Detail projektu

Faraday’s Scalpel: electrochemical oxygen reduction for precise neural tissue ablation

Období řešení: 01.01.2023 — 31.12.2025

Zdroje financování

Grantová agentura České republiky - Standardní projekty

- plně financující

O projektu

We propose a novel concept of a “Faraday’s scalpel”: an approach to deoxygenate brain tissue using electrocatalytic oxygen reduction and direct electrical currents. The hypothesis is that local hypoxia induced by the Faraday Scalpel electrode will selectively destroy neurons while preserving other cells, opening new possibilities for precise electrosurgery for conditions like epilepsy. This proposal has three objectives: A) optimize two types of faradaic electrodes: one for hypoxia, and another for hypoxia plus hydrogen peroxide generation; B) develop multifunctional electronic/optical implantable probes to deoxygenate tissue while allowing in situ characterization of oxygen level, tissue morphology, and electrophysiology. C) apply the concept in vivo to achieve hypoxic ablation, validated by measuring neural activity and optical/histological methods. The project is interdisciplinary, covering electrochemistry, microelectronics, physiology, and advanced optical imaging. Success of our project will create powerful tools for basic research and a promising approach for neurosurgery.

Klíčová slova
bioelectronics;electrochemistry;reactive oxygen species;oxygen reduction reaction; electrophysiology

Označení

23-07432S

Originální jazyk

angličtina

Řešitelé

Glowacki Eric Daniel, doc., Ph.D. - hlavní řešitel

Útvary

Bioelektronické materiály a systémy
- příjemce (01.01.2023 - 31.12.2026)
Středoevropský technologický institut VUT
- odpovědné pracoviště (31.03.2022 - 31.03.2022)

Výsledky

GABLECH, I.; GLOWACKI, E. State-of-the-Art Electronic Materials for Thin Films in Bioelectronics. Advanced Electronic Materials, 2023, vol. 9, no. 8, p. 1-23. ISSN: 2199-160X.
Detail

MIGLBAUER, E.; ABUDLLAEVA, O.; GRYSZEL, M.; GLOWACKI, E. Faradaic Fenton Pixel: Reactive Oxygen Species Delivery Using Au/Cr Electrochemistry. Chembiochem : a European journal of chemical biology, 2023, vol. 24, no. 17, p. 1-14. ISSN: 1439-7633.
Detail