angiogenic t cells
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Author(s):  
Verónica Pulito-Cueto ◽  
Sara Remuzgo-Martínez ◽  
Fernanda Genre ◽  
Belén Atienza-Mateo ◽  
Victor M. Mora-Cuesta ◽  
...  

2021 ◽  
Vol 80 (Suppl 1) ◽  
pp. 1046.3-1047
Author(s):  
V. Pulito-Cueto ◽  
S. Remuzgo Martinez ◽  
F. Genre ◽  
B. Atienza-Mateo ◽  
V. M. Mora-Cuesta ◽  
...  

Background:Interstitial lung disease (ILD) is one of the most significant complications of connective tissue diseases (CTD), leading to an increase of the morbidity and mortality in patients with CTD [1]. A specific T cell subset termed angiogenic T cells (TAng), that promote endothelial repair and revascularization, have been involved in the pathogenesis of CTD [2-4]. However, to the best of our knowledge, no information regarding the role of TAng in CTD-ILD+ is available.Objectives:To study, for the first time, the potential role of TAng related to vascular damage in CTD-ILD+.Methods:Peripheral venous blood was collected from 40 patients with CTD-ILD+ and three comparative groups: 44 CTD-ILD- patients, 21 idiopathic pulmonary fibrosis (IPF) patients and 20 healthy controls (HC). All subjects were recruited from the Rheumatology and Pneumology departments of Hospital Universitario Marqués de Valdecilla, Santander, Spain. Quantification of TAng was performed by flow cytometry. TAng were considered as triple-positive for CD3, CD31 and CXCR4.Results:Patients with CTD-ILD+ exhibited a significantly lower TAng frequency than CTD-ILD- patients (p<0.001). Similar results were obtained when patients with CTD-ILD+ were compared with HC (p=0.004) although no difference was observed between CTD-ILD+ and IPF. In addition, a significant increase of TAng frequency was shown in patients with CTD-ILD- in relation to IPF patients (p<0.001), while no difference was observed between CTD-ILD- and HC.Conclusion:Our results reveal a decrease of TAng frequency related to vascular damage in CTD-ILD+. Furthermore, we disclose that the presence of ILD is associated with lower TAng frequency.References:[1]Expert Rev Clin Immunol 2018;14(1):69-82.[2]Circulation 2007;116(15):1671-82.[3]Ann Rheum Dis 2015 74(5):921-7.[4]PLoS One 2017;12(8):e0183102.Acknowledgements:Personal funds, VP-C: PREVAL18/01 (IDIVAL); SR-M: RD16/0012/0009 (ISCIII-ERDF); LL-G: INNVAL20/06 (IDIVAL); RP-F: START PROJECT (FOREUM); RL-M: Miguel Servet type I CP16/00033 (ISCIII-ESF).Disclosure of Interests:Verónica Pulito-Cueto: None declared, Sara Remuzgo Martinez: None declared, Fernanda Genre: None declared, Belén Atienza-Mateo: None declared, Victor Manuel Mora-Cuesta: None declared, David Iturbe-Fernández: None declared, Leticia Lera-Gómez: None declared, Raquel Pérez-Fernández: None declared, Pilar Alonso Lecue: None declared, Javier Rodriguez Carrio: None declared, Diana Prieto-Peña: None declared, Virginia Portilla: None declared, Ricardo Blanco Speakers bureau: Abbvie, Pfizer, Roche, Bristol-Myers, Janssen and MSD, Consultant of: Abbvie, Pfizer, Roche, Bristol-Myers, Janssen and MSD, Grant/research support from: Abbvie, MSD and Roche, Alfonso Corrales: None declared, Jose Manuel Cifrián-Martínez: None declared, Raquel López-Mejías: None declared, Miguel A González-Gay Speakers bureau: Pfizer, Abbvie, MSD, Grant/research support from: Pfizer, Abbvie, MSD


2020 ◽  
Vol 315 ◽  
pp. e124
Author(s):  
J. Rodríguez-Carrio ◽  
M. Alperi-López ◽  
P. López ◽  
Á.I. Pérez-Álvarez ◽  
L. Benavente ◽  
...  

2020 ◽  
Vol 315 ◽  
pp. e73-e74
Author(s):  
J. Rodríguez-Carrio ◽  
N. Carrillo-López ◽  
C. Ulloa ◽  
B. Martín-Carro ◽  
C. Rodríguez-Suárez ◽  
...  

2020 ◽  
Vol Publish Ahead of Print ◽  
Author(s):  
Gaoxing Zhang ◽  
Yuanya Liu ◽  
Yumin Qiu ◽  
Jianning Zhang ◽  
Jiapan Sun ◽  
...  

2020 ◽  
Vol 35 (Supplement_3) ◽  
Author(s):  
Natalia Carrillo-Lopez ◽  
Javier Rodriguez-Carrio ◽  
Catalina Ulloa ◽  
Beatriz Martín-Carro ◽  
Carmen Rodriguez-Suarez ◽  
...  

Abstract Background and Aims The stratification of early cardiovascular (CV) risk is a major unmet need in chronic kidney disease (CKD). Since angiogenic T-cells are emerging mediators of vascular homeostasis and have been linked to CV disease (CVD), this study evaluated the frequency of circulating angiogenic T-cells in CKD patients undergoing peritoneal dialysis (CKD-5D) and their potential as predictive biomarkers of CVD. Method In 30 peritoneal dialysis patients and 16 matched healthy controls (HC), we quantified: Vascular calcification (by Kauppila Index); left carotid intima media thickness (lc-IMT by ultrasound), carotid adventitial vasa vasorum density (an early marker of atherosclerosis stage, by Superb Microvascular Ultrasound Image), pulse wave velocity (a marker of vascular stiffness and dysfunction, using the Complior Analyzer), angiogenic T cell frequency in blood (by Flow cytometry) and the traditional 10-year CVD risk (using the SCORE chart). Results As expected, CKD-5D patients exhibited higher Kauppila index (p&lt;0.001), lcIMT (p=0.010) and adventitial vasa vasorum density (p=0.008) than HC. Angiogenic-T cell frequency was decreased in CKD compared to HC (1.68(1.05) vs. 3.33(1.44)%, p&lt;0.001). In CKD-5D patients, angiogenic-T cell frequency was not associated with blood pressure, cholesterol levels or time on dialysis (all p&gt;0.05) and did not correlate with Kauppila (r=-0.350, p=0.080) or lcIMT (r=-0.154, p=0.600), but strongly associated negatively with both pulse wave velocity (r=-0.734, p&lt;0.001) and with adventitial vasa vasorum (newly formed vasa vasorum) number: r=-0.640, p=0.006; or density: r=-0.813, p&lt;0.001). Angiogenic-T cell levels paralleled pulse wave velocity (B[95% CI]: -0.083[-0.155, -0.010], p=0.028; R2=0.531) and adventitial vasa vasorum -15.049[-26.705, -3.392], p=0.015; R2=0.598) and improved the prediction model over that of the SCORE chart (R2=0.360 and R2=0.336, respectively). Conclusion Angiogenic-T cell frequency was decreased in CKD-5D patients and could be considered as biomarkers of vascular dysfunction and early atherosclerosis stage.


2020 ◽  
Vol 81 ◽  
pp. 106282 ◽  
Author(s):  
Tingting Lv ◽  
Fengfan Yang ◽  
Kui Zhang ◽  
Minghua Lv ◽  
Yan Zhang ◽  
...  

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