Impact of different oral treatments on the composition of the supragingival plaque microbiome.

Teeth dental plaque essential oil healthy human oral microbiome lactoperoxidase metaproteomics nLC-MS/MS

Journal

Journal of oral microbiology
ISSN: 2000-2297
Titre abrégé: J Oral Microbiol
Pays: United States
ID NLM: 101551049

Informations de publication

Date de publication:
2022
Historique:
entrez: 7 11 2022
pubmed: 8 11 2022
medline: 8 11 2022
Statut: epublish

Résumé

Dental plaque consists of a diverse microbial community embedded in a complex structure of exopolysaccharides. Dental biofilms form a natural barrier against pathogens but lead to oral diseases in a dysbiotic state. Using a metaproteome approach combined with a standard plaque-regrowth study, this pilot study examined the impact of different concentrations of lactoperoxidase (LPO) on early plaque formation, and active biological processes. Sixteen orally healthy subjects received four local treatments as a randomized single-blind study based on a cross-over design. Two lozenges containing components of the LPO-system in different concentrations were compared to a placebo and Listerine®. The newly formed dental plaque was analyzed by mass spectrometry (nLC-MS/MS). On average 1,916 metaproteins per sample were identified, which could be assigned to 116 genera and 1,316 protein functions. Listerine® reduced the number of metaproteins and their relative abundance, confirming the plaque inhibiting effect. The LPO-lozenges triggered mainly higher metaprotein abundances of early and secondary colonizers as well as bacteria associated with dental health but also periodontitis. Functional information indicated plaque biofilm growth. In conclusion, the mechanisms on plaque biofilm formation of Listerine® and the LPO-system containing lozenges are different. In contrast to Listerine®, the lozenges led to a higher bacterial diversity.

Sections du résumé

Background UNASSIGNED
Dental plaque consists of a diverse microbial community embedded in a complex structure of exopolysaccharides. Dental biofilms form a natural barrier against pathogens but lead to oral diseases in a dysbiotic state.
Objective UNASSIGNED
Using a metaproteome approach combined with a standard plaque-regrowth study, this pilot study examined the impact of different concentrations of lactoperoxidase (LPO) on early plaque formation, and active biological processes.
Design UNASSIGNED
Sixteen orally healthy subjects received four local treatments as a randomized single-blind study based on a cross-over design. Two lozenges containing components of the LPO-system in different concentrations were compared to a placebo and Listerine®. The newly formed dental plaque was analyzed by mass spectrometry (nLC-MS/MS).
Results UNASSIGNED
On average 1,916 metaproteins per sample were identified, which could be assigned to 116 genera and 1,316 protein functions. Listerine® reduced the number of metaproteins and their relative abundance, confirming the plaque inhibiting effect. The LPO-lozenges triggered mainly higher metaprotein abundances of early and secondary colonizers as well as bacteria associated with dental health but also periodontitis. Functional information indicated plaque biofilm growth.
Conclusion UNASSIGNED
In conclusion, the mechanisms on plaque biofilm formation of Listerine® and the LPO-system containing lozenges are different. In contrast to Listerine®, the lozenges led to a higher bacterial diversity.

Identifiants

pubmed: 36338832
doi: 10.1080/20002297.2022.2138251
pii: 2138251
pmc: PMC9629129
doi:

Types de publication

Journal Article

Langues

eng

Pagination

2138251

Informations de copyright

© 2022 The Author(s). Published by Informa UK Limited, trading as Taylor & Francis Group.

Déclaration de conflit d'intérêts

No potential conflict of interest was reported by the author(s).

