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Updated: Aug 21, 2026

A Murine Model of Stent Implantation in the Carotid Artery for the Study of Restenosis
Published on: May 14, 2013
Exercise After Coronary Stenting: Potential Effects on in-Stent Restenosis
Luigi Spadafora1,2, Stefano Cacciatore3,4, Monica Salvi5
1Division of Cardiology and Interventional Cardiology, Santa Maria Goretti Hospital, Latina, 04100, Italy. luigispadafora167@gmail.com.
Purpose Of Review:
Structured exercise is a cornerstone of secondary prevention after percutaneous coronary intervention (PCI), yet its specific relationship with in-stent restenosis (ISR) is less well characterized. This narrative review summarizes the biological rationale, clinical evidence, safety, and practical prescription of exercise training in patients with coronary stents, with a focus on its potential impact on ISR.
Recent Findings:
Exercise training improves endothelial nitric oxide bioavailability, reduces systemic inflammation, and favorably modulates neointimal proliferation in experimental and clinical studies. Pooled clinical data suggest that exercise-based cardiac rehabilitation after PCI is associated with a reduction in angiographically defined restenosis, although individual trials, largely from the bare-metal and early drug-eluting stent (DES) eras, have shown inconsistent results on binary restenosis endpoints. Available contemporary data do not suggest an excess risk of stent thrombosis, clinically relevant arrhythmias, or adverse ventricular remodeling when exercise is initiated in clinically stable patients using an individualized and supervised approach. The direct anti-restenotic effect of exercise remains biologically plausible and clinically suggestive but is not yet firmly established, particularly in the contemporary thin-strut DES era. Nevertheless, the well-documented benefits of exercise on functional capacity, endothelial health, and cardiovascular prognosis justify its role as an essential, time-sensitive component of post-PCI care. Larger, contemporary trials with standardized intracoronary imaging endpoints are needed to clarify whether, and in which patient subsets, exercise meaningfully affects the biology of ISR.
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