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The role of interferon-γ in cardiovascular disease: an update
Ailin Elyasi1, Iryna Voloshyna1, Saba Ahmed1
1Department of Medicine and Biomedical Research Institute, NYU Long Island School of Medicine, NYU Winthrop Hospital, 101 Mineola Boulevard, Suite 4-004, Mineola, NY, 11501, USA.
Insights
Interferon-gamma (IFN-γ) plays a key role in the development of cardiovascular disease (CVD) by promoting atherosclerosis. Targeting IFN-γ signaling pathways offers potential new treatments for CVD prevention and management.
Area of Science:
- Immunology
- Cardiovascular Medicine
- Molecular Biology
Background:
- Cardiovascular disease (CVD) is a leading global cause of death, exacerbated by rising obesity and diabetes rates.
- Traditional CVD treatment focuses on lipid management, but chronic inflammation and immune activation are increasingly recognized as key contributors to atherosclerosis.
- Interferon-gamma (IFN-γ) has emerged as a critical cytokine implicated in the complex interplay between cholesterol and CVD pathogenesis.
Purpose of the Study:
- To review the literature and elucidate the specific effects of IFN-γ on the development and progression of atherosclerotic cardiovascular disease.
- To understand the molecular mechanisms by which IFN-γ contributes to atherogenesis.
Main Methods:
- A comprehensive literature review was conducted.
- The review focused on understanding the role of interferon-gamma (IFN-γ) in the pathogenesis of atherosclerotic cardiovascular disease (CVD).
Main Results:
- Interferon-gamma (IFN-γ), produced by T cells and macrophages, influences all stages of atherogenesis.
- IFN-γ signaling pathways, notably JAK/STAT, induce oxidative stress, foam cell accumulation, smooth muscle cell proliferation, and plaque destabilization.
- These actions highlight IFN-γ's significant contribution to the initiation and advancement of atherosclerotic CVD.
Conclusions:
- The pivotal role of IFN-γ in CVD advancement positions its signaling pathways as potential therapeutic targets.
- Targeting IFN-γ may unlock novel strategies for CVD prevention and treatment.
- Ongoing research explores therapies aimed at manipulating IFN-γ for managing atherosclerotic disease.
Purpose:
Cardiovascular disease (CVD) is the leading cause of death, globally, and its prevalence is only expected to rise due to the increasing incidence of co-morbidities such as obesity and diabetes. Medical treatment of CVD is directed primarily at slowing or reversing the underlying atherosclerotic process by managing circulating lipids with an emphasis on control of low-density lipoprotein (LDL) cholesterol. However, over the past several decades, there has been increasing recognition that chronic inflammation and immune system activation are important contributors to atherosclerosis. This shift in focus has led to the elucidation of the complex interplay between cholesterol and cellular secretion of cytokines involved in CVD pathogenesis. Of the vast array of cytokine promoting atherosclerosis, interferon (IFN)-γ is highly implicated and, therefore, of great interest.
Methods:
Literature review was performed to further understand the effect of IFN-γ on the development of atherosclerotic CVD.
Results:
IFN-γ, the sole member of the type II IFN family, is produced by T cells and macrophages, and has been found to induce production of other cytokines and to have multiple effects on all stages of atherogenesis. IFN-γ activates a variety of signaling pathways, most commonly the Janus kinase (JAK)/signal transducer and activator of transcription (STAT) pathway, to induce oxidative stress, promote foam cell accumulation, stimulate smooth muscle cell proliferation and migration into the arterial intima, enhance platelet-derived growth factor expression, and destabilize plaque. These are just a few of the contributions of IFN-γ to the initiation and progression of atherosclerotic CVD.
Conclusion:
Given the pivotal role of IFN-γ in the advancement of CVD, activation of its signaling pathways is being explored as a driver of atherosclerosis. Manipulation of this key cytokine may lead to novel therapeutic avenues for CVD prevention and treatment. A number of therapies are being explored with IFN-γ as the potential target.
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