Références

Expert Rev Proteomics. 2016;13(2):135-8
pubmed: 26687021
J Community Hosp Intern Med Perspect. 2016 Sep 07;6(4):32357
pubmed: 27609731
J Oral Maxillofac Pathol. 2020 May-Aug;24(2):397
pubmed: 33456255
BMJ Case Rep. 2020 Jan 6;13(1):
pubmed: 31911407
J Bacteriol. 1987 Feb;169(2):751-7
pubmed: 3027045
J Am Dent Assoc. 2008 May;139(5):606-11
pubmed: 18451378
Front Cell Infect Microbiol. 2020 Nov 23;10:600884
pubmed: 33330141
Braz Oral Res. 2009;23 Suppl 1:31-8
pubmed: 19838556
Periodontol 2000. 2006;42:47-79
pubmed: 16930306
Nature. 2012 Jun 13;486(7402):207-14
pubmed: 22699609
Int J Syst Evol Microbiol. 2009 May;59(Pt 5):972-80
pubmed: 19406777
Microbiol Spectr. 2018 Oct;6(5):
pubmed: 30338752
J Gen Microbiol. 1992 Dec;138(12):2475-83
pubmed: 1487719
Nat Rev Microbiol. 2019 Mar;17(3):156-166
pubmed: 30546113
J Proteome Res. 2006 Sep;5(9):2339-47
pubmed: 16944946
DNA Cell Biol. 2009 Aug;28(8):397-403
pubmed: 19435424
J Biol Chem. 2002 Mar 22;277(12):10642-6
pubmed: 11792715
Appl Microbiol. 1969 Jan;17(1):150-6
pubmed: 4886858
J Dent Res. 2006 Apr;85(4):318-23
pubmed: 16567551
Ann Clin Lab Sci. 2016 Winter;46(1):83-6
pubmed: 26927348
Philos Trans R Soc Lond B Biol Sci. 2015 Jan 19;370(1660):20130376
pubmed: 25487328
FEMS Microbiol Lett. 2004 Feb 16;231(2):153-8
pubmed: 15027428
Clin Microbiol Rev. 1991 Apr;4(2):184-90
pubmed: 2070344
J Oral Microbiol. 2019 Aug 26;11(1):1654786
pubmed: 31497257
Methods Mol Biol. 2021;2327:221-238
pubmed: 34410648
Caries Res. 2011;45(3):243-63
pubmed: 21576957
Anaerobe. 2020 Feb;61:102127
pubmed: 31760081
Case Rep Infect Dis. 2019 May 6;2019:5038563
pubmed: 31198612
Curr Oral Health Rep. 2016 Mar;3(1):56-63
pubmed: 27152251
Curr Microbiol. 2008 Apr;56(4):382-5
pubmed: 18176823
Gene. 1993 Oct 29;133(1):103-8
pubmed: 8224881
Science. 2012 Jun 8;336(6086):1262-7
pubmed: 22674330
J Dent Res. 2008 Nov;87(11):1016-20
pubmed: 18946007
Nat Protoc. 2020 Oct;15(10):3212-3239
pubmed: 32859984
Biochim Biophys Acta. 2002 Oct 11;1565(2):318-32
pubmed: 12409204
Microb Biotechnol. 2017 Nov;10(6):1500-1522
pubmed: 28925555
Comput Struct Biotechnol J. 2015 Jun 09;13:390-401
pubmed: 26137199
BMC Microbiol. 2021 Nov 3;21(1):302
pubmed: 34732139
J Ind Microbiol. 1995 Sep;15(3):169-75
pubmed: 8519474
Ren Fail. 2012;34(6):804-6
pubmed: 22506572
J Clin Microbiol. 2005 Nov;43(11):5721-32
pubmed: 16272510
J Oral Biol Craniofac Res. 2012 Sep-Dec;2(3):181-7
pubmed: 25737863
J Clin Periodontol. 2003;30 Suppl 5:10-2
pubmed: 12787196
Ann Stomatol (Roma). 2010 Jul;1(3-4):29-32
pubmed: 22238712
Sci Am. 1978 Jan;238(1):86-95
pubmed: 635520
Anaerobe. 2016 Dec;42:89-97
pubmed: 27693542
ISME J. 2013 May;7(5):1016-25
pubmed: 23303375
Oral Dis. 2012 Mar;18(2):109-20
pubmed: 21902769
Int Dent J. 2003 Dec;53(6 Suppl 1):371-8
pubmed: 14725381
Microb Ecol. 2018 Feb;75(2):543-554
pubmed: 28932895
Annu Rev Microbiol. 2011;65:261-86
pubmed: 21663441
Anaerobe. 2021 Apr;68:102230
pubmed: 32615270
Proteomics. 2015 Oct;15(20):3497-507
pubmed: 26272225
J Clin Periodontol. 1983 Jan;10(1):89-99
pubmed: 6572638
J Bacteriol. 2008 Jul;190(13):4632-40
pubmed: 18441055
Nucleic Acids Res. 2017 Jan 4;45(D1):D158-D169
pubmed: 27899622
Curr Microbiol. 2010 Jan;60(1):25-9
pubmed: 19777305
Nucleic Acids Res. 2013 Jan;41(Database issue):D387-95
pubmed: 23197656
IDCases. 2019 Jun 11;17:e00572
pubmed: 31275806
J Periodontol. 2017 Oct;88(10):1066-1089
pubmed: 28625077
Caries Res. 1993;27(4):285-91
pubmed: 8402803
Case Rep Cardiol. 2019 Jan 23;2019:7464251
pubmed: 30809399
PLoS One. 2013;8(3):e58487
pubmed: 23520516
Front Microbiol. 2016 Apr 22;7:564
pubmed: 27148241
J Mol Microbiol Biotechnol. 2015;25(2-3):154-67
pubmed: 26159076
Int J Syst Evol Microbiol. 2004 Mar;54(Pt 2):583-592
pubmed: 15023979
