Comparison of the Efficacy of Boric Acid Mouthwashes in Different Concentrations
Impacted Third Molar Tooth
About this trial
This is an interventional prevention trial for Impacted Third Molar Tooth focused on measuring postoperative complications, impacted tooth, mouthwash, boric acid, chlorhexidine
Eligibility Criteria
Inclusion Criteria:
- absence of any systemic disease
- having impacted mandibular third molar teeth in a similar position
- absence of allergy to any of the drugs used in the study,
- absence of pregnancy/lactating state,
- no history of any medication use during at least 2 week before the operation.
Exclusion Criteria:
- not regularly coming to the controls,
- not using their medicines regularly
- using any additional medication that may affect the outcome of the study
Sites / Locations
- Van Yuzuncu Yil University, Faculty of Dentistry
Arms of the Study
Arm 1
Arm 2
Arm 3
Arm 4
Arm 5
Arm 6
Arm 7
Arm 8
Active Comparator
Active Comparator
Active Comparator
Active Comparator
Active Comparator
Active Comparator
Active Comparator
Active Comparator
Chlorhexidine gluconate
Chlorhexidine mouthwash with boric acid (0.1%)
Chlorhexidine mouthwash with boric acid (0.5%)
Chlorhexidine mouthwash with boric acid (1%)
Chlorhexidine mouthwash with boric acid (1.5%)
Chlorhexidine mouthwash with boric acid (2%)
Chlorhexidine mouthwash with boric acid (2.5%)
Boric acid mouthwash (2%)
Chlorhexidine is one of the most commonly used medications after tooth extraction. It exhibits a wide spectrum of antiseptic, bactericidal and bacteriostatic effects.
Due to its antibacterial properties, boric acid is effective on gram (+) and gram (-) microorganisms such as candida albicans, streptococcus mutans, staphylococcus aureus, enterococcus faecalis, enterococcus faesium, escherichia coli, klebsiella pneumonia and pseudomonas aeruginosa. With these features, it is used in periodontology, endodontics and restorative therapy as a antiseptic.
Due to its antibacterial properties, boric acid is effective on gram (+) and gram (-) microorganisms such as candida albicans, streptococcus mutans, staphylococcus aureus, enterococcus faecalis, enterococcus faesium, escherichia coli, klebsiella pneumonia and pseudomonas aeruginosa. With these features, it is used in periodontology, endodontics and restorative therapy as a antiseptic.
Due to its antibacterial properties, boric acid is effective on gram (+) and gram (-) microorganisms such as candida albicans, streptococcus mutans, staphylococcus aureus, enterococcus faecalis, enterococcus faesium, escherichia coli, klebsiella pneumonia and pseudomonas aeruginosa. With these features, it is used in periodontology, endodontics and restorative therapy as a antiseptic.
Due to its antibacterial properties, boric acid is effective on gram (+) and gram (-) microorganisms such as candida albicans, streptococcus mutans, staphylococcus aureus, enterococcus faecalis, enterococcus faesium, escherichia coli, klebsiella pneumonia and pseudomonas aeruginosa. With these features, it is used in periodontology, endodontics and restorative therapy as a antiseptic.
Due to its antibacterial properties, boric acid is effective on gram (+) and gram (-) microorganisms such as candida albicans, streptococcus mutans, staphylococcus aureus, enterococcus faecalis, enterococcus faesium, escherichia coli, klebsiella pneumonia and pseudomonas aeruginosa. With these features, it is used in periodontology, endodontics and restorative therapy as a antiseptic.
Due to its antibacterial properties, boric acid is effective on gram (+) and gram (-) microorganisms such as candida albicans, streptococcus mutans, staphylococcus aureus, enterococcus faecalis, enterococcus faesium, escherichia coli, klebsiella pneumonia and pseudomonas aeruginosa. With these features, it is used in periodontology, endodontics and restorative therapy as a antiseptic.
Due to its antibacterial properties, boric acid is effective on gram (+) and gram (-) microorganisms such as candida albicans, streptococcus mutans, staphylococcus aureus, enterococcus faecalis, enterococcus faesium, escherichia coli, klebsiella pneumonia and pseudomonas aeruginosa. With these features, it is used in periodontology, endodontics and restorative therapy as a antiseptic.