are vital for confirming diagnoses and guiding patient management in hereditary red cell disorders.
  • Molecular testing in families is useful for diagnosing recessive inheritance or de novo mutations, especially in severe phenotypes.
  • Accurate diagnosis and understanding the molecular basis are essential for optimizing treatment and preventing complications.
Abstract