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April 23, 2026Current Heart Failure Reports1 citationsOpen Access

IGFBP7 and Heart Failure: From Senescence Biomarker to Therapeutic Target

MEMaissa El‐QendouciRCR G CheluMAMahmoud Abdellatif

Key Result

Preclinical studies show that genetic or pharmacologic inhibition of IGFBP7 attenuates cardiac remodelling and ameliorates cardiac dysfunction in experimental heart failure.

Key Points

  • This research aims to explore the role of IGFBP7 in heart failure and its potential as a therapeutic target.
  • Integrated clinical and preclinical evidence on IGFBP7's association with heart failure.
  • Explored effects of IGFBP7 inhibition in murine models of heart failure.
  • Analyzed cell-specific actions of IGFBP7 on cardiomyocytes and endothelial cells.
  • Circulating IGFBP7 is strongly linked to heart failure development and progression.
  • Inhibition of IGFBP7 reduces cardiac remodelling and improves cardiac function in preclinical models.
  • Findings indicate that targeting IGFBP7 could enhance treatment options for heart failure.

Structured PICO

Does IGFBP7 inhibition attenuate cardiac remodelling and ameliorate cardiac dysfunction in heart failure?

P
Population
Patients with heart failure (including HFrEF and HFpEF) and preclinical murine models of heart failure.
I
Intervention
IGFBP7 inhibition (genetic or pharmacologic)

IGFBP7 is a promising senescence-associated biomarker and therapeutic target in heart failure, with preclinical evidence supporting its inhibition to attenuate cardiac remodelling.

Limitations

  • Excessive clearance of senescent cells could interfere with tissue repair and scar formation
  • Systemic IGFBP7 blockade could entail divergent risks depending on cardiovascular status and cancer susceptibility
  • The dominant cellular sources and targets of IGFBP7 require further clarification
  • Interaction of IGFBP7-targeted strategies with guideline-directed medical therapy remains unclear
  • Systemic IGFBP7 blockade could entail divergent risks depending on cardiovascular status, tissue context, and cancer susceptibility

Abstract

To integrate clinical and preclinical evidence on insulin-like growth factor-binding protein-7 (IGFBP7) in heart failure (HF) and identify key priorities for advancing IGFBP7-targeted therapies toward human translation. Circulating IGFBP7 is strongly associated with HF development, diastolic dysfunction, and disease progression across HF phenotypes. Preclinical studies show that genetic or pharmacologic inhibition of IGFBP7 attenuates cardiac remodelling, reduces cardiomyocyte senescence, and ameliorates cardiac dysfunction in murine HF models. Apparent mechanistic discrepancies between studies likely reflect cell-specific actions: cardiomyocyte-derived IGFBP7 activates IGF-1 receptor signalling, promoting cardiomyocyte hypertrophy and senescence, whereas endothelial-derived IGFBP7 inhibits cardiomyocyte insulin receptor signalling, impairing metabolic homeostasis. IGFBP7 is a senescence-associated biomarker linked to HF development, diastolic dysfunction, and HF progression. Preclinical studies converge on the conclusion that IGFBP7 inhibition attenuates cardiac remodelling and ameliorates cardiac dysfunction in experimental HF, positioning IGFBP7 as a promising therapeutic target. Ongoing research into IGFBP7-targeted strategies may expand HF treatment beyond conventional hemodynamic and neurohormonal interventions by directly addressing the biology of cardiovascular ageing and senescence-driven myocardial dysfunction.

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Cite This Study

El‐Qendouci et al. (2026) conducted a review in Heart Failure. IGFBP7 inhibition was evaluated. Preclinical studies show that genetic or pharmacologic inhibition of IGFBP7 attenuates cardiac remodelling and ameliorates cardiac dysfunction in experimental heart failure.

synapsesocial.com/papers/69e9b89b85696592c86ebc01https://doi.org/10.1007/s11897-026-00750-3
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