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Electrophoretic drug delivery for seizure control

Authors :
Georgios Malliaras
Christopher M. Proctor
Adam Williamson
Christophe Bernard
Isabel del Agua
Andrea Slézia
Attila Kaszás
Antoine Ghestem
Anna-Maria Pappa
University of Cambridge [UK] (CAM)
Institut de Neurosciences des Systèmes (INS)
Aix Marseille Université (AMU)-Institut National de la Santé et de la Recherche Médicale (INSERM)
Department of Bioelectronics
Ecole Nationale Supérieure des Mines, CMP-EMSE, MOC
Marie Curie Intra-European Fellowship for Career Development (no. 625372)
ANR-11-IDEX-0001,Amidex,INITIATIVE D'EXCELLENCE AIX MARSEILLE UNIVERSITE(2011)
European Project: 716867,ERC
bernard, christophe
INITIATIVE D'EXCELLENCE AIX MARSEILLE UNIVERSITE - - Amidex2011 - ANR-11-IDEX-0001 - IDEX - VALID
Epilepsy Controlled with Electronic Neurotransmitter Delivery - ERC - 716867 - INCOMING
Proctor, Christopher M [0000-0002-2066-1354]
Kaszas, Attila [0000-0002-2019-3722]
Ghestem, Antoine [0000-0002-6892-3245]
Del Agua, Isabel [0000-0002-8751-5503]
Pappa, Anna-Maria [0000-0002-7980-4073]
Bernard, Christophe [0000-0003-3014-1966]
Malliaras, George G [0000-0002-4582-8501]
Apollo - University of Cambridge Repository
Source :
Biochem. (Life Sci. Adv.), Biochem. (Life Sci. Adv.), 2018, 4 (8), pp.eaau1291. ⟨10.1126/sciadv.aau1291⟩, Science Advances
Publication Year :
2018
Publisher :
HAL CCSD, 2018.

Abstract

An implantable microfluidic ion pump prevents seizures in a mice by delivery of inhibitory neurotransmitters to the seizure source.<br />The persistence of intractable neurological disorders necessitates novel therapeutic solutions. We demonstrate the utility of direct in situ electrophoretic drug delivery to treat neurological disorders. We present a neural probe incorporating a microfluidic ion pump (μFIP) for on-demand drug delivery and electrodes for recording local neural activity. The μFIP works by electrophoretically pumping ions across an ion exchange membrane and thereby delivers only the drug of interest and not the solvent. This “dry” delivery enables precise drug release into the brain region with negligible local pressure increase. The therapeutic potential of the μFIP probe is tested in a rodent model of epilepsy. The μFIP probe can detect pathological activity and then intervene to stop seizures by delivering inhibitory neurotransmitters directly to the seizure source. We anticipate that further tailored engineering of the μFIP platform will enable additional applications in neural interfacing and the treatment of neurological disorders.

Details

Language :
English
Database :
OpenAIRE
Journal :
Biochem. (Life Sci. Adv.), Biochem. (Life Sci. Adv.), 2018, 4 (8), pp.eaau1291. ⟨10.1126/sciadv.aau1291⟩, Science Advances
Accession number :
edsair.doi.dedup.....1fdca15a581ee89ac6633ac55841163b
Full Text :
https://doi.org/10.1126/sciadv.aau1291⟩