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Journal of Orthodontic and Periodontal Biomaterials Research

2023 Volume 3 Issue 2

Comparative Evaluation of Doxycycline and Chlorhexidine Gels for Decontamination of Titanium Implant Surfaces


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  1. Department of Orthodontics and Dentofacial Orthopedics, Faculty of Health Sciences, University of Tartu, Tallinn, Lithuania.
  2. Department of Periodontology, Faculty of Health Sciences, Vilnius University, Vilnius, Lithuania.
  3. Department of Craniofacial Sciences, Faculty of Health Sciences, University of Latvia, Riga, Lithuania.
Abstract

The study evaluates the efficacy of 10% doxycycline gel and 1% chlorhexidine (CHX) gel in the disinfection of sandblasted acid‑etched titanium implant surfaces contaminated with Porphyromonas gingivalis. Titanium implants were divided into two groups – Group A and Group B, which were further subdivided into three subgroups (A1, A2, and A3 and B1, B2, and B3). All the implants were contaminated with P. gingivalis. Group A was treated with 10% doxycycline gel, and Group B was treated with 1% CHX gel. After decontamination with antimicrobials, the residual viable P. gingivalis count was assessed using the culture method. At baseline, the mean values recorded for Group A and Group B were 120,000,000 colony-forming unit (CFU). On day 1, the mean values recorded were 3291.67 CFU (Group A1) and 0 CFU (Group B1). On days 3 and 7, the mean values for the remaining groups (A2, A3, B2, and B3) were 0 CFU. A single application of 1% CHX gel and multiple applications of 10% doxycycline gel were effective in achieving decontamination of implants. Hence, these gels could prove as cost‑effective treatment modalities for peri‑implantitis.


How to cite this article
Vancouver
Kask T, Ozols JB, Kalnins K, Ozols E, Petrauskas TG. Comparative Evaluation of Doxycycline and Chlorhexidine Gels for Decontamination of Titanium Implant Surfaces. . 2023;3(2):80-91.
APA
Kask, T., Ozols, J. B., Kalnins, K., Ozols, E., & Petrauskas, T. G. (2023). Comparative Evaluation of Doxycycline and Chlorhexidine Gels for Decontamination of Titanium Implant Surfaces. Journal of Orthodontic and Periodontal Biomaterials Research, 3(2), 80-91.
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