Author:
Alhajj Mohammed Nasser,Halboub Esam,Yacob Norlela,Al-Maweri Sadeq Ali,Ahmad Siti Fauzza,Celebić Asja,Al-Mekhlafi Hesham M.,Salleh Nosizana Mohd
Abstract
Abstract
Background
The present systematic review and meta-analysis investigated the available evidence about the adherence of Candida Albicans to the digitally-fabricated acrylic resins (both milled and 3D-printed) compared to the conventional heat-polymerized acrylic resins.
Methods
This study followed the guidelines of the Preferred Reporting Items for Systematic Review and Meta-analyses (PRISMA). A comprehensive search of online databases/search tools (Web of Science, Scopus, PubMed, Ovid, and Google Scholar) was conducted for all relevant studies published up until May 29, 2023. Only in-vitro studies comparing the adherence of Candida albicans to the digital and conventional acrylic resins were included. The quantitative analyses were performed using RevMan v5.3 software.
Results
Fourteen studies were included, 11 of which were meta-analyzed based on Colony Forming Unit (CFU) and Optical Density (OD) outcome measures. The pooled data revealed significantly lower candida colonization on the milled digitally-fabricated compared to the heat-polymerized conventionally-fabricated acrylic resin materials (MD = − 0.36; 95%CI = − 0.69, − 0.03; P = 0.03 and MD = − 0.04; 95%CI = − 0.06, − 0.01; P = 0.0008; as measured by CFU and OD respectively). However, no differences were found in the adhesion of Candida albicans between the 3D-printed digitally-fabricated compared to the heat-polymerized conventionally-fabricated acrylic resin materials (CFU: P = 0.11, and OD: P = 0.20).
Conclusion
The available evidence suggests that candida is less likely to adhere to the milled digitally-fabricated acrylic resins compared to the conventional ones.
Publisher
Springer Science and Business Media LLC
Reference57 articles.
1. Ishida Y, Kuwajima Y, Kobayashi T, Yonezawa Y, Asack D, Nagai M, Kondo H, Ishikawa-Nagai S, Da Silva J, Lee SJ. Current implementation of digital dentistry for removable prosthodontics in US dental schools. Int J Dent. 2022;2022:7331185.
2. Grant GT, Campbell SD, Masri RM, Andersen MR. Glossary of digital dental terms, 2nd edition: American College of Prosthodontists and ACP Education Foundation. J Prosthodont. 2021;30(S3):172–81.
3. Kattadiyil MT, Goodacre CJ, Baba NZ. CAD/CAM complete dentures: a review of two commercial fabrication systems. J Calif Dent Assoc. 2013;41(6):407–16.
4. Villias A, Karkazis H, Yannikakis S, Theocharopoulos A, Sykaras N, Polyzois G. Current status of digital complete dentures technology. Prosthesis. 2021;3:229–44.
5. Schweiger J, Stumbaum J, Edelhoff D, Güth JF. Systematics and concepts for the digital production of complete dentures: risks and opportunities. Int J Comput Dent. 2018;21(1):41–56.
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