Gamma-Glutamyl Transferase at the Crossroads of Cardiometabolic Disease and Metabolic Dysfunction–Associated Steatotic Liver Disease

Gamma-glutamyltransferase (GGT) is traditionally recognized as a sensitive marker of hepatobiliary dysfunction, but emerging evidence indicates that it is a key mediator between metabolic dysfunction-associated steatotic liver disease (MASLD) and cardiometabolic disease (CMD). This review explores the transformation of GGT from a passive diagnostic indicator into a systemic pro-oxidant driver and prognostic marker. GGT's role extends well beyond the gamma-glutamyl cycle. GGT triggers the catabolism of extracellular glutathione and, in the presence of transition metals, produces reactive oxygen species and initiates the development of atherosclerotic plaque. Clinical evidence significantly supports this mechanism. GGT levels correlate closely with markers of systemic inflammation and multiorgan dysfunction. Elevated GGT is associated with an increased risk of early-onset coronary artery disease and sustained cardiovascular mortality.

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Publication Details

Journal
Cardiology in Review
Published
2026-09-10
DOI
https://doi.org/10.1097/crd.0000000000001474
Primary Topic
Sulfur Compounds in Biology
Type
article
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article

Gamma-Glutamyl Transferase at the Crossroads of Cardiometabolic Disease and Metabolic Dysfunction–Associated Steatotic Liver Disease

Kateryna Strubchevska, Marko Kozyk, Stephen J. Peterson, Olena Strubchevska et al.
Cardiology in Review
Sulfur Compounds in Biology
article

Gamma-Glutamyl Transferase at the Crossroads of Cardiometabolic Disease and Metabolic Dysfunction–Associated Steatotic Liver Disease

Kateryna Strubchevska, Marko Kozyk, Stephen J. Peterson, Olena Strubchevska, William H. Frishman, Megha M. Kothari, Wilbert S. Aronow
article en

Abstract

Gamma-glutamyltransferase (GGT) is traditionally recognized as a sensitive marker of hepatobiliary dysfunction, but emerging evidence indicates that it is a key mediator between metabolic dysfunction-associated steatotic liver disease (MASLD) and cardiometabolic disease (CMD). This review explores the transformation of GGT from a passive diagnostic indicator into a systemic pro-oxidant driver and prognostic marker. GGT's role extends well beyond the gamma-glutamyl cycle. GGT triggers the catabolism of extracellular glutathione and, in the presence of transition metals, produces reactive oxygen species and initiates the development of atherosclerotic plaque. Clinical evidence significantly supports this mechanism. GGT levels correlate closely with markers of systemic inflammation and multiorgan dysfunction. Elevated GGT is associated with an increased risk of early-onset coronary artery disease and sustained cardiovascular mortality.

Cardiology in Review
Jagiellonian University (PL), Westchester Medical Center (US), NewYork–Presbyterian Brooklyn Methodist Hospital (US), New York Medical College (US)
Good health and well-being
Openalex Percentile: Top 15%
Sulfur Compounds in Biology
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Gamma-Glutamyl Transferase at the Crossroads of Cardiometabolic Disease and Metabolic Dysfunction–Associated Steatotic Liver Disease — Kateryna Strubchevska, Marko Kozyk, et al. · Cardiology in Review (2026) | TGRS Research Map | TGRS