Microbiol Mol Biol Rev. 2002 Sep;66(3):486-505, table of contents
pubmed: 12209001
Trends Microbiol. 2006 Feb;14(2):92-7
pubmed: 16406790
Int J Dent Hyg. 2014 Aug;12(3):160-7
pubmed: 24720368
BMJ Case Rep. 2013 Oct 09;2013:
pubmed: 24108768
Microbiology (Reading). 2015 Jul;161(7):1297-1312
pubmed: 25814039
Mol Oral Microbiol. 2010 Feb;25(1):38-49
pubmed: 20331792
Cell Host Microbe. 2019 Aug 14;26(2):228-239.e8
pubmed: 31378677
J Bacteriol. 2000 Mar;182(5):1374-82
pubmed: 10671461
Microbiome. 2019 Jul 6;7(1):102
pubmed: 31279340
Anaerobe. 2016 Dec;42:50-54
pubmed: 27531625
PLoS One. 2015 May 05;10(5):e0124631
pubmed: 25942317
Indian J Microbiol. 2019 Mar;59(1):3-12
pubmed: 30728625
Int J Syst Evol Microbiol. 2009 Mar;59(Pt 3):509-16
pubmed: 19244431
Proteomics. 2012 Apr;12(7):992-1001
pubmed: 22522805
J Am Soc Mass Spectrom. 2015 Nov;26(11):1865-74
pubmed: 26115965
Microbiology (Reading). 2003 Feb;149(Pt 2):279-294
pubmed: 12624191
Pediatr Int. 2020 Nov;62(11):1307-1308
pubmed: 33242922
Mol Cell Proteomics. 2011 Dec;10(12):M111.007690
pubmed: 21876204
Sci Rep. 2020 Sep 29;10(1):15962
pubmed: 32994464
Annu Rev Microbiol. 2000;54:413-37
pubmed: 11018133
J Clin Periodontol. 2001 Jul;28(7):701-5
pubmed: 11422594
Antimicrob Agents Chemother. 2015 Dec 14;60(3):1411-20
pubmed: 26666926
Nat Commun. 2018 Nov 20;9(1):4744
pubmed: 30459334
Mol Cell Proteomics. 2009 Nov;8(11):2405-17
pubmed: 19608599
PLoS Comput Biol. 2017 Feb 21;13(2):e1005404
pubmed: 28222096
Acta Clin Belg. 2022 Feb;77(1):126-129
pubmed: 32552621
Nat Genet. 2014 Apr;46(4):336-44
pubmed: 24562188
Proteomics. 2015 Oct;15(20):3553-65
pubmed: 26058579
ISME J. 2020 May;14(5):1154-1169
pubmed: 32020052
Mol Oral Microbiol. 2010 Dec;25(6):391-405
pubmed: 21040513
Biotechnol Genet Eng Rev. 2010;26:335-52
pubmed: 21415887
Curr Oral Health Rep. 2015 Mar 1;2(1):48-56
pubmed: 26120510
Intern Med. 2019 May 1;58(9):1361-1365
pubmed: 30626838
Expert Rev Proteomics. 2016 Aug;13(8):757-69
pubmed: 27376173
ISME J. 2021 Feb;15(2):473-488
pubmed: 32999420
J Bacteriol. 2010 Oct;192(19):5002-17
pubmed: 20656903
Genome Res. 2007 Mar;17(3):377-86
pubmed: 17255551
Comput Struct Biotechnol J. 2014 Dec 03;13:24-32
pubmed: 25750697
BMC Microbiol. 2009 Dec 15;9:259
pubmed: 20003481
Proteomics. 2013 Jan;13(1):22-4
pubmed: 23148064
Infection. 2012 Oct;40(5):581-2
pubmed: 22367778
J Oral Microbiol. 2020 Jan 7;12(1):1710953
pubmed: 32002131
BDJ Open. 2018 Sep 27;4:17038
pubmed: 30275976
Arch Oral Biol. 2016 Oct;70:39-46
pubmed: 27318453
Sci Rep. 2017 Feb 27;7:43344
pubmed: 28240240
Microorganisms. 2019 Jan 13;7(1):
pubmed: 30642137
Am J Case Rep. 2020 Jun 15;21:e923135
pubmed: 32536685
J Infect Dev Ctries. 2016 Mar 31;10(3):214-21
pubmed: 27031452
BMC Evol Biol. 2014 Aug 22;14:190
pubmed: 25183372
Science. 1999 May 21;284(5418):1318-22
pubmed: 10334980
Proteomics. 2015 Oct;15(20):3409-17
pubmed: 26315987
Mol Biosyst. 2013 Apr 5;9(4):578-85
pubmed: 23238088
Clin Microbiol Rev. 2002 Apr;15(2):167-93
pubmed: 11932229
Proteomics. 2011 Jul;11(13):2752-6
pubmed: 21604374
J Endod. 2006 May;32(5):434-7
pubmed: 16631843
Res Microbiol. 2007 Oct-Nov;158(8-9):694-701
pubmed: 17825531
Clin Microbiol Rev. 2014 Apr;27(2):214-40
pubmed: 24696434
Caries Res. 2010;44(5):485-97
pubmed: 20861633
Int J Mol Sci. 2013 Dec 10;14(12):23993-4007
pubmed: 24336061
Oral Dis. 2002 Jan;8(1):23-9
pubmed: 11936452
J Periodontol. 2020 Jan;91(1):46-54
pubmed: 31342509
Case Rep Med. 2014;2014:734925
pubmed: 25580131
Database (Oxford). 2010 Jul 06;2010:baq013
pubmed: 20624719
Anaerobe. 2008 Jun;14(3):131-7
pubmed: 18539056
Adv Dent Res. 2009;21(1):69-73
pubmed: 19717412
Oncotarget. 2018 Apr 17;9(29):20631-20639
pubmed: 29755677
J Bacteriol. 2007 Nov;189(22):7945-7
pubmed: 17675377

