Literature DB >> 26655706

Exosomes from human mesenchymal stem cells conduct aerobic metabolism in term and preterm newborn infants.

Isabella Panfoli1, Silvia Ravera2, Marina Podestà1, Claudia Cossu1, Laura Santucci1, Martina Bartolucci1, Maurizio Bruschi1, Daniela Calzia1, Federica Sabatini1, Matteo Bruschettini1, Luca Antonio Ramenghi1, Olga Romantsik1, Danilo Marimpietri1, Vito Pistoia1, Gianmarco Ghiggeri1, Francesco Frassoni1, Giovanni Candiano1.   

Abstract

Exosomes are secreted nanovesicles that are able to transfer RNA and proteins to target cells. The emerging role of mesenchymal stem cell (MSC) exosomes as promoters of aerobic ATP synthesis restoration in damaged cells, prompted us to assess whether they contain an extramitochondrial aerobic respiration capacity. Exosomes were isolated from culture medium of human MSCs from umbilical cord of ≥37-wk-old newborns or between 28- to 30-wk-old newborns (i.e.,term or preterm infants). Characterization of samples was conducted by cytofluorometry. Oxidative phosphorylation capacity was assessed by Western blot analysis, oximetry, and luminometric and fluorometric analyses. MSC exosomes express functional respiratory complexes I, IV, and V, consuming oxygen. ATP synthesis was only detectable in exosomes from term newborns, suggestive of a specific mechanism that is not completed at an early gestational age. Activities are outward facing and comparable to those detected in mitochondria isolated from term MSCs. MSC exosomes display an unsuspected aerobic respiratory ability independent of whole mitochondria. This may be relevant for their ability to rescue cell bioenergetics. The differential oxidative metabolism of pretermvs.term exosomes sheds new light on the preterm newborn's clinical vulnerability. A reduced ability to repair damaged tissue and an increased capability to cope with anoxic environment for preterm infants can be envisaged.-Panfoli, I., Ravera, S., Podestà, M., Cossu, C., Santucci, L., Bartolucci, M., Bruschi, M., Calzia, D., Sabatini, F., Bruschettini, M., Ramenghi, L. A., Romantsik, O., Marimpietri, D., Pistoia, V., Ghiggeri, G., Frassoni, F., Candiano, G. Exosomes from human mesenchymal stem cells conduct aerobic metabolism in term and preterm newborn infants. © FASEB.

Entities:  

Keywords:  ATP synthesis; electron transport chain; energy metabolism; oxidative phosphorylation; umbilical cord

Mesh:

Substances:

Year:  2015        PMID: 26655706     DOI: 10.1096/fj.15-279679

Source DB:  PubMed          Journal:  FASEB J        ISSN: 0892-6638            Impact factor:   5.191


  28 in total

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10.  Identification and Characterization of 293T Cell-Derived Exosomes by Profiling the Protein, mRNA and MicroRNA Components.

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