Suppression of Staphylococcus aureus biofilm formation under a short-term impact of low-intensity direct current in vitro and in a rat model of implant-associated osteomyelitis

سال انتشار: 1403
نوع سند: مقاله ژورنالی
زبان: انگلیسی
مشاهده: 145

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شناسه ملی سند علمی:

JR_IJBMS-27-2_015

تاریخ نمایه سازی: 16 دی 1402

چکیده مقاله:

Objective(s): We investigated the effect of short-term low-intensity direct current (LIDC) on Staphylococcus aureus.Materials and Methods: The reference strain of S. aureus was used. Experiments were performed in agar culture and on a model of rat’s femur osteomyelitis. K-wires were used as electrodes. The exposure to LIDC of ۱۵۰ μA continued for one minute. In vitro exposure was performed once. In vivo group ۱ was a control group. Osteomyelitis was modeled in three groups but only groups ۳ and ۴ were exposed to LIDC four times: either from day ۱ or from day ۷ post-surgery. The effect was evaluated on day ۲۱. Microbiological, histological, scanning electron, and light microscopy methods were used for evaluation of  the LIDC effect. Results: Bacteria diameter, oblongness, and division increased ۱۵ min after LIDC exposure in the culture around the cathode. After ۲۴ hr, the amount of exomatrix was lower than in the control test, and the cell diameter and roundness increased. Similar changes around the anode were less pronounced. In vivo, biofilm formation on the intramedullary wire cathode was suppressed in group ۳. In group ۴, detachment and destruction of the biofilm were observed. The formation of S. aureus microcolonies was suppressed, and the adhesion of fibroblasts and immune cells was activated. LIDC did not stop the development of the osteomyelitis process.Conclusion: Short-term exposure to LIDC suppresses S. aureus biofilm formation on the implant cathode surface in the acute and early postoperative period but does not have an impact on the development of osteomyelitis.

نویسندگان

Evgenii Ovchinnikov

Experimental Laboratory, National Ilizarov Medical Research Centre for Traumatology and Ortopaedics, Kurgan, Russia

Tamara Silanteva

Laboratory of Morphology, National Ilizarov Medical Research Centre for Traumatology and Ortopaedics, Kurgan, Russia

Maksim Stogov

Department of preclinical and laboratory research, National Ilizarov Medical Research Centre for Traumatology and Ortopaedics, Kurgan, Russia

Olga Diuriagina

Experimental Laboratory, National Ilizarov Medical Research Centre for Traumatology and Ortopaedics, Kurgan, Russia

Natalia Godovykh

Department of preclinical and laboratory research, National Ilizarov Medical Research Centre for Traumatology and Ortopaedics, Kurgan, Russia

Nadezhda Kubrak

Experimental Laboratory, National Ilizarov Medical Research Centre for Traumatology and Ortopaedics, Kurgan, Russia

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