The relationship between physiologic halitosis and periodontopathic bacteria of the tongue and gingival sulcus

「Abstract」To determine the influence of oral status on halitosis, the relationship between halitosis and periodontopathic bacteria present in plaque on the tongue and the subgingival sulcus was examined in 62 periodontally healthy adults. Halitosis indicators used were the organoleptic score; gas ch...

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Published inOdontology Vol. 98; no. 1; pp. 44 - 51
Main Authors Yasukawa, Toshiyuki, Ohmori, Misaki, Sato, Soh
Format Journal Article
LanguageEnglish
Published Japan The Society of The Nippon Dental University 01.02.2010
Springer Japan
Springer Nature B.V
Subjects
Online AccessGet full text
ISSN1618-1247
1618-1255
1618-1255
DOI10.1007/s10266-009-0114-7

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Abstract 「Abstract」To determine the influence of oral status on halitosis, the relationship between halitosis and periodontopathic bacteria present in plaque on the tongue and the subgingival sulcus was examined in 62 periodontally healthy adults. Halitosis indicators used were the organoleptic score; gas chromatography results [total volatile sulfur compounds (VSCs) = H2S + CH3SH + (CH3)2S]; Halimeter values; and the results of three clinical tests, plaque control record (PlCR), plaque index (PlI), and tongue coat status. Significant correlations with organoleptic scores was observed for PlCR, PlI, tongue coat status, VSC amounts, and Halimeter values, indicating that halitosis in periodontally healthy subjects tended to originate from tongue plaque deposits. Polymerase chain reaction analysis was used to detect six periodontopathic bacteria (Aggregatibacter actinomycetemcomitans, Fusobacterium nucleatum, Porphyromonas gingivalis, Prevotella intermedia, Tannerella forsythensis, and Treponema denticola) from the tongue and subgingival plaque. Significant effects on the organoleptic scores, tongue coat status, total VSC, H2S and CH3SH amounts, and Halimeter values were observed only for T.denticola and F.nucleatum and only in the tongue plaque, not in the subgingival plaque. Thus, therapies developed to inhibit the growth of these bacteria may lead to future treatments of halitosis.
AbstractList To determine the influence of oral status on halitosis, the relationship between halitosis and periodontopathic bacteria present in plaque on the tongue and the subgingival sulcus was examined in 62 periodontally healthy adults. Halitosis indicators used were the organoleptic score; gas chromatography results [total volatile sulfur compounds (VSCs) = H(2)S + CH(3)SH + (CH(3))(2)S]; Halimeter values; and the results of three clinical tests, plaque control record (PlCR), plaque index (PlI), and tongue coat status. Significant correlations with organoleptic scores was observed for PlCR, PlI, tongue coat status, VSC amounts, and Halimeter values, indicating that halitosis in periodontally healthy subjects tended to originate from tongue plaque deposits. Polymerase chain reaction analysis was used to detect six periodontopathic bacteria (Aggregatibacter actinomycetemcomitans, Fusobacterium nucleatum, Porphyromonas gingivalis, Prevotella intermedia, Tannerella forsythensis, and Treponema denticola) from the tongue and subgingival plaque. Significant effects on the organoleptic scores, tongue coat status, total VSC, H(2)S and CH(3)SH amounts, and Halimeter values were observed only for T. denticola and F. nucleatum and only in the tongue plaque, not in the subgingival plaque. Thus, therapies developed to inhibit the growth of these bacteria may lead to future treatments of halitosis.
To determine the influence of oral status on halitosis, the relationship between halitosis and periodontopathic bacteria present in plaque on the tongue and the subgingival sulcus was examined in 62 periodontally healthy adults. Halitosis indicators used were the organoleptic score; gas chromatography results [total volatile sulfur compounds (VSCs) = H 2 S + CH 3 SH + (CH 3 ) 2 S]; Halimeter values; and the results of three clinical tests, plaque control record (PlCR), plaque index (PlI), and tongue coat status. Significant correlations with organoleptic scores was observed for PlCR, PlI, tongue coat status, VSC amounts, and Halimeter values, indicating that halitosis in periodontally healthy subjects tended to originate from tongue plaque deposits. Polymerase chain reaction analysis was used to detect six periodontopathic bacteria ( Aggregatibacter actinomycetemcomitans, Fusobacterium nucleatum, Porphyromonas gingivalis, Prevotella intermedia, Tannerella forsythensis , and Treponema denticola ) from the tongue and subgingival plaque. Significant effects on the organoleptic scores, tongue coat status, total VSC, H 2 S and CH 3 SH amounts, and Halimeter values were observed only for T. denticola and F. nucleatum and only in the tongue plaque, not in the subgingival plaque. Thus, therapies developed to inhibit the growth of these bacteria may lead to future treatments of halitosis.
