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Updated: Aug 27, 2026

Extraction of Extracellular Vesicles from Whole Tissue
Published on: February 7, 2019
Diagnostic use of extracellular vesicles in dentistry
Yu-Chi Cheng1,2,3, Eren A Keles1, David T Wu3,4,5,6
1Harvard School of Dental Medicine, Boston, Massachusetts, USA.
Objectives:
To review the diagnostic potential of extracellular vesicles (EVs) in dentistry and evaluate the methodological, translatory, and clinical considerations relevant to their use in oral biofluids.
Materials And Methods:
This narrative review synthesizes current evidence on EVs in dental diagnostics, focusing on saliva, gingival crevicular fluid (GCF), and peri-implant crevicular fluid (PICF). The review examines EV nomenclature, specimen sources, pre-analytical handling, isolation and characterization methods, diagnostic benchmarks, and clinical evidence across major oral diseases.
Results:
EVs are promising biomarkers because they protect molecular cargo and may enrich disease-relevant signals relative to whole biofluids. Current evidence is strongest for oral squamous cell carcinoma, periodontitis, and peri-implant disease, where EV-associated proteins, RNAs, and microbe-derived signals have shown diagnostic potential. Saliva offers a noninvasive and accessible matrix, whereas GCF and PICF provide greater site specificity for localized disease. However, major barriers remain, including inconsistent nomenclature, co-isolation of non-vesicular particles, variability in sample collection and EV enrichment methods, limited assay standardization, and insufficient multi-site clinical validation.
Conclusions:
Oral-fluid EVs represent a compelling but early-stage diagnostic platform in dentistry. Their successful translation will require rigorous methodological standardization, MISEV-aligned reporting, robust analytical and clinical validation, and deployment strategies suited to either point-of-care or centralized laboratory testing.
Clinical Relevance:
EV-based assays could support earlier, more objective, and minimally invasive diagnosis and monitoring of oral diseases, particularly periodontal disease, peri-implant disease, and oral cancer, if current technical and translational barriers are overcome.
