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Published on: November 10, 2023
Bone marrow dysfunction in chronic heart failure patients
B Daan Westenbrink1, Adriaan A Voors, Rudolf A de Boer
1Department of Cardiology, Thoraxcenter, University Medical Center Groningen, Hanzeplein 1, PO Box 30001, Groningen 9700 RB, The Netherlands. b.d.westenbrink@thorax.umcg.nl
Insights
Chronic heart failure (CHF) impairs bone marrow stem cell function, reducing both red blood cell and white blood cell production. This dysfunction affects multiple blood cell types and is linked to CHF severity.
Area of Science:
- Hematology
- Cardiology
- Stem Cell Biology
Background:
- Chronic heart failure (CHF) is a complex condition with systemic effects.
- The impact of CHF on the hematopoietic system, particularly bone marrow function, is not fully understood.
Purpose of the Study:
- To investigate potential dysfunction within the hematopoietic compartment in patients with chronic heart failure.
- To determine if CHF is associated with general impairments in bone marrow progenitor cell function.
Main Methods:
- Bone marrow progenitor cells (CD34+) were isolated from CHF patients and healthy controls.
- Cells were cultured with growth factors to assess erythroid (BFU-E) and myeloid (CFU-G, CFU-M) colony formation.
- Apoptosis and erythropoietin receptor (EPO-R) expression were quantified via flow cytometry.
Main Results:
- CHF patients showed significantly reduced erythroid and myeloid progenitor cell function compared to controls.
- Increased apoptosis during erythroid differentiation was observed in CHF patients.
- Impaired clonogenic potential correlated with CHF severity, independent of anemia.
Conclusions:
- Chronic heart failure is associated with profound, general bone marrow dysfunction.
- Multiple hematopoietic lineages are simultaneously affected in CHF patients.
- This bone marrow dysfunction may contribute to the systemic complications of CHF.
Aims:
To investigate whether chronic heart failure (CHF) is associated with a general dysfunction of the haematopoietic compartment.
Methods And Results:
Bone marrow was obtained during coronary artery bypass graft surgery from 20 patients with CHF (age 67 +/- 6 years, 75% NYHA class >or= III, LVEF 32 +/- 6%), and 20 age- and gender-matched control patients with normal cardiac function. CD34(+) haematopoietic progenitor cells were isolated and cultured with increasing doses of erythropoietin (0.02-10 IU/mL, EPO), myeloid growth factors or a mix of both. After 14 days, burst forming units erythroid (BFU-E), and granulocyte or monocyte colony forming units (CFU-G, CFU-M, respectively) were counted. Apoptosis and erythropoietin-receptor (EPO-R) density were quantified by flow cytometry. Throughout the EPO dose range, the CD34(+) cells from CHF patients produced a two-fold lower number of BFU-E colonies compared with controls (P = 0.02). The resistance to EPO was associated with markedly increased apoptosis during erythroid differentiation in CHF patients compared with controls [5.3% (2.9-8.1%) vs. 1.5% (0.8-3.4%), P = 0.01]. Erythropoietin-receptor expression was, however, comparable between CHF patients and controls and the anti-apoptotic cytokine interleukin-3 did not rescue erythropoiesis. In the myeloid cultures, the number of CFU-G and CFU-M colonies was also two-fold lower in CHF patients compared with controls (both P < 0.01). In the mixed-culture assay, myelopoiesis and erythropoiesis were reduced to a similar magnitude in CHF patients. The impaired clonogenic potential was independently associated with clinical and biochemical severity of CHF, but not with the presence of anaemia.
Conclusion:
Chronic heart failure is associated with profound and general bone marrow dysfunction, simultaneously affecting multiple haematopoietic lineages.
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