Auteurs

Alexander Rabe (A)

Interfaculty Institute for Genetics and Functional Genomics, Department of Functional Genomics, University Medicine Greifswald, Felix-Hausdorff-Str. 8, 17475 Greifswald, Germany.

Manuela Gesell Salazar (M)

Interfaculty Institute for Genetics and Functional Genomics, Department of Functional Genomics, University Medicine Greifswald, Felix-Hausdorff-Str. 8, 17475 Greifswald, Germany.

Stephan Michalik (S)

Interfaculty Institute for Genetics and Functional Genomics, Department of Functional Genomics, University Medicine Greifswald, Felix-Hausdorff-Str. 8, 17475 Greifswald, Germany.

Thomas Kocher (T)

Center for Dentistry, Oral and Maxillofacial Medicine, Department of Restorative Dentistry, Periodontology, Endodontology, and Preventive and Pediatric Dentistry, Dental School of University Medicine Greifswald, Fleischmannstraße 42-44, 17489.

Harald Below (H)

Institute for Hygiene and Environmental Medicine, University Medicine Greifswald, Walter-Rathenau-Straße 49 A 17475 Greifswald, Germany.

Uwe Völker (U)

Interfaculty Institute for Genetics and Functional Genomics, Department of Functional Genomics, University Medicine Greifswald, Felix-Hausdorff-Str. 8, 17475 Greifswald, Germany.

Alexander Welk (A)

Center for Dentistry, Oral and Maxillofacial Medicine, Department of Restorative Dentistry, Periodontology, Endodontology, and Preventive and Pediatric Dentistry, Dental School of University Medicine Greifswald, Fleischmannstraße 42-44, 17489.

Classifications MeSH