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Oraldisk: A chair-side compatible molecular platform using whole saliva for monitoring oral health at the dental practice

  • D. Baumgartner
  • , B. Johannsen
  • , M. Specht
  • , J. Lüddecke
  • , M. Rombach
  • , S. Hin
  • , N. Paust
  • , F. von Stetten
  • , R. Zengerle
  • , C. Herz
  • , J.R. Peham
  • , P.N. Paqué
  • , T. Attin
  • , J.S. Jenzer
  • , P. Körner
  • , P.R. Schmidlin
  • , T. Thurnheer
  • , F.J. Wegehaupt
  • , W.E. Kaman
  • , A. Stubbs
  • J.P. Hays, V. Rusu, A. Michie, T. Binsl, D. Stejskal, M. Karpíšek, K. Bao, N. Bostanci, G.N. Belibasakis, K. Mitsakakis

Research output: Contribution to JournalArticleAcademicpeer-review

Abstract

Periodontitis and dental caries are two major bacterially induced, non-communicable diseases that cause the deterioration of oral health, with implications in patients’ general health. Early, precise diagnosis and personalized monitoring are essential for the efficient prevention and management of these diseases. Here, we present a disk-shaped microfluidic platform (OralDisk) compatible with chair-side use that enables analysis of non-invasively collected whole saliva samples and molecular-based detection of ten bacteria: seven periodontitis-associated (Aggregatibacter actinomycetemcomitans, Campylobacter rectus, Fusobacterium nucleatum, Prevotella intermedia, Porphyromonas gingivalis, Tannerella forsythia, Treponema denticola) and three caries-associated (oral Lactobacilli, Streptococcus mutans, Streptococcus sobrinus). Each OralDisk test required 400 µL of homogenized whole saliva. The automated workflow included bacterial DNA extraction, purification and hydrolysis probe real-time PCR detection of the target pathogens. All reagents were pre-stored within the disk and sample-to-answer processing took < 3 h using a compact, customized processing device. A technical feasibility study (25 OralDisks) was conducted using samples from healthy, periodontitis and caries patients. The comparison of the OralDisk with a lab-based reference method revealed a ~90% agreement amongst targets detected as positive and negative. This shows the OralDisk’s potential and suitability for inclusion in larger prospective implementation studies in dental care settings.
Original languageEnglish
Article number423
Pages (from-to)1-21
Number of pages21
JournalBiosensors
Volume11
Issue number11
Early online date28 Oct 2021
DOIs
Publication statusPublished - Nov 2021

Bibliographical note

This article belongs to the Special Issue: Microfluidics for Biosensing.

Funding

Funding: This project has received funding from the European Union’s Horizon 2020 research and innovation programme under grant agreement No 633780 (‘DIAGORAS’ project), as well as the KI/SLL Styrgruppen för Odontologisk Forskning (SOF) Dnr. 4-823/2019. The article processing charge was funded by the Baden-Wuerttemberg Ministry of Science, Research and Art and the University of Freiburg in the funding programme Open Access Publishing. This project has received funding from the European Union?s Horizon 2020 research and innovation programme under grant agreement No 633780 (?DIAGORAS? project), as well as the KI/SLL Styrgruppen f?r Odontologisk Forskning (SOF) Dnr. 4-823/2019. The article processing charge was funded by the Baden-Wuerttemberg Ministry of Science, Research and Art and the University of Freiburg in the funding programme Open Access Publishing.

FundersFunder number
Albert-Ludwigs-Universität Freiburg
KI/SLL Styrgruppen för Odontologisk Forskning
Baden-Wuerttemberg Ministry of Science, Research and Art
Horizon 2020 Framework Programme633780, 4-823/2019
Sveriges Ornitologiska Förening4-823/2019

    UN SDGs

    This output contributes to the following UN Sustainable Development Goals (SDGs)

    1. SDG 10 - Reduced Inequalities
      SDG 10 Reduced Inequalities

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