To determine the influence of oral status on halitosis, the relationship between halitosis and periodontopathic bacteria present in plaque on the tongue and the subgingival sulcus was examined in 62 periodontally healthy adults. Halitosis indicators used were the organoleptic score; gas chromatography results [total volatile sulfur compounds (VSCs) = H^sub 2^S + CH^sub 3^SH + (CH^sub 3^)^sub 2^S]; Halimeter values; and the results of three clinical tests, plaque control record (PlCR), plaque index (PlI), and tongue coat status. Significant correlations with organoleptic scores was observed for PlCR, PlI, tongue coat status, VSC amounts, and Halimeter values, indicating that halitosis in periodontally healthy subjects tended to originate from tongue plaque deposits. Polymerase chain reaction analysis was used to detect six periodontopathic bacteria (Aggregatibacter actinomycetemcomitans, Fusobacterium nucleatum, Porphyromonas gingivalis, Prevotella intermedia, Tannerella forsythensis, and Treponema denticola) from the tongue and subgingival plaque. Significant effects on the organoleptic scores, tongue coat status, total VSC, H^sub 2^S and CH^sub 3^SH amounts, and Halimeter values were observed only for T. denticola and F. nucleatum and only in the tongue plaque, not in the subgingival plaque. Thus, therapies developed to inhibit the growth of these bacteria may lead to future treatments of halitosis.[PUBLICATION ABSTRACT]
「Abstract」To determine the influence of oral status on halitosis, the relationship between halitosis and periodontopathic bacteria present in plaque on the tongue and the subgingival sulcus was examined in 62 periodontally healthy adults. Halitosis indicators used were the organoleptic score; gas chromatography results [total volatile sulfur compounds (VSCs) = H2S + CH3SH + (CH3)2S]; Halimeter values; and the results of three clinical tests, plaque control record (PlCR), plaque index (PlI), and tongue coat status. Significant correlations with organoleptic scores was observed for PlCR, PlI, tongue coat status, VSC amounts, and Halimeter values, indicating that halitosis in periodontally healthy subjects tended to originate from tongue plaque deposits. Polymerase chain reaction analysis was used to detect six periodontopathic bacteria (Aggregatibacter actinomycetemcomitans, Fusobacterium nucleatum, Porphyromonas gingivalis, Prevotella intermedia, Tannerella forsythensis, and Treponema denticola) from the tongue and subgingival plaque. Significant effects on the organoleptic scores, tongue coat status, total VSC, H2S and CH3SH amounts, and Halimeter values were observed only for T.denticola and F.nucleatum and only in the tongue plaque, not in the subgingival plaque. Thus, therapies developed to inhibit the growth of these bacteria may lead to future treatments of halitosis.
