Discrimination between the effects of pulsed electrical stimulation and electrochemically conditioned medium on human osteoblasts

Author:

Bielfeldt MeikeORCID,Budde-Sagert KaiORCID,Weis NikolaiORCID,Buenning MarenORCID,Staehlke SusanneORCID,Zimmermann JuliusORCID,Arbeiter NilsORCID,Mobini SahbaORCID,González María UjuéORCID,Rebl HenrikeORCID,Uhrmacher AdelindeORCID,van Rienen UrsulaORCID,Nebe BarbaraORCID

Abstract

Abstract Background Electrical stimulation is used for enhanced bone fracture healing. Electrochemical processes occur during the electrical stimulation at the electrodes and influence cellular reactions. Our approach aimed to distinguish between electrochemical and electric field effects on osteoblast-like MG-63 cells. We applied 20 Hz biphasic pulses via platinum electrodes for 2 h. The electrical stimulation of the cell culture medium and subsequent application to cells was compared to directly stimulated cells. The electric field distribution was predicted using a digital twin. Results Cyclic voltammetry and electrochemical impedance spectroscopy revealed partial electrolysis at the electrodes, which was confirmed by increased concentrations of hydrogen peroxide in the medium. While both direct stimulation and AC-conditioned medium decreased cell adhesion and spreading, only the direct stimulation enhanced the intracellular calcium ions and reactive oxygen species. Conclusion The electrochemical by-product hydrogen peroxide is not the main contributor to the cellular effects of electrical stimulation. However, undesired effects like decreased adhesion are mediated through electrochemical products in stimulated medium. Detailed characterisation and monitoring of the stimulation set up and electrochemical reactions are necessary to find safe electrical stimulation protocols.

Funder

Universitätsmedizin Rostock

Publisher

Springer Science and Business Media LLC

Subject

Cell Biology,Molecular Biology,Biomedical Engineering,Environmental Engineering

Reference70 articles.

1. Kamel NA. Bio-piezoelectricity: fundamentals and applications in tissue engineering and regenerative medicine. Biophys Rev. 2022;14(3):717–33.

2. Fukada E, Yasuda I. On the piezoelectric effect of bone. J Phys Soc Jpn. 1957;12(10):1158–62.

3. Black J. Electrical stimulation: its role in growth, repair and remodeling of the musculoskeletal system. Westport, CT: Greenwood Press; 1986. 

4. Leppik L, Oliveira KMC, Bhavsar MB, Barker JH. Electrical stimulation in bone tissue engineering treatments. Eur J Trauma Emerg Surg. 2020;46(2):231–44.

5. Griffin M, Bayat A. Electrical stimulation in bone healing: critical analysis by evaluating levels of evidence. Eplasty. 2011;11:e34.

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