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Published on: May 26, 2021
Clonal Hematopoiesis in Clinical and Experimental Heart Failure With Preserved Ejection Fraction
Jesse D Cochran1,2, Yoshimitsu Yura1, Mark C Thel1
1Robert M. Berne Cardiovascular Research Center, Division of Cardiovascular Medicine (J.D.C., Y.Y. [now with the Department of Cardiovascular Medicine, Nagoya University School of Medicine, Japan], M.C.T., H.D., A.H.P., Yuka Arai, Yohei Arai, K.H. [now with the Department of Internal Medicine II, Kansai Medical University, Osaka, Japan], E.P., N.W.C., A.K., M.E., M.H., K.K.H., H.S., Y.H.B., S.T., A.A., K.W.), University of Virginia School of Medicine, Charlottesville.
Insights
Clonal hematopoiesis (CH) is linked to worse heart function and prognosis in heart failure with preserved ejection fraction (HFpEF). A mouse model of TET2-mediated CH showed increased HFpEF features, suggesting a causal role.
Area of Science:
- Cardiovascular Medicine
- Hematology
- Genetics
Background:
- Clonal hematopoiesis (CH), driven by nonmalignant gene mutations, impacts immune function and chronic diseases.
- CH is linked to poor outcomes in heart failure with reduced ejection fraction (HFrEF).
- The prognostic role of CH in heart failure with preserved ejection fraction (HFpEF) remains understudied.
Purpose of the Study:
- To characterize CH in patients diagnosed with HFpEF.
- To investigate the potential causal role of CH in HFpEF using a murine model.
Main Methods:
- Ultradeep sequencing identified CH in 81 HFpEF patients and 36 controls, analyzing 20 candidate driver genes.
- A replication cohort of 59 HFpEF individuals was also assessed.
- A murine model involved adoptive transfer of Tet2-deficient bone marrow followed by HFpEF induction.
Main Results:
- TET2-mediated CH was enriched in HFpEF patients (12%) compared to controls (0%).
- HFpEF patients with CH showed exacerbated diastolic dysfunction (elevated E/e', E/A) and worse 5-year cardiovascular hospitalization rates (HR 5.06).
- The murine model of Tet2-CH exhibited increased cardiac hypertrophy, diastolic dysfunction, and fibrosis.
Conclusions:
- CH is associated with impaired cardiac function and poorer prognosis in HFpEF patients.
- Tet2-mediated CH in a murine model exacerbates key features of HFpEF, supporting a causal link.
Background:
Clonal hematopoiesis (CH), which results from an array of nonmalignant driver gene mutations, can lead to altered immune cell function and chronic disease, and has been associated with worse outcomes in patients with heart failure (HF) with reduced ejection fraction. However, the role of CH in the prognosis of HF with preserved ejection fraction (HFpEF) has been understudied. This study aimed to characterize CH in patients with HFpEF and elucidate its causal role in a murine model.
Methods:
Using a panel of 20 candidate CH driver genes and a variant allele fraction cutoff of 0.5%, ultradeep error-corrected sequencing identified CH in a cohort of 81 patients with HFpEF (mean age, 71±6 years; ejection fraction, 63±5%) and 36 controls without a diagnosis of HFpEF (mean age, 74±7 years; ejection fraction, 61.5±8%). CH was also evaluated in a replication cohort of 59 individuals with HFpEF.
Results:
Compared with controls, there was an enrichment of TET2-mediated CH in the HFpEF patient cohort (12% versus 0%, respectively; P=0.02). In the HFpEF cohort, patients with CH exhibited exacerbated diastolic dysfunction in terms of E/e' (14.9 versus 11.7, respectively; P=0.0096) and E/A (1.69 versus 0.89, respectively; P=0.0206) compared with those without CH. The association of CH with exacerbated diastolic dysfunction was corroborated in a validation cohort of individuals with HFpEF. In accordance, patients with HFpEF, an age ≥70 years, and CH exhibited worse prognosis in terms of 5-year cardiovascular-related hospitalization rate (hazard ratio, 5.06; P=0.042) compared with patients with HFpEF and an age ≥70 years without CH. To investigate the causal role of CH in HFpEF, nonconditioned mice underwent adoptive transfer with Tet2-wild-type or Tet2-deficient bone marrow and were subsequently subjected to a high-fat diet/L-NAME (Nω-nitro-l-arginine methyl ester) combination treatment to induce features of HFpEF. This model of Tet2-CH exacerbated cardiac hypertrophy by heart weight/tibia length and cardiomyocyte size, diastolic dysfunction by E/e' and left ventricular end-diastolic pressure, and cardiac fibrosis compared with the Tet2-wild-type condition.
Conclusions:
CH is associated with worse heart function and prognosis in patients with HFpEF, and a murine experimental model of Tet2-mediated CH displays greater features of HFpEF.
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