AI Article Synopsis

  • The study investigates a new conometric concept where conical implant abutments secure crowns through friction instead of cement or screws, focusing on bacterial leakage and microgap formation.
  • Using microbiological analysis and scanning electron microscopy, researchers tested three implant systems (Ankylos, Astra Tech EV, Xive) over various time points for bacterial migration.
  • Results showed no evidence of bacterial leakage and minimal microgaps at the conometric junction, suggesting that the system provides adequate sealing and marginal integrity for dental restorations.

Article Abstract

Objectives: A conometric concept was recently introduced in which conical implant abutments hold the matching crown copings by friction alone, eliminating the need for cement or screws. The aim of this in vitro study was to assess the presence of microgap formation and bacterial leakage at the Acuris conometric restorative interface of three different implant abutment systems.

Material And Methods: A total of 75 Acuris samples of three implant-abutment systems (Ankylos, Astra Tech EV, Xive) were subjected to microbiological (n = 60) and scanning electron microscopic (SEM) investigation (n = 15). Bacterial migration into and out of the conical coupling system were analyzed in an anaerobic workstation for 48, 96, 144, and 192 h. Bacterial DNA quantification using qrt-PCR was performed at each time point. The precision of the conometric coupling and internal fit of cemented CAD/CAM crowns on corresponding Acuris TiN copings were determined by means of SEM.

Results: qrt-PCR results failed to demonstrate microbial leakage from or into the Acuris system. SEM analysis revealed minute punctate microgaps at the apical aspect of the conometric junction (2.04 to 2.64 µm), while mean cement gaps of 12 to 145 µm were observed at the crown-coping interface.

Conclusions: The prosthetic morse taper connection of all systems examined does not allow bacterial passage. Marginal integrity and internal luting gap between the ceramic crown and the coping remained within the clinically acceptable limits.

Clinical Relevance: Conometrically seated single crowns provide sufficient sealing efficiency, relocating potential misfits from the crown-abutment interface to the crown-coping interface.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8816325PMC
http://dx.doi.org/10.1007/s00784-021-04112-2DOI Listing

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