To determine the influence of oral status on halitosis, the relationship between halitosis and periodontopathic bacteria present in plaque on the tongue and the subgingival sulcus was examined in 62 periodontally healthy adults. Halitosis indicators used were the organoleptic score; gas chromatography results [total volatile sulfur compounds (VSCs) = H(2)S + CH(3)SH + (CH(3))(2)S]; Halimeter values; and the results of three clinical tests, plaque control record (PlCR), plaque index (PlI), and tongue coat status. Significant correlations with organoleptic scores was observed for PlCR, PlI, tongue coat status, VSC amounts, and Halimeter values, indicating that halitosis in periodontally healthy subjects tended to originate from tongue plaque deposits. Polymerase chain reaction analysis was used to detect six periodontopathic bacteria (Aggregatibacter actinomycetemcomitans, Fusobacterium nucleatum, Porphyromonas gingivalis, Prevotella intermedia, Tannerella forsythensis, and Treponema denticola) from the tongue and subgingival plaque. Significant effects on the organoleptic scores, tongue coat status, total VSC, H(2)S and CH(3)SH amounts, and Halimeter values were observed only for T. denticola and F. nucleatum and only in the tongue plaque, not in the subgingival plaque. Thus, therapies developed to inhibit the growth of these bacteria may lead to future treatments of halitosis.To determine the influence of oral status on halitosis, the relationship between halitosis and periodontopathic bacteria present in plaque on the tongue and the subgingival sulcus was examined in 62 periodontally healthy adults. Halitosis indicators used were the organoleptic score; gas chromatography results [total volatile sulfur compounds (VSCs) = H(2)S + CH(3)SH + (CH(3))(2)S]; Halimeter values; and the results of three clinical tests, plaque control record (PlCR), plaque index (PlI), and tongue coat status. Significant correlations with organoleptic scores was observed for PlCR, PlI, tongue coat status, VSC amounts, and Halimeter values, indicating that halitosis in periodontally healthy subjects tended to originate from tongue plaque deposits. Polymerase chain reaction analysis was used to detect six periodontopathic bacteria (Aggregatibacter actinomycetemcomitans, Fusobacterium nucleatum, Porphyromonas gingivalis, Prevotella intermedia, Tannerella forsythensis, and Treponema denticola) from the tongue and subgingival plaque. Significant effects on the organoleptic scores, tongue coat status, total VSC, H(2)S and CH(3)SH amounts, and Halimeter values were observed only for T. denticola and F. nucleatum and only in the tongue plaque, not in the subgingival plaque. Thus, therapies developed to inhibit the growth of these bacteria may lead to future treatments of halitosis.
Author Misaki Ohmori
Toshiyuki Yasukawa
Soh Sato
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  organization: Department of Periodontology, The Nippon Dental University School of Life Dentistry at Niigata
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https://www.ncbi.nlm.nih.gov/pubmed/20155507$$D View this record in MEDLINE/PubMed
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Keywords Physiologic halitosis
Gas chromatography
Tongue plaque
Subgingival plaque
Periodontopathic bacteria
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  year: 2010
  text: 2010-02-01
  day: 01
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PublicationSubtitle Official Journal of the Society of the Nippon Dental University
PublicationTitle Odontology
PublicationTitleAbbrev Odontology
PublicationTitleAlternate Odontology
PublicationTitle_FL Odontology
PublicationYear 2010
Publisher The Society of The Nippon Dental University
Springer Japan
Springer Nature B.V
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– name: Springer Japan
– name: Springer Nature B.V
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TonzetichJ.NgS.K.Reduction of malodor by oral cleansing proceduresOral Surg Oral Med Oral Pathol19764217218110.1016/0030-4220(76)90121-31066599
StatisticsInformation Department, Minister’s Secretariat, Ministry of Health, LabourWelfare.Survey on trends of health and welfare 19992001JapanHealth and Welfare Statistics Association812
