A large portion of the human genome transcribes RNA sequences that do not code for any proteins. The first of these sequences was identified in 1993, and the best known noncoding RNAs are microRNA (miRNAs). It is now fully established that miRNAs regulate approximately 30% of the known genes that codify proteins. miRNAs are involved in several biological processes, like cell proliferation, differentiation, apoptosis and metastatization. These RNA products regulate gene expression at the post-transcriptional level, modulating or inhibiting protein expression by interacting with specific sequences of mRNAs. Mature miRNAs can be detected in blood plasma, serum and also in a wide variety of biological fluids. They can be found associated with proteins, lipids as well as enclosed in exosome vesicles. We know that circulating miRNAs (C-miRNAs) can regulate several key cellular processes in tissues different from the production site. C-miRNAs behave as endogenous mediators of RNA translation, and an extraordinary knowledge on their function has been obtained in the last years. They can be secreted in different tissue cells and associated with specific pathological conditions. Significant evidence indicates that the initiation and progression of several pathologies are "highlighted" by the presence of specific C-miRNAs, underlining their potential diagnostic relevance as clinical biomarkers. Here we review the current literature on the possible use of this new class of molecules as clinical biomarkers of diseases.

Terrinoni, A., Calabrese, C., Basso, D., Aita, A., Caporali, S., Plebani, M., et al. (2019). The circulating miRNAs as diagnostic and prognostic markers. CLINICAL CHEMISTRY AND LABORATORY MEDICINE, 57(7), 932-953 [10.1515/cclm-2018-0838].

The circulating miRNAs as diagnostic and prognostic markers

Terrinoni, Alessandro
Investigation
;
Bernardini, Sergio
2019-01-01

Abstract

A large portion of the human genome transcribes RNA sequences that do not code for any proteins. The first of these sequences was identified in 1993, and the best known noncoding RNAs are microRNA (miRNAs). It is now fully established that miRNAs regulate approximately 30% of the known genes that codify proteins. miRNAs are involved in several biological processes, like cell proliferation, differentiation, apoptosis and metastatization. These RNA products regulate gene expression at the post-transcriptional level, modulating or inhibiting protein expression by interacting with specific sequences of mRNAs. Mature miRNAs can be detected in blood plasma, serum and also in a wide variety of biological fluids. They can be found associated with proteins, lipids as well as enclosed in exosome vesicles. We know that circulating miRNAs (C-miRNAs) can regulate several key cellular processes in tissues different from the production site. C-miRNAs behave as endogenous mediators of RNA translation, and an extraordinary knowledge on their function has been obtained in the last years. They can be secreted in different tissue cells and associated with specific pathological conditions. Significant evidence indicates that the initiation and progression of several pathologies are "highlighted" by the presence of specific C-miRNAs, underlining their potential diagnostic relevance as clinical biomarkers. Here we review the current literature on the possible use of this new class of molecules as clinical biomarkers of diseases.
2019
Pubblicato
Rilevanza internazionale
Articolo
Esperti anonimi
Settore BIO/12 - BIOCHIMICA CLINICA E BIOLOGIA MOLECOLARE CLINICA
English
biomarkers; circulating miR; circulating miRNAs (C-miRNAs); Clinical Biochemistry; Biochemistry (medical)
http://www.reference-global.com/toc/cclm/current
Terrinoni, A., Calabrese, C., Basso, D., Aita, A., Caporali, S., Plebani, M., et al. (2019). The circulating miRNAs as diagnostic and prognostic markers. CLINICAL CHEMISTRY AND LABORATORY MEDICINE, 57(7), 932-953 [10.1515/cclm-2018-0838].
Terrinoni, A; Calabrese, C; Basso, D; Aita, A; Caporali, S; Plebani, M; Bernardini, S
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/207983
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