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From tissue retrieval to electron tomography: nanoscale characterization of the interface between bone and bioactive glass

Chiara Micheletti, Pedro Henrique Silva Gomes-Ferreira, Travis Casagrande, Paulo Noronha Lisboa‐Filho, Roberta Okamoto, Kathryn Grandfield

2021Journal of The Royal Society Interface14 citationsDOIOpen Access PDF

Abstract

The success of biomaterials for bone regeneration relies on many factors, among which osseointegration plays a key role. Biogran (BG) is a bioactive glass commonly employed as a bone graft in dental procedures. Despite its use in clinical practice, the capability of BG to promote osseointegration has never been resolved at the nanoscale. In this paper, we present the workflow for characterizing the interface between newly formed bone and BG in a preclinical rat model. Areas of bone–BG contact were first identified by backscattered electron imaging in a scanning electron microscope. A focused ion beam in situ lift-out protocol was employed to prepare ultrathin samples for transmission electron microscopy analysis. The bone–BG gradual interface, i.e. the biointerphase, was visualized at the nanoscale with unprecedented resolution thanks to scanning transmission electron microscopy. Finally, we present a method to view the bone–BG interface in three dimensions using electron tomography.

Topics & Concepts

Electron tomographyOsseointegrationBioactive glassMaterials scienceBiomedical engineeringTransmission electron microscopyNanoscopic scaleCharacterization (materials science)NanotechnologyScanning electron microscopeScanning transmission electron microscopyMedicineComposite materialSurgeryImplantBone Tissue Engineering MaterialsDental Implant Techniques and OutcomesDental materials and restorations
From tissue retrieval to electron tomography: nanoscale characterization of the interface between bone and bioactive glass | Litcius