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References_xml – reference: O’LearyT.J.DrankeR.B.NaylorJ.E.The plaque control recordJ Periodontol197243384500182
– reference: LöeH.The gingival index, the plaque index and the retention index systemsJ Periodontol1967386106165237684
– reference: TonzetichJ.KestenbaumR.C.Odor production by human salivary fractions and plaqueArch Oral Biol19691481582710.1016/0003-9969(69)90172-15257208
– reference: TakahashiM.KishiM.Relationship between dental pathogenic bacteria in tongue coat and clinical oral statusJ Dent Health200656137147
– reference: PalmerR.SooryM.LindheJ.KarringT.LangN.P.Clinical periodontology and implant dentistryModifying factors: diabetes, puberty, pregnancy and the menopause and tobacco smoking20036th ed.OxfordBlackwell Munksgaard179197
– reference: LoescheW.J.LopatinD.E.GiordanoJ.AlcoforadoG.HujoelP.Comparison of the benzoyl-DL-arginine-naphthylamide (BANA) test, DNA probes, and immunological reagents for ability to detect anaerobic periodontal infection due to Porphyromonas gingivalis, Treponema denticola, and Bacteroides forsythusJ Clin Microbiol1992304274331311335
– reference: RosenbergM.KulkarniG.V.BosyA.McCullochC.A.Reproducibility and sensitivity of oral malodor measurements with a portable sulphide monitorJ Dent Res199170143614401960254
– reference: TonettiM.S.MombelliA.LindheJ.KarringT.LangN.P.Clinical periodontology and implant dentistryAggressive periodontitis20039th edOxfordBlackwell Munksgaard216242
– reference: ShibuyaK.Constituents and origins of physiological malodorJ Dent Health200151778792
– reference: YaegakiK.CoilJ.M.Examination, classification and treatment of halitosisJ Can Dent Assoc20006625726110833869
– reference: ClaessonR.EdlundM.B.PerssonS.CarlssonJ.Production of volatile sulfur compounds by various Fusobacterium speciesOral Microbiol Immunol1990513714210.1111/j.1399-302X.1990.tb00411.x2080068
– reference: TjoaS.FennesseyP.The identification of trimethylamine excess in man: quantitative analysis and biochemical originsAnal Biochem1991197778210.1016/0003-2697(91)90358-Z1952078
– reference: TonzetichJ.Oral malodor: an indicator of health status and oral cleanlinessInt Dent J197328309319
– reference: TonzetichJ.Direct gas chromatographic analysis of sulphur compounds in mouth air in manArch Oral Biol19711658759710.1016/0003-9969(71)90062-85283483
– reference: RosenbergM.Clinical assessment of bad breathJ Am Dent Assoc19961274754828655868
– reference: SaitoS.OhmoriM.KatsuragiH.Factors in physiological breath odorJ Jpn Soc Periodontol200244168177
– reference: MiyazakiH.SakaoS.KatohY.TakeharaT.Correlation between volatile sulphur compounds and certain oral health measurements in the general populationJ Periodontol1995666796847473010
– reference: YaegakiK.SanadaK.Biochemical and clinical factor influencing oral malodor periodontal patientsJ Periodontol1992637837891474480
– reference: SilnessJ.LöeH.Periodontal disease in pregnancy. II. Correlation between oral hygiene and periodontal conditionActa Odontol Scand19642212113510.3109/0001635640899396814158464
– reference: ChristerssonL.A.AlbiniB.JosephJ.J.WikesjoU.M.GencoR.J.Tissue localization of Actinobacillus actinomycetemcomitans in human periodontitis I. Light, immunofluorescence and electron microscopic studiesJ Periodontol1987585295393305856
– reference: Solis-GaffarM.C.NilesH.P.RainieriW.C.KestenbaumR.C.Instrumental evaluation of mouth odor in a human clinical studyJ Dent Res1975543513571054347
– reference: KishiM.KimuraS.OharaY.KishiK.AizawaF.MoriyaT.YonemitsuM.Oral malodor and periodontopathic microorganisms in tongue coat of periodontally healthy subjectsDent Japan2002382428
– reference: TonzetichJ.PretiG.HugginsG.R.Changes in concentration of volatile sulphur compounds of mouth air during the menstrual cycleJ Int Med Res19786245254648741
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– reference: KojimaK.Clinical studies on the coated tongueJpn J Oral Maxillofac19853116591678
– reference: BosyA.KulkarniG.V.RosenbergM.McCullochC.A.G.Relationship of oral malodor to periodontitis: evidence of independence in discrete subpopulationsJ Periodontol19946537468133414
– reference: TonzetichJ.NgS.K.Reduction of malodor by oral cleansing proceduresOral Surg Oral Med Oral Pathol19764217218110.1016/0030-4220(76)90121-31066599
