• Passa alla navigazione primaria
  • Passa al contenuto principale
BC

biochimica clinica

it_IT Italian
it_IT Italian en_US English
  • Home
  • Casi clinici
  • Ahead of print e Ultimo Fascicolo - Accedi per visualizzare gli articoli
  • Archivio BC fino a 2024
  • Sottometti un articolo
  • Norme Autori
  • Cerca

CASI CLINICI – Case Reports

Volume:

Biochimica Clinica 2012; 36(2) 126-138

Pubblicato on-line:

DOI:

Scarica in PDF:
Autenticazione richiesta

Potenziale diagnostico della saliva: stato dell’arte e applicazioni future

AUTORI

Tina Pfaffe1, Justin Cooper-White2,3, Peter Beyerlein1, Karam Kostner4,5, Chamindie Punyadeera2,3
1Technical University of Applied Science, Wildau, Germany
2School of Chemical Engineering, 3Australian Institute for Bioengineering and Nanotechnology, and 4School of Medicine, University of Queensland, Brisbane, Australia
5Mater Hospital, Brisbane, Australia
Traduzione a cura di Alberto Dolci

ABSTRACT

Diagnostic potential of saliva: current state and future applications

Over the past 10 years, the use of saliva as a diagnostic fluid has gained attention and has become a translational research success story. Some of the current nanotechnologies have been demonstrated to have the analytical sensitivity required for the use of saliva as a diagnostic medium to detect and predict disease progression. However, these technologies have not yet been integrated into current clinical practice and work flow. As a diagnostic fluid, saliva offers advantages over serum because it can be collected noninvasively by individuals with modest training, and it offers a cost-effective approach for the screening of large populations. Gland-specific saliva can also be used for diagnosis of pathology specific to one of the major salivary glands. There is minimal risk of contracting infections during saliva collection, and saliva can be used in clinically challenging situations, such as obtaining samples from children or handicapped or anxious patients, in whom blood sampling could be a difficult act to perform. In this review we highlight the production of and secretion of saliva, the salivary proteome, transportation of biomolecules from blood capillaries to salivary glands, and the diagnostic potential of saliva for use in detection of cardiovascular disease and oral and breast cancers. We also highlight the barriers to application of saliva testing and its
advancement in clinical settings. Saliva has the potential to become a first-line diagnostic sample of choice owing to
the advancements in detection technologies coupled with combinations of biomolecules with clinical relevance.

BIBLIOGRAFIA