From therapeutic Electrotherapy to Electroceuticals: Formats, Applications and Prospects of Electrostimulation
Manousos E. Kambouris, Zoi Zagoriti, George Lagoumintzis, Konstantinos Poulas
Annual Research & Review in Biology · pp. 3054–3070 · Published 31 May 2014
10.9734/ARRB/2014/10563Abstract
Introduction: Electrical modalities awere used therapeutically since the 18th century till 1900s to reemerge after World War II and to come to prominence after the 80s. Applications include wound healing of injured/molested/burnt tissues, pain management, exercise enhancement, cardiac arrest management, and hearing enhancement. Modus Operanti: Electrostimulation acts by generating currents and voltages similar to innate ones in cell/tissue/organs. Electrosensitive moieties of the cell membrane are excited and signals transduced to regulate gene expression and metabolism, while provoking vectored movement by orienting the cytoskeleton. Therapeutic Applications: The highly diversified applications of electrostimulation created the notion of "electroceuticals". Conductive applications use electrodes to transmitting current; inductive applications use fields to induce currents in the tissues. Different forms and kinds of field and current combine with temporal parameters to create a multitude of modalities, as do the material of the electrodes. Last come the treated ailments. At present the focus is toonwound healing, in burns, sports or other traumatic injuries and ulcers due to underlying disease. Microbiological parameters: Electrostimulation affects microflora both in biotechnological and clinical contexts. Different electrodes and forms of electrostimulation seem to affect differently Gram (-) and Gram (+) bacteria; the effect on biofilms and yeasts is encouraging for treatinghospital infections as is the combination with biochemical compounds. Wireless Microcurrent Stimulation: A new modality, free of conductive approaches' drawbacks (electrochemical instability, risk of infection and electric burns, pain/irritation). It uses charged air molecules to create very low intensity current, of the level of single-digit microAmperes, thus being well-tolerated. Conclusion: Electroceuticals become very sophisticated and diversified and should be viewed in terms of electrodynamics and electrokinetics, so as to be properly integrated in modern therapeutic schemes either as a supplement or as an alternative to biochemical compounds.
Cited by 20
Jun-yeol Kim, Soo-jin Kim, Jung-hyang Park · The Journal of Internal Korean Medicine · 2025
Ilias Boltsis, Manousos E. Kambouris, George D. Kostis · Genomics in Biosecurity · 2022
Robert Seungbok Lee, Sungheum Um · 2023 IEEE 28th Pacific Rim International Symposium on Dependable Computing (PRDC) · 2023
Aristea Velegraki, Georgia Gioula, Maria Kantzanou · Genomics in Biosecurity · 2022
Jeong Sik Kong, Xuan Huang, Yeong‐Jin Choi · Advanced Healthcare Materials · 2021
Stavroula Siamoglou, Ilias Boltsis, Constantinos A. Chassomeris · Microbiomics · 2020
Manousos E. Kambouris, Cristiana Pavlidis, Efthymios Skoufas · OMICS: A Journal of Integrative Biology · 2018
Manousos E Kambouris, Antonios Markogiannakis, Michael Arabatzis · Future Microbiology · 2017
Luis Enrique Bergues Cabrales, Juan I. Montijano, Maria Schonbek · Mathematics and Computers in Simulation · 2018
Liz Ovens · British Journal of Community Nursing · 2017
Related research
Article metrics
Real usage data collected on this platform.
0
Page views
0
PDF downloads
0
Outbound clicks
20
Citations
Views by country
Approximate, from request IP at view time — not citizenship or institution. Countries with fewer than 5 views are grouped as "Other".
No views recorded yet.
Traffic sources
Referring site, by host.
No traffic recorded yet.
Views and downloads exclude known bots/crawlers. Citations combines this platform's own DOI-resolved index with each external source's own reported total — see Cited by above for individually listed citing works. Last refreshed 0 seconds ago.