– reference: TonzetichJ.CarpenterP.A.Production of volatile sulphur compounds from cysteine, cystine and methionine by human dental plaqueArchs Oral Biol19711659960710.1016/0003-9969(71)90063-X
– reference: AwanoS.GoharaK.KuriharaE.AnsaiT.TakeharaT.The relationship between the presence of periodontopathogenic bacteria in saliva and halitosisInt Dent J20025221221612090455
– reference: MoriyaT.KishiM.AizawaF.MinamiK.YonemitsuM.Tongue coating score as a screening test for oral malodorJ Dent Health2002521221
– reference: PerssonS.EdlundM.B.ClaessonR.CarlssonJ.The formation of hydrogen sulfide and methyl mercaptan by oral bacteriaOral Microbiol Immunol1990519520110.1111/j.1399-302X.1990.tb00645.x2082242
– reference: YaegakiK.SanadaK.Volatile sulfur compounds in mouth air from clinically healthy subjects and patients with periodontal diseaseJ Periodont Res19922723323810.1111/j.1600-0765.1992.tb01673.x1640345
– reference: StatisticsInformation Department, Minister’s Secretariat, Ministry of Health, LabourWelfare.Survey on trends of health and welfare 19992001JapanHealth and Welfare Statistics Association812
– reference: MessadiD.V.YounaiF.S.HalitosisDermatol Clin20032114715510.1016/S0733-8635(02)00060-812622277
– reference: GoldbergS.KozlovskyA.GordonD.GelenterI.SintovA.RosenbergM.Cadaverine as putative component of oral malodorJ Dent Res199473116811728046106
– reference: OhmoriM.ImaiR.SatohS.HoriR.HasegawaA.A study of daily in physiological oral malodorJ Jpn Soc Periodontol1999424348
– reference: AshimotoA.ChenC.BakkerI.SlotsJ.Polymerase chain reaction detection of 8 putative periodontal pathogens in subgingival plaque of gingivitis and advanced periodontitis lesionsOral Microbiol Immunol19961126627310.1111/j.1399-302X.1996.tb00180.x9002880
– reference: DahlenG.ManjiF.BaelumV.FejerskovO.Putative periodontopathogens in diseased and non-diseased persons exhibiting poor oral hygieneJ Clin Periodontol199219354210.1111/j.1600-051X.1992.tb01146.x1346265
– reference: TonzetichJ.Production and origin of oral malodor: a review of mechanisms and methods of analysisJ Periodontol1977481320264535
– reference: SimenhoffM.L.BurkeJ.F.SaukkonenJ.J.OrdinarioA.T.DotyR.Biochemical profile of uremic breathN Engl J Med197729713213586558410.1056/NEJM197707212970303
– reference: RoothG.OstensonS.Acetone in alveolar air, and the control of diabetesLancet19961911021105
– reference: SatohS.OhmoriM.MurayamaK.NakamuraT.SaitohM.ImaiR.HoriR.HasegawaA.A study of measurement of oral malodor with a portable sulfide monitor Halimeter®J Jpn Soc Periodontol199941195200
– reference: TonzetichJ.CoilJ.M.NgW.Gas chromatographic method for trapping and detection of volatile organic compounds from human mouth airJ Clin Dent1991279821930701
– reference: TanakaM.YamamotoY.KuboniwaM.NonakaA.NishidaN.MaedaK.KataokaK.NagataH.ShizukuishiS.Contribution of periodontal pathogens on tongue dorsa analyzed with real-time PCR to oral malodorMicrobes Infect200461078108310.1016/j.micinf.2004.05.02115380777
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Snippet 「Abstract」To determine the influence of oral status on halitosis, the relationship between halitosis and periodontopathic bacteria present in plaque on the...
To determine the influence of oral status on halitosis, the relationship between halitosis and periodontopathic bacteria present in plaque on the tongue and...
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StartPage 44
SubjectTerms Bacteria
Bacteria - genetics
Bacteria - isolation & purification
Bacteria - metabolism
Breath Tests
Dental care
Dental Plaque - microbiology
Dental Plaque Index
Dentistry
DNA, Bacterial - analysis
Epithelial Attachment - microbiology
Female
Gas chromatography
Gingiva - microbiology
Halitosis - metabolism
Halitosis - microbiology
Humans
Male
Medicine
Odorants - analysis
Oral and Maxillofacial Surgery
Oral hygiene
Original Article
Periodontopathic bacteria
Physiologic halitosis
Subgingival plaque
Sulfur Compounds - analysis
Sulfur Compounds - metabolism
Tongue
Tongue - microbiology
Tongue plaque
Young Adult
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Title The relationship between physiologic halitosis and periodontopathic bacteria of the tongue and gingival sulcus
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