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Published on: May 2, 2025
Growth Differentiation Factor-15 in Diabetic Kidney and Cardiovascular Disease: Pathogenic Driver or Protective
Amani Slika1,2, Maya Noureddine1, Dalal Jomaa1,2
1Department of Anatomy, Cell Biology, and Physiological Sciences, Faculty of Medicine, and Medical Center, American University of Beirut, Beirut, Lebanon.
Abstract:
Diabetic kidney disease (DKD) and diabetic cardiomyopathy continue to drive excess morbidity and mortality in diabetes, underscoring a critical gap between mechanistic insight and clinical translation. Growth differentiation factor-15 (GDF-15), a stress-inducible cytokine of the transforming growth factor-β superfamily, has emerged as a critical biomarker and putative modulator of metabolic inflammation. Yet the field remains divided on a fundamental question: is GDF-15 simply reporting tissue distress, or does it shape disease trajectories? In this article, we explore how GDF-15 may both signal and shape DKD and cardiovascular disease. Drawing on evidence from experimental models, longitudinal clinical studies, and multi-omics analyses, we highlight the context-dependent biology of GDF-15, protective during acute metabolic or inflammatory stress but potentially pathogenic when chronically elevated in diabetes. We examine its regulation via the GFRAL-RET signaling axis, its segment-specific expression across renal tubular compartments, and its emerging role in cardiac remodeling and metabolic inflammation. Recent clinical data position circulating GDF-15 as an early and sensitive indicator of DKD progression and cardiovascular events. At the same time, mechanistic studies increasingly implicate sustained GDF-15 signaling in mitochondrial dysfunction, inflammatory amplification, and maladaptive tissue remodeling. Together, these observations place GDF-15 at a critical inflection point between risk stratification and disease mechanism. A key unresolved challenge is defining when, where, and how GDF-15 signaling exerts adaptive versus maladaptive effects-knowledge that will be essential for determining whether GDF-15 should be targeted, harnessed, or restrained in diabetes.
Article Highlights:
GDF-15 is a stress-responsive cytokine of the TGF-β superfamily regulated by p53, mitochondrial dysfunction, and inflammatory signaling. Circulating GDF-15 levels are low under physiological conditions but rise markedly in response to cellular and metabolic stress. Elevated GDF-15 predicts incident diabetes and reflects hyperglycemia-induced oxidative and cellular stress. GDF-15 correlates with albuminuria, estimated glomerular filtration rate decline, and progression risk in diabetic kidney disease. Increased levels predict heart failure, myocardial infarction, and cardiovascular mortality in diabetes. Targeting the GDF-15-GFRAL axis and leveraging GDF-15 as a biomarker offer emerging translational potential.
Insights
Growth differentiation factor-15 (GDF-15) is a stress-responsive cytokine implicated in diabetic kidney disease and cardiomyopathy. While GDF-15 can be protective, chronically elevated levels in diabetes may contribute to disease progression, highlighting its complex role.
Area of Science:
- Metabolic and cardiovascular research
- Biomarker discovery
- Molecular mechanisms of disease
Background:
- Diabetic kidney disease (DKD) and diabetic cardiomyopathy significantly increase morbidity and mortality in diabetes.
- Growth differentiation factor-15 (GDF-15), a stress-inducible cytokine, is a recognized biomarker and potential modulator of metabolic inflammation.
- The precise role of GDF-15 in disease progression remains debated: is it merely an indicator of distress or an active participant in disease pathogenesis?
Purpose of the Study:
- To explore the dual role of GDF-15 in signaling and shaping diabetic kidney disease and cardiovascular disease.
- To elucidate the context-dependent biology of GDF-15, differentiating its protective versus pathogenic effects in diabetes.
- To investigate the regulatory mechanisms and clinical implications of GDF-15 in metabolic diseases.
Main Methods:
- Review of experimental models, longitudinal clinical studies, and multi-omics analyses.
- Examination of GDF-15 regulation via the GFRAL-RET signaling axis.
- Analysis of GDF-15 expression across renal tubular compartments and its role in cardiac remodeling.
Main Results:
- GDF-15 exhibits context-dependent effects, being protective during acute stress but potentially pathogenic with chronic elevation in diabetes.
- Elevated circulating GDF-15 serves as an early, sensitive indicator of DKD progression and cardiovascular events.
- Sustained GDF-15 signaling is increasingly implicated in mitochondrial dysfunction, inflammatory amplification, and maladaptive tissue remodeling.
Conclusions:
- GDF-15 is at a critical juncture, serving as both a risk stratification biomarker and a mechanistic player in diabetes complications.
- Defining the precise conditions under which GDF-15 signaling is adaptive versus maladaptive is crucial for therapeutic development.
- Future strategies may involve targeting, harnessing, or restraining GDF-15 signaling for managing diabetes-related complications.
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