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Review

MicroRNA Milk Exosomes: From Cellular Regulator to Genomic Marker

Department of Agriculture, Food, Environmental and Animal Science, University of Udine, 33100 Udine, Italy
*
Author to whom correspondence should be addressed.
Animals 2020, 10(7), 1126; https://doi.org/10.3390/ani10071126
Submission received: 23 May 2020 / Revised: 25 June 2020 / Accepted: 29 June 2020 / Published: 2 July 2020

Simple Summary

Bovine milk contains proteins, minerals (e.g., calcium), vitamins (A, B, D, E and K), bioactive compounds and signaling molecules, as short non-coding RNA, either floating or contained in exosomes. Milk compositions and the milk-derived exosomes’ (EXO) cargo varies in relation to the health status of the mammary gland and the lactation stage. Stress, immune-depression and mastitis generate a differential microRNA (miRNA) expression, and consequently a modulation of the local immune cell response. This review aims to discuss the possible application of EXO cargo as a biomarker of animal resilience, and as a phenotype for genomic studies.

Abstract

Recent advances in ruminants’ milk-derived exosomes (EXO) have indicated a role of microRNAs (miRNAs) in cell-to-cell communication in dairy ruminants. The miRNAs EXO retain peculiar mechanisms of uptake from recipient cells, which enables the selective delivery of cargos, with a specific regulation of target genes. Although many studies have been published on the miRNAs contained in milk, less information is available on the role of miRNAs EXO, which are considered stable over time and resistant to digestion and milk processing. Several miRNAs EXO have been implicated in the cellular signaling pathway, as in the regulation of immune response. Moreover, they exert epigenetic control, as extenuating the expression of DNA methyltransferase 1. However, the study of miRNAs EXO is still challenging due to the difficulty of isolating EXO. In fact, there are not agreed protocols, and different methods, often time-consuming, are used, making it difficult to routinely process a large number of samples. The regulation of cell functions in mammary glands by miRNAs EXO, and their applications as genomic markers in livestock, is presented.
Keywords: bovine milk; exosomes; miRNA; ruminants; genome; mastitis bovine milk; exosomes; miRNA; ruminants; genome; mastitis

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MDPI and ACS Style

Cintio, M.; Polacchini, G.; Scarsella, E.; Montanari, T.; Stefanon, B.; Colitti, M. MicroRNA Milk Exosomes: From Cellular Regulator to Genomic Marker. Animals 2020, 10, 1126. https://doi.org/10.3390/ani10071126

AMA Style

Cintio M, Polacchini G, Scarsella E, Montanari T, Stefanon B, Colitti M. MicroRNA Milk Exosomes: From Cellular Regulator to Genomic Marker. Animals. 2020; 10(7):1126. https://doi.org/10.3390/ani10071126

Chicago/Turabian Style

Cintio, Michela, Giulia Polacchini, Elisa Scarsella, Tommaso Montanari, Bruno Stefanon, and Monica Colitti. 2020. "MicroRNA Milk Exosomes: From Cellular Regulator to Genomic Marker" Animals 10, no. 7: 1126. https://doi.org/10.3390/ani10071126

APA Style

Cintio, M., Polacchini, G., Scarsella, E., Montanari, T., Stefanon, B., & Colitti, M. (2020). MicroRNA Milk Exosomes: From Cellular Regulator to Genomic Marker. Animals, 10(7), 1126. https://doi.org/10.3390/ani10071126

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