MMP-2 knockdown blunts age-dependent carotid stiffness by decreasing elastin degradation and augmenting eNOS activation

Author:

Diaz-Canestro Candela1,Puspitasari Yustina M1ORCID,Liberale Luca12ORCID,Guzik Tomasz J34ORCID,Flammer Andreas J5ORCID,Bonetti Nicole R1,Wüst Patricia1,Costantino Sarah1,Paneni Francesco156ORCID,Akhmedov Alexander1ORCID,Varga Zsuzsanna7,Ministrini Stefano18,Beer Jürg H19,Ruschitzka Frank5ORCID,Hermann Matthias5ORCID,Lüscher Thomas F110,Sudano Isabella5,Camici Giovanni G156ORCID

Affiliation:

1. Center for Molecular Cardiology, University of Zurich, Wagistrasse 12, CH-8952 Schlieren, Switzerland

2. Department of Internal Medicine, University of Genoa, Genoa, Italy

3. Institute of Cardiovascular and Medical Science, BHF Glasgow Cardiovascular Research Centre, University of Glasgow, Glasgow, UK

4. Department of Medicine, Jagiellonian University Collegium Medicum, Cracow, Poland

5. Department of Cardiology, University Heart Center, University Hospital Zurich, Zurich, Switzerland

6. Department of Research and Education, University Hospital Zurich, Zurich, Switzerland

7. Department of Pathology and Molecular Pathology, University Hospital Zurich, Zurich, Switzerland

8. Internal Medicine, Angiology and Atherosclerosis, Department of Medicine and Surgery, University of Perugia, Perugia, Italy

9. Department of Internal Medicine, Cantonal Hospital Baden, Baden, Switzerland

10. Royal Brompton & Harefield Hospitals, Imperial College London, London, UK

Abstract

Abstract Aims Arterial stiffness is a hallmark of vascular ageing that precedes and strongly predicts the development of cardiovascular diseases. Age-dependent stiffening of large elastic arteries is primarily attributed to increased levels of matrix metalloproteinase-2 (MMP-2). However, the mechanistic link between age-dependent arterial stiffness and MMP-2 remains unclear. Thus, we aimed to investigate the efficacy of MMP-2 knockdown using small-interfering RNA (siRNA) on age-dependent arterial stiffness. Methods and results Pulse wave velocity (PWV) was assessed in right carotid artery of wild-type (WT) mice from different age groups. MMP-2 levels in the carotid artery and plasma of young (3 months) and old (20–25 months) WT mice were determined. Carotid PWV as well as vascular and circulating MMP-2 were elevated with increasing age in mice. Old WT mice (18- to 21-month old) were treated for 4 weeks with either MMP-2 or scrambled (Scr) siRNA via tail vein injection. Carotid PWV was assessed at baseline, 2 and 4 weeks after start of the treatment. MMP-2 knockdown reduced vascular MMP-2 levels and attenuated age-dependent carotid stiffness. siMMP-2-treated mice showed increased elastin-to-collagen ratio, lower plasma desmosine (DES), enhanced phosphorylation of endothelial nitric oxide synthase (eNOS), and higher levels of vascular cyclic guanosine monophosphate (cGMP). An age-dependent increase in direct protein–protein interaction between MMP-2 and eNOS was also observed. Lastly, DES, an elastin breakdown product, was measured in a patient cohort (n = 64, 23–86 years old), where carotid-femoral PWV was also assessed; here, plasma levels of DES directly correlated with age and arterial stiffness. Conclusion MMP-2 knockdown attenuates age-dependent carotid stiffness by blunting elastin degradation and augmenting eNOS bioavailability. Given the increasing clinical use of siRNA technology, MMP2 knockdown should be investigated further as a possible strategy to mitigate age-dependent arterial stiffness and related CV diseases.

Publisher

Oxford University Press (OUP)

Subject

Physiology (medical),Cardiology and Cardiovascular Medicine,Physiology

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