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Abstract
Objectives. We sought to assess acute changes in systemic and pulmonary hemodynamics and microscopic artery lesions following extended renal artery denervation (RDN). Background. RDN has been proposed to reduce sympathetic nervous system hyperactivation. Although the effects of RDN on systemic circulation and overall sympathetic activity have been studied, data on the impact of RDN on pulmonary hemodynamics is lacking. Methods. The study comprised 13 normotensive Landrace pigs. After randomization, 7 animals were allocated to the group of bilateral RDN and 6 animals to the group of a sham procedure (SHAM). Hemodynamic measures, cannulation, and balloon-based occlusion of the renal arteries were performed in both groups. In the RDN group, radiofrequency ablation was performed in all available arteries and their segments. An autopsy study of the renal arteries was carried out in both groups. Results. The analysis was performed on 12 pigs (6 in either group) since pulmonary thromboembolism occurred in one case. A statistically significant drop in the mean diastolic pulmonary artery pressure (PAP) was detected in the RDN group when compared with the SHAM group (change by
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1 Neuromodulation Lab and Arrhythmia Department, Almazov National Medical Research Centre, Saint Petersburg, Russia
2 Non-Coronary Heart Diseases Department, Almazov National Medical Research Centre, Saint Petersburg, Russia
3 Pavlov First Saint Petersburg Medical University, Saint Petersburg, Russia
4 Pathology Department, Almazov National Medical Research Centre, Saint Petersburg, Russia
5 Neuromodulation Lab and Arrhythmia Department, Almazov National Medical Research Centre, Saint Petersburg, Russia; Department of Bioengineering Systems, Saint Petersburg Electrotechnical University “LETI”, Saint Petersburg, Russia