Journal of Oncology Practice · 2016 · 11 citations · 4 references
Hematological MalignancyPolymerase Chain ReactionChronic Myeloid LeukemiaBcr-abl GenesBcr-abl TestsLaboratory HematologyGranulocyteMixed-phenotype Acute LeukemiaHematologyDiagnosisPathologyLaboratory MedicineImmunologyMolecular DiagnosticsMedicineMyelopoiesisMyeloid Neoplasia
Chronic myeloid leukemia (CML) is a myeloproliferative neoplasm resulting from the fusion of the BCR-ABL genes, forming the Philadelphia chromosome. The diagnosis is often suspected when there is leukocytosis with left shift and basophilia. Confirmation of the diagnosis requires a demonstration of BCR-ABL by polymerase chain reaction. Using data from the William Beaumont laboratory data registry, we conducted a retrospective review of all the orders for BCR-ABL tests sent to the clinical pathology laboratory between March 11, 2014 and September 12, 2014. We concluded that the presence of concurrent neutrophilia and basophilia has a sensitivity of 100% (95% CI, 69.15% to 100%) and specificity of 100% (95% CI, 93.15% to 100%) in the initial diagnosis of CML. Our results suggest that the presence of both neutrophilia and basophilia should be used as a threshold for the placement of orders for BCR-ABL in the initial diagnosis of CML in patients with leukocytosis with left shift and provide a basis for a reduction in health care spending. Restricting BCR-ABL tests to this population would save approximately $198 million annually in national health care spending.
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Fused transcript of abl and bcr genes in chronic myelogenous leukaemia
Emma Shtivelman, Batia Lifshitz, Robert Peter Gale et al. · Nature · 1985 · 1.6K citations
Tyrosine Kinase Activity and Transformation Potency of <i>bcr-abl</i> Oncogene Products
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