Pathophysiology of renal denervation procedures: From renal nerve anatomy to procedural parameters

Sonia Ammar, Elena Ladich, Kristin Steigerwald, Isabel Deisenhofer, Michael Joner

Research output: Contribution to journalArticlepeer-review

11 Scopus citations

Abstract

Endovascular renal denervation techniques have been clinically adopted for the treatment of resistant arterial hypertension with great success. Despite the favourable early results achieved with this technology, a clear understanding of the pathophysiology underlying this novel treatment is lacking. In addition, non-responsiveness to renal denervation remains a nidus for treatment failure in distinct patients. In search of meaningful surrogate parameters relating to treatment responsiveness, the current article reviews the existing knowledge on renal nerve anatomy, changes occurring after denervation and procedural parameters collected during denervation. From preclinical experience, the most reliable morphological parameter reflecting successful renal denervation is the presence of axonal degeneration. Most procedural and clinical parameters need extended investigation before adopting them as potential surrogate parameters for successful renal denervation. As a consequence, there is an imperative need for dedicated research revealing the pathophysiology of renal denervation procedures. In this regard, close co-operation of engineers, researchers and clinicians is warranted to turn renal denervation into a milestone treatment of arterial hypertension.

Original languageEnglish
Pages (from-to)R89-R95
JournalEuroIntervention
Volume9
DOIs
StatePublished - 2013

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