Related Experiment Video
Updated: Jul 5, 2026

Postconditioning with Lactate-enriched Blood for Cardioprotection in ST-segment Elevation Myocardial Infarction
Published on: May 28, 2019
Pharmacological approach of no-reflow phenomenon related with percutaneous coronary interventions
S Jiménez Valero1, R Moreno, R Martin Reyes
1Sección de Hemodinámica, Servicio de Cardiología, Hospital Universitario "La Paz", Paseo de la Castellana 261, CP 28046, Madrid, Spain.
Insights
The no-reflow phenomenon (NRP) hinders blood flow to heart tissue despite open arteries, often after procedures like PCI. Current treatments offer limited success, highlighting the need for better understanding and management strategies.
Area of Science:
- Cardiology
- Vascular Biology
- Medical Imaging
Background:
- The no-reflow phenomenon (NRP) is impaired myocardial perfusion despite a patent epicardial artery, often post-percutaneous coronary intervention (PCI).
- NRP is linked to adverse clinical outcomes, particularly in acute myocardial infarction and saphenous vein graft disease.
- Its pathophysiology involves microvascular damage, including distal embolization, edema, spasm, and capillary plugging.
Purpose of the Study:
- To review the current understanding of the pathophysiology of NRP.
- To outline diagnostic methods for assessing NRP.
- To discuss current and potential pharmacological management strategies for NRP.
Main Methods:
- Review of existing literature on the no-reflow phenomenon.
- Analysis of diagnostic techniques including ECG, echocardiography, MRI, and nuclear imaging.
- Evaluation of pharmacological and mechanical interventions for prevention and treatment.
Main Results:
- NRP pathophysiology is complex, involving microvascular dysfunction.
- Various imaging modalities offer prognostic value beyond angiography.
- Preventive and therapeutic strategies have shown limited efficacy to date.
Conclusions:
- Further research into NRP pathophysiology is crucial for developing effective treatments.
- Accurate diagnosis and risk stratification are essential for patient management.
- Novel therapeutic approaches are needed to improve outcomes in patients experiencing NRP.
Abstract:
The no-reflow phenomenon (NRP) is characterized by an inadequate myocardial tissue perfusion in the presence of a patent epicardial coronary artery. It generally occurs after temporary occlusion of the artery causing myocardial ischemia and necrosis that persist after relief of the vessel occlusion, without evidence of epicardial mechanical obstruction. Currently, the main scenario of NRP is the setting of percutaneous coronary interventions (PCI), especially in patients with acute myocardial infarction or saphenous vein graft disease, and its occurrence is associated with adverse clinical outcomes. Pathophysiology of NRP is not fully understood but it seems to be related with microvascular damage. Several mechanisms have been involved, such as distal microembolization, interstitial and intracellular edema, coronary spasm and capillary plugging. Diagnosis of NRP is generally based on clinical and angiographic data. Several methods have been proposed for the assessment of NRP, such as electrocardiography, myocardial contrast echocardiography, contrast-enhanced magnetic resonance imaging, nuclear imaging or positron emission tomography, that have demonstrated additional prognostic value over angiography. There are different pharmacological and mechanical approaches for the prevention of NRP but none of them have demonstrated a clear efficacy. The treatment of established NRP is mainly based on the administration of coronary vasodilators, like adenosine, verapamil or nitroprusside, but clinical results are frequently disappointing. The objective of this review is to describe the state of the art of the pathophysiology, diagnosis and pharmacological management of NRP.
Related Concept Videos
Coronary Artery Disease V: Interprofessional Care
Peripheral Artery Disease III: Interprofessional Care
Acute Coronary Syndrome IV: Interprofessional Care
Antianginal Drugs: Calcium Channel Blockers and Ranolazine
CCBs, a diverse class that includes dihydropyridines (nifedipine) and diphenylalkylamines (verapamil and diltiazem), exert their effect by blocking calcium channels in cardiac and smooth muscle cells. This...
Angina IV: Management

