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Role of CD40(L)-TRAF signaling in inflammation and resolution-a double-edged sword
Lea Strohm1, Henning Ubbens1, Thomas Münzel1,2
1Department of Cardiology, Cardiology I-Laboratory of Molecular Cardiology, University Medical Center of the Johannes Gutenberg-University Mainz, Mainz, Germany.
Insights
Cardiovascular diseases are a leading cause of death, driven by inflammation and atherosclerosis. Understanding inflammation
Area of Science:
- Cardiovascular science
- Immunology
- Vascular biology
Background:
- Cardiovascular diseases (CVD) and their risk factors cause a significant portion of global deaths.
- Atherosclerosis, an inflammatory vascular disorder, is the primary mechanism in most CVD.
- Inflammation is an independent cardiovascular risk factor, yet also crucial for tissue repair (resolution).
Purpose of the Study:
- To review the dual role of inflammation in cardiovascular disease: detrimental inflammatory reactions and beneficial resolution.
- To explore macrophage polarization (M1/M2) and the CD40L-CD40-TRAF signaling pathway in atherosclerosis and resolution.
- To assess the potential of CD40(L)-based therapies for cardioprotection.
Main Methods:
- Review of large-scale clinical trials and scientific literature.
- Analysis of inflammatory processes and immune cell functions.
- Assessment of signaling pathways, including CD40L-CD40-TRAF.
Main Results:
- Inflammation is a key driver of CVD, but also essential for tissue recovery.
- Macrophage polarization and the CD40L-CD40-TRAF pathway play complex roles in atherosclerosis.
- The CD40L-CD40-TRAF cascade can initiate both harmful and beneficial inflammatory responses.
Conclusions:
- Targeting inflammation in CVD requires a nuanced approach due to its dual roles.
- The CD40L-CD40-TRAF pathway's involvement in atherosclerosis and resolution is complex.
- CD40(L)-based therapies for cardioprotection necessitate careful optimization to harness beneficial effects.
Abstract:
Cardiovascular diseases (CVD) and cardiovascular risk factors are the leading cause of death in the world today. According to the Global Burden of Disease Study, hypertension together with ischemic heart and cerebrovascular diseases is responsible for approximately 40% of all deaths worldwide. The major pathomechanism underlying almost all CVD is atherosclerosis, an inflammatory disorder of the vascular system. Recent large-scale clinical trials demonstrated that inflammation itself is an independent cardiovascular risk factor. Specific anti-inflammatory therapy could decrease cardiovascular mortality in patients with atherosclerosis (increased markers of inflammation). Inflammation, however, can also be beneficial by conferring so-called resolution, a process that contributes to clearing damaged tissue from cell debris upon cell death and thereby represents an essential step for recovery from, e.g., ischemia/reperfusion damage. Based on these considerations, the present review highlights features of the detrimental inflammatory reactions as well as of the beneficial process of immune cell-triggered resolution. In this context, we discuss the polarization of macrophages to either M1 or M2 phenotype and critically assess the role of the CD40L-CD40-TRAF signaling cascade in atherosclerosis and its potential link to resolution. As CD40L can bind to different cellular receptors, it can initiate a broad range of inflammatory processes that may be detrimental or beneficial. Likewise, the signaling of CD40L downstream of CD40 is mainly determined by activation of TRAF1-6 pathways that again can be detrimental or beneficial. Accordingly, CD40(L)-based therapies may be Janus-faced and require sophisticated fine-tuning in order to promote cardioprotection.
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