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Published on: May 6, 2014
Klotho expression in peripheral blood circulating cells is associated with vascular and systemic inflammation in
Ernesto Martín-Núñez1,2, Atteneri Pérez-Castro1,2, Víctor G Tagua1,3
1Unidad de Investigación, Hospital Universitario Nuestra Señora de Candelaria, 38010, Santa Cruz de Tenerife, Tenerife, Spain.
Insights
Reduced expression of the anti-aging KL gene in peripheral blood circulating cells is linked to cardiovascular disease (CVD) inflammation. Promoter methylation of the KL gene in these cells is associated with increased inflammatory markers in CVD patients.
Area of Science:
- Cardiovascular Biology
- Immunology
- Epigenetics
Background:
- Cardiovascular disease (CVD) is a leading global cause of mortality, driven partly by athero-inflammation.
- Immune cells in peripheral blood play a critical role in this inflammatory response.
- The anti-aging protein alpha-Klotho (KL) exhibits protective effects against CVD and is expressed in immune cells, where it modulates inflammation.
Purpose of the Study:
- To investigate the relationship between inflammatory markers, KL gene expression in peripheral blood circulating cells (PBCCs), and serum soluble KL (sKL) levels in patients with atherosclerotic vascular disease.
- To explore the role of KL promoter methylation in regulating KL gene expression in the context of CVD.
Main Methods:
- Cross-sectional case-control study comparing 76 CVD patients with 16 organ donors.
- Measurement of serum sKL, TNFα, IL10, and PBCC gene expression (KL, TNF, IL10, NFKB1, DNMT1, DNMT3A).
- Assessment of KL promoter methylation in PBCCs and histological analysis of vascular tissue.
Main Results:
- CVD patients exhibited higher systemic, vascular, and PBCC pro-inflammatory markers compared to controls.
- CVD patients showed significantly lower KL gene expression in PBCCs, higher DNMT1/DNMT3A expression, and increased KL promoter methylation.
- KL gene expression in PBCCs and serum sKL levels correlated inversely with pro-inflammatory markers and directly with anti-inflammatory markers.
Conclusions:
- Downregulation of KL gene expression in PBCCs, mediated by promoter methylation, is associated with the pro-inflammatory state in atherosclerotic vascular disease.
- KL may serve as a potential therapeutic target for modulating inflammation in CVD.
- KL's role in immune cell function warrants further investigation in the context of cardiovascular health.
Abstract:
Cardiovascular disease is the leading cause of death worldwide. New therapeutic strategies are aimed to modulate the athero-inflammatory process that partially orchestrates underlying vascular damage. Peripheral blood circulating cells include different immune cells with a central role in the development of the atherogenic inflammatory response. The anti-aging protein α-Klotho has been related to protective effects against CVD. KL is expressed in monocytes, macrophages, and lymphocytes where it exerts anti-inflammatory effects. In this work, we analyse the relationships of the levels of inflammatory markers with the expression of the KL gene in PBCCs and with the serum levels of soluble KL in atherosclerotic vascular disease. For this, we conducted a cross-sectional single-center case-control study including a study group of 76 CVD patients and a control group of 16 cadaveric organ donors without medical antecedent or study indicating CVD. Vascular artery fragments and whole blood and serum samples were obtained during elective or organ retrieval surgery. Serum levels of sKL, TNFα and IL10, and gene expression levels of KL, TNF, IL10, NFKB1, DNMT1, and DNMT3A in PBCCs were measured. In these cells, we also determined KL promoter methylation percentage. Histological and immunohistochemical analyses were employed to visualize atherosclerotic lesions and to measure IL10 and TNFα levels in vascular fragments. Patients with CVD presented higher values of proinflammatory markers both at systemic and in the vasculature and in the PBCCs, compared to the control group. In PBCCs, CVD patients also presented lower gene expression levels of KL gene (56.4% difference, P < 0.001), higher gene expression levels of DNMT1 and DNMT3A (P < 0.0001, for both) and a higher methylation status of in the promoter region of KL (34.1 ± 4.1% vs. 14.6 ± 3.4%, P < 0.01). In PBCCs and vasculature, KL gene expression correlated inversely with pro-inflammatory markers and directly with anti-inflammatory markers. sKL serum levels presented similar associations with the expression levels of pro- and anti-inflammatory markers in PBCCs. The differences in KL expression levels in PBCCs and in serum sKL levels with respect to control group was even greater in those CVD patients with macroscopically observable atheromatous plaques. We conclude that promoter methylation-mediated downregulation of KL gene expression in PBCCs is associated with the pro-inflammatory status in atherosclerotic vascular disease.
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