Literature DB >> 22346227

Ozone therapy in dentistry: A strategic review.

Rajiv Saini1.   

Abstract

THE ORAL CAVITY APPEARS AS AN OPEN ECOSYSTEM, WITH A DYNAMIC BALANCE BETWEEN THE ENTRANCE OF MICROORGANISMS, COLONIZATION MODALITIES, AND HOST DEFENSES AIMED TO THEIR REMOVAL: To avoid elimination, bacteria need to adhere to either hard dental surfaces or epithelial surfaces. The oral biofilm formation and development, and the inside selection of specific microorganisms have been correlated with the most common oral pathologies, such as dental caries, periodontal disease, and peri-implantitis. The mechanical removal of the biofilm and adjunctive use of antibiotic disinfectants or various antibiotics have been the conventional methods for periodontal therapy. Ozone (O3) is a triatomic molecule, consisting of three oxygen atoms, and its application in medicine and dentistry has been indicated for the treatment of 260 different pathologies. The ozone therapy has been more beneficial than present conventional therapeutic modalities that follow a minimally invasive and conservative application to dental treatment. The exposition of molecular mechanisms of ozone further benefits practical function in dentistry.

Entities:  

Keywords:  Biofilm; dental; ozone

Year:  2011        PMID: 22346227      PMCID: PMC3276005          DOI: 10.4103/0976-9668.92318

Source DB:  PubMed          Journal:  J Nat Sci Biol Med        ISSN: 0976-9668


INTRODUCTION

Periodontitis is a destructive inflammatory disease of the supporting tissues of the teeth and is caused either by specific microorganisms or by a group of specific microorganisms, resulting in progressive destruction of periodontal ligament and alveolar bone with periodontal pocket formation, gingival recession, or both.[1] Bacteria are the prime etiological agents in periodontal disease, and it is estimated that more than 500 different bacterial species are capable of colonizing the adult mouth[2] and the lesions of the oral cavity have an immense impact on the quality of life of patient with complex advance diseases.[3] Periodontitis has been proposed as having an etiological or modulating role in cardiovascular and cerebrovascular disease, diabetes, respiratory disease and adverse pregnancy outcome and several mechanisms have been proposed to explain or support such theories.[4] The oral cavity appears as an open ecosystem, with a dynamic balance between the entrance of microorganisms, colonization modalities and host defenses aimed to their removal: To avoid elimination, bacteria need to adhere to either hard dental surfaces or epithelial surfaces. The oral biofilm formation and development, and the inside selection of specific microorganisms have been correlated with the most common oral pathologies, such as dental caries, periodontal disease and peri-implantitis.[5] The cooperative communal nature of a microbial community provides advantages to the participating microorganisms. These advantages include a broader habitat range for growth, an enhanced resistance to antimicrobial agents and host defence, and an enhanced ability to cause disease.[6] Dental biofilm pathogenicity in the oral cavity is magnified by two biofilm characteristics: Increased antibiotic resistance and the inability of the community to be phagocytized by host inflammatory cells.[7] The mechanical removal of the biofilm and adjunctive use of antibiotic disinfectants or various antibiotics have been the conventional methods for periodontal therapy.[89] As the periodontal researchers is looking for alternatives to antibiotic treatments (biofilm resistance), the emergence of ozone therapy seems to be a promising future.

History

In 1839, Christian Friedrich Schonbein, first noticed the emergence of a pungent gas with an electric smell. According to the Greek language, he called it ozone and presented a lecture entitled “On the smell at the positive electrode during electrolysis of water” at the Basel Natural Science Society.[10] Oxygen/ozone therapy has a long history of research and clinical application with humans. The first medical application was in 1870 when Dr. C. Lender purified blood in test tubes. Medical applications became widespread throughout Europe and America. As of 1929, more than 114 diseases were listed for treatment with oxygen/ozone therapy. Interestingly enough, in 1930, a German dentist, Dr. E.A. Fisch, used ozone on a regular basis in his dental practice in Zurich, Switzerland, and published numerous papers on the subject.

