The highs and lows of cyclic thrombocytopenia.
Haiyu ZhangAlejandro Villar-PradosJames B BusselJames L ZehnderPublished in: British journal of haematology (2023)
Cyclic thrombocytopenia (CTP) is characterized by periodic platelet oscillation with substantial amplitude. Most CTP cases have a thrombocytopenic background and are often misdiagnosed as immune thrombocytopenia with erratically effective treatment choices. CTP also occurs during hydroxyurea treatment in patients with myeloproliferative diseases. While the aetiology of CTP remains uncertain, here we evaluate historical, theoretical and clinical findings to provide a framework for understanding CTP pathophysiology. CTP retains the intrinsic oscillatory factors defined by the homeostatic regulation of platelet count, presenting as reciprocal platelet/thrombopoietin oscillations and stable oscillation periodicity. Moreover, CTP patients possess pathogenic factors destabilizing the platelet homeostatic system thereby creating opportunities for external perturbations to initiate and sustain the exaggerated platelet oscillations. Beyond humoral and cell-mediated autoimmunity, we propose recently uncovered germline and somatic genetic variants, such as those of MPL, STAT3 or DNMT3A, as pathogenic factors in thrombocytopenia-related CTP. Likewise, the JAK2 V617F or BCR::ABL1 translocation that drives underlying myeloproliferative diseases may also play a pathogenic role in hydroxyurea-induced CTP, where hydroxyurea treatment can serve as both a trigger and a pathogenic factor of platelet oscillation. Elucidating the pathogenic landscape of CTP provides an opportunity for targeted therapeutic approaches in the future.
Keyphrases
- high frequency
- working memory
- immune response
- stem cells
- ejection fraction
- newly diagnosed
- dna methylation
- sickle cell disease
- acute lymphoblastic leukemia
- tyrosine kinase
- dna damage
- drug delivery
- gene expression
- cell proliferation
- chronic kidney disease
- prognostic factors
- drug induced
- oxidative stress
- mesenchymal stem cells
- patient reported outcomes
- copy number
- genome wide
- cell therapy
- smoking cessation
- celiac disease
- diabetic rats
- stress induced