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An implantable system to restore hemodynamic stability after spinal cord injury

  • Aaron A Phillips*
  • , Aasta P Gandhi
  • , Nicolas Hankov
  • , Sergio D Hernandez-Charpak
  • , Julien Rimok
  • , Anthony V Incognito
  • , Anouk E J Nijland
  • , Marina D'Ercole
  • , Anne Watrin
  • , Maxime Berney
  • , Aikaterini Damianaki
  • , Grégory Dumont
  • , Nicolò Macellari
  • , Laura De Herde
  • , Nadine Intering
  • , Donovan Smith
  • , Ryan Miller
  • , Meagan N Smith
  • , Jordan Lee
  • , Edeny Baaklini
  • Jean-Baptiste Ledoux, Javier G Ordonnez, Taylor Newton, Ettore Flavio Meliadò, Léa Duguet, Charlotte Jacquet, Léa Bole-Feysot, Markus Rieger, Kristen Gelenitis, Yoann Dumeny, Miroslav Caban, Damien Ganty, Edoardo Paoles, Thomas Baumgartner, Cathal Harte, Charles David Sasportes, Paul Romo, Tristan Vouga, Jemina Fasola, Jimmy Ravier, Matthieu Gautier, Frédéric Merlos, Rik Buschman, Tomislav Milekovic, Andreas Rowald, Stefano Mandija, Cornelis A T van den Berg, Niels Kuster, Esra Neufeld, Etienne Pralong,
*Corresponding author for this work

Research output: Contribution to journalArticleAcademicpeer-review

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Abstract

A spinal cord injury (SCI) causes immediate and sustained hemodynamic instability that threatens neurological recovery and impacts quality of life. Here we establish the clinical burden of chronic hypotensive complications due to SCI in 1,479 participants and expose the ineffective treatment of these complications with conservative measures. To address this clinical burden, we developed a purpose-built implantable system based on biomimetic epidural electrical stimulation (EES) of the spinal cord that immediately triggered robust pressor responses. The system durably reduced the severity of hypotensive complications in people with SCI, removed the necessity for conservative treatments, improved quality of life and enabled superior engagement in activities of daily living. Central to the development of this therapy was the head-to-head demonstration in the same participants that EES must target the last three thoracic segments, and not the lumbosacral segments, to achieve the safe and effective regulation of blood pressure in people with SCI. These findings in 14 participants establish the path to designing a pivotal device trial that will evaluate the safety and efficacy of EES to treat the underappreciated, treatment-resistant hypotensive complications due to SCI.

Original languageEnglish
Pages (from-to)2946-2957
Number of pages12
JournalNature medicine
Volume31
Issue number9
DOIs
Publication statusPublished - Sept 2025

Keywords

  • Adult
  • Blood Pressure/physiology
  • Electric Stimulation Therapy/methods
  • Female
  • Hemodynamics/physiology
  • Humans
  • Hypotension/therapy
  • Male
  • Middle Aged
  • Prostheses and Implants
  • Quality of Life
  • Spinal Cord Injuries/physiopathology
  • Spinal Cord/physiopathology

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