Ozone therapy: Chemistry and apparatus

Ozone (O3) is a triatomic molecule, consisting of three oxygen atoms. Its molecular weight is 47, 98 g/mol and thermodynamically highly instable compound that, dependent on system conditions like temperature and pressure, decompose to pure oxygen with a short half-life.[11] Ozone is 1.6-fold denser and 10-fold more soluble in water (49.0 mL in 100 mL water at 0° C) than oxygen. Although ozone is not a radical molecule, it is the third most potent oxidant (E_ 5 12.076 V) after fluorine and per sulfate. Ozone is an unstable gas that cannot be stored and should be used at once because it has a half-life of 40 min at 20 °C.[12] Ozone (O3) is naturally produced by the photo dissociation of molecular oxygen (O2) into activated oxygen atoms, which then react with further oxygen molecules. This transient radical anion rapidly becomes protonated, generating hydrogen trioxide (HO3), which, in turn, decomposes to an even more powerful oxidant, the hydroxyl radical (OH). It is the fundamental form of oxygen that occurs naturally as a result of ultraviolet energy or lightning, causing a temporary recombination of oxygen atoms into groups of three. In the clinical setting, an oxygen/ozone generator simulates lightning via an electrical discharge field. Ozone gas has a high oxidation potential and is 1.5 times greater than chloride when used as an antimicrobial agent against bacteria, viruses, fungi, and protozoa. It also has the capacity to stimulate blood circulation and the immune response. Such features justify the current interest in its application in medicine and dentistry and have been indicated for the treatment of 260 different pathologies.[13]

Applications

The potential application of ozone therapy in human body and its biological horizons are listed in Table 1. Antimicrobial effect of ozone is the most studied. Oxygen/ozone therapy in dentistry contains a multiplicity of protocols to deal with dental infection. Three fundamental forms of application to oral tissue are applied — (1) ozonated water, (2) ozonated olive oil, and (3) oxygen/ozone gas. Ozonated water and olive oil have the capacity to entrap and then release oxygen/ozone, an ideal delivery system. These forms of application are used singly or in combination to treat dental disease. The different clinical application of ozone therapy in combating the dental disease and their treatment modalities are listed in Table 2. The ozone therapy has also certain limitations and contraindications as listed in Table 3.
Table 1

Potential applications of ozone therapy

Table 2

Dental treatment modalities of ozone therapy

Table 3

Contraindications of ozone therapy

Potential applications of ozone therapy Dental treatment modalities of ozone therapy Contraindications of ozone therapy

CONCLUSION

In contrast with traditional medicine modalities such as antibiotics and disinfectants, ozone therapy is quite economical; it will markedly reduce both medical cost and invalidity. Dentistry is varying with induction of modern science to practice dentistry. The ozone therapy has been more beneficial than present conventional therapeutic modalities that follow a minimally invasive and conservative application to dental treatment. The exposition of molecular mechanisms of ozone further benefits practical function in dentistry. Treating patients with ozone therapy lessens the treatment time with an immense deal of variation and it eradicates the bacterial count more specifically. The treatment is painless and increases the patients’ tolerability and fulfillment with minimal adverse effects. Contraindications of this controversial method should not be forgotten. Further research is needed to regulate indications and treatment procedures of ozone therapy.
  12 in total

Review 1.  [Biofilms of the oral cavity. Formation, development and involvement in the onset of diseases related to bacterial plaque increase].

Authors:  C Bortolaia; L Sbordone
Journal:  Minerva Stomatol       Date:  2002-05

2.  Antibiotic resistance of subgingival species during and after antibiotic therapy.

Authors:  M Feres; A D Haffajee; K Allard; S Som; J M Goodson; S S Socransky
Journal:  J Clin Periodontol       Date:  2002-08       Impact factor: 8.728

Review 3.  Dental plaque: biological significance of a biofilm and community life-style.

Authors:  P D Marsh
Journal:  J Clin Periodontol       Date:  2005       Impact factor: 8.728

Review 4.  The use of ozone in dentistry and maxillofacial surgery: a review.

Authors:  Stefan Stübinger; Robert Sader; Andreas Filippi
Journal:  Quintessence Int       Date:  2006-05       Impact factor: 1.677

Review 5.  Managing the complexity of a dynamic biofilm.

Authors:  John G Thomas; Lindsay A Nakaishi
Journal:  J Am Dent Assoc       Date:  2006-11       Impact factor: 3.634

Review 6.  Ozone therapy in medicine and dentistry.

Authors:  Carlos Goes Nogales; Patrícia Helena Ferrari; Efraim Olszewer Kantorovich; José Luiz Lage-Marques
Journal:  J Contemp Dent Pract       Date:  2008-05-01

Review 7.  The acquisition of antibiotic resistance in the periodontal microflora.

Authors:  C B Walker
Journal:  Periodontol 2000       Date:  1996-02       Impact factor: 7.589

8.  Dental expression and role in palliative treatment.

Authors:  Rajiv Saini; Pp Marawar; Sujata Shete; Santosh Saini; Ameet Mani
Journal:  Indian J Palliat Care       Date:  2009-01

9.  Periodontitis, a true infection.

Authors:  Rajiv Saini; P P Marawar; Sujata Shete; Santosh Saini
Journal:  J Glob Infect Dis       Date:  2009-07

10.  Periodontitis: A risk factor to respiratory diseases.

Authors:  Rajiv Saini; Santosh Saini; Sugandha Sharma
Journal:  Lung India       Date:  2010-07
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  24 in total

1.  Neurological symptoms following exposure to ozone.

Authors:  Dolores Vilas Rolán; Marta Milà Lopez; Gemma Cuberas-Borrós; Juan Luis Becerra Cuñat; José Vicente Hervás; Anna Massuet Vilamajó; Domingo Escudero
Journal:  J Neurol       Date:  2012-09-27       Impact factor: 4.849

Review 2.  Interventions for treating bisphosphonate-related osteonecrosis of the jaw (BRONJ).

Authors:  Victoria Rollason; Alexandra Laverrière; Laura C I MacDonald; Tanya Walsh; Martin R Tramèr; Nicole B Vogt-Ferrier
Journal:  Cochrane Database Syst Rev       Date:  2016-02-26

3.  Full-scale Raman imaging for dental caries detection.

Authors:  Emmanuel Yakubu; Bolan Li; Yuanyuan Duan; Shan Yang
Journal:  Biomed Opt Express       Date:  2018-11-07       Impact factor: 3.732

4.  Effects of photodynamic therapy, 2 % chlorhexidine, triantibiotic mixture, propolis and ozone on root canals experimentally infected with Enterococcus faecalis: an in vitro study.

Authors:  Fabio Camacho-Alonso; P Salmerón-Lozano; Y Martínez-Beneyto
Journal:  Odontology       Date:  2016-10-22       Impact factor: 2.634

5.  Periodontal health status and treatment needs of the rural population of India: A cross-sectional study.

Authors:  Tegbir Singh Sekhon; Simran Grewal; Ramandeep Singh Gambhir
Journal:  J Nat Sci Biol Med       Date:  2015 Jan-Jun

6.  Ozone treatment of recurrent aphthous stomatitis: a double blinded study.

Authors:  Mahmoud K Al-Omiri; Mohannad Alhijawi; Bader K AlZarea; Ra'ed S Abul Hassan; Edward Lynch
Journal:  Sci Rep       Date:  2016-06-15       Impact factor: 4.379

7.  Efficiency of gaseous ozone in reducing the development of dry socket following surgical third molar extraction.

Authors:  Jehona Ahmedi; Enis Ahmedi; Osman Sejfija; Zana Agani; Vjosa Hamiti
Journal:  Eur J Dent       Date:  2016 Jul-Sep

8.  A meta-analysis of ozone effect on tooth bleaching.

Authors:  Lia Dietrich; Marcelo Dias Moreira de Assis Costa; Cauane Blumenberg; Gustavo G Nascimento; Luiz Renato Paranhos; Gisele Rodrigues da Silva
Journal:  Sci Rep       Date:  2021-06-23       Impact factor: 4.379

9.  A review of the properties and applications of ozone in endodontics: an update.

Authors:  Zahed Mohammadi; Sousan Shalavi; Mohammad Karim Soltani; Saeed Asgary
Journal:  Iran Endod J       Date:  2013-05-01

Review 10.  A review of antibacterial agents in endodontic treatment.

Authors:  Saeed Rahimi; Maryam Janani; Mehrdad Lotfi; Shahriar Shahi; Amirala Aghbali; Mahdi Vahid Pakdel; Amin Salem Milani; Negin Ghasemi
Journal:  Iran Endod J       Date:  2014-07-05
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