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Circulating miRNA Spaceflight Signature Reveals Targets for Countermeasure Development

We have identified and validated a spaceflight-associated microRNA (miRNA) signature that is shared by rodents and humans in response to simulated, short-duration and long-duration spaceflight. Previous studies have identified miRNAs that regulate rodent responses to spaceflight in low-Earth orbit,...

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Autores principales: Malkani, Sherina, Chin, Christopher R., Cekanaviciute, Egle, Mortreux, Marie, Okinula, Hazeem, Tarbier, Marcel, Schreurs, Ann-Sofie, Shirazi-Fard, Yasaman, Tahimic, Candice G.T., Rodriguez, Deyra N., Sexton, Brittany S., Butler, Daniel, Verma, Akanksha, Bezdan, Daniela, Durmaz, Ceyda, MacKay, Matthew, Melnick, Ari, Meydan, Cem, Li, Sheng, Garrett-Bakelman, Francine, Fromm, Bastian, Afshinnekoo, Ebrahim, Langhorst, Brad W., Dimalanta, Eileen T., Cheng-Campbell, Margareth, Blaber, Elizabeth, Schisler, Jonathan C., Vanderburg, Charles, Friedländer, Marc R., McDonald, J. Tyson, Costes, Sylvain V., Rutkove, Seward, Grabham, Peter, Mason, Christopher E., Beheshti, Afshin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8441986/
https://www.ncbi.nlm.nih.gov/pubmed/33242410
http://dx.doi.org/10.1016/j.celrep.2020.108448
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author Malkani, Sherina
Chin, Christopher R.
Cekanaviciute, Egle
Mortreux, Marie
Okinula, Hazeem
Tarbier, Marcel
Schreurs, Ann-Sofie
Shirazi-Fard, Yasaman
Tahimic, Candice G.T.
Rodriguez, Deyra N.
Sexton, Brittany S.
Butler, Daniel
Verma, Akanksha
Bezdan, Daniela
Durmaz, Ceyda
MacKay, Matthew
Melnick, Ari
Meydan, Cem
Li, Sheng
Garrett-Bakelman, Francine
Fromm, Bastian
Afshinnekoo, Ebrahim
Langhorst, Brad W.
Dimalanta, Eileen T.
Cheng-Campbell, Margareth
Blaber, Elizabeth
Schisler, Jonathan C.
Vanderburg, Charles
Friedländer, Marc R.
McDonald, J. Tyson
Costes, Sylvain V.
Rutkove, Seward
Grabham, Peter
Mason, Christopher E.
Beheshti, Afshin
author_facet Malkani, Sherina
Chin, Christopher R.
Cekanaviciute, Egle
Mortreux, Marie
Okinula, Hazeem
Tarbier, Marcel
Schreurs, Ann-Sofie
Shirazi-Fard, Yasaman
Tahimic, Candice G.T.
Rodriguez, Deyra N.
Sexton, Brittany S.
Butler, Daniel
Verma, Akanksha
Bezdan, Daniela
Durmaz, Ceyda
MacKay, Matthew
Melnick, Ari
Meydan, Cem
Li, Sheng
Garrett-Bakelman, Francine
Fromm, Bastian
Afshinnekoo, Ebrahim
Langhorst, Brad W.
Dimalanta, Eileen T.
Cheng-Campbell, Margareth
Blaber, Elizabeth
Schisler, Jonathan C.
Vanderburg, Charles
Friedländer, Marc R.
McDonald, J. Tyson
Costes, Sylvain V.
Rutkove, Seward
Grabham, Peter
Mason, Christopher E.
Beheshti, Afshin
author_sort Malkani, Sherina
collection PubMed
description We have identified and validated a spaceflight-associated microRNA (miRNA) signature that is shared by rodents and humans in response to simulated, short-duration and long-duration spaceflight. Previous studies have identified miRNAs that regulate rodent responses to spaceflight in low-Earth orbit, and we have confirmed the expression of these proposed spaceflight-associated miRNAs in rodents reacting to simulated spaceflight conditions. Moreover, astronaut samples from the NASA Twins Study confirmed these expression signatures in miRNA sequencing, single-cell RNA sequencing (scRNA-seq), and single-cell assay for transposase accessible chromatin (scATAC-seq) data. Additionally, a subset of these miRNAs (miR-125, miR-16, and let-7a) was found to regulate vascular damage caused by simulated deep space radiation. To demonstrate the physiological relevance of key spaceflight-associated miRNAs, we utilized antagomirs to inhibit their expression and successfully rescue simulated deep-space-radiation-mediated damage in human 3D vascular constructs.
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spelling pubmed-84419862021-09-15 Circulating miRNA Spaceflight Signature Reveals Targets for Countermeasure Development Malkani, Sherina Chin, Christopher R. Cekanaviciute, Egle Mortreux, Marie Okinula, Hazeem Tarbier, Marcel Schreurs, Ann-Sofie Shirazi-Fard, Yasaman Tahimic, Candice G.T. Rodriguez, Deyra N. Sexton, Brittany S. Butler, Daniel Verma, Akanksha Bezdan, Daniela Durmaz, Ceyda MacKay, Matthew Melnick, Ari Meydan, Cem Li, Sheng Garrett-Bakelman, Francine Fromm, Bastian Afshinnekoo, Ebrahim Langhorst, Brad W. Dimalanta, Eileen T. Cheng-Campbell, Margareth Blaber, Elizabeth Schisler, Jonathan C. Vanderburg, Charles Friedländer, Marc R. McDonald, J. Tyson Costes, Sylvain V. Rutkove, Seward Grabham, Peter Mason, Christopher E. Beheshti, Afshin Cell Rep Article We have identified and validated a spaceflight-associated microRNA (miRNA) signature that is shared by rodents and humans in response to simulated, short-duration and long-duration spaceflight. Previous studies have identified miRNAs that regulate rodent responses to spaceflight in low-Earth orbit, and we have confirmed the expression of these proposed spaceflight-associated miRNAs in rodents reacting to simulated spaceflight conditions. Moreover, astronaut samples from the NASA Twins Study confirmed these expression signatures in miRNA sequencing, single-cell RNA sequencing (scRNA-seq), and single-cell assay for transposase accessible chromatin (scATAC-seq) data. Additionally, a subset of these miRNAs (miR-125, miR-16, and let-7a) was found to regulate vascular damage caused by simulated deep space radiation. To demonstrate the physiological relevance of key spaceflight-associated miRNAs, we utilized antagomirs to inhibit their expression and successfully rescue simulated deep-space-radiation-mediated damage in human 3D vascular constructs. 2020-11-25 2020-12-08 /pmc/articles/PMC8441986/ /pubmed/33242410 http://dx.doi.org/10.1016/j.celrep.2020.108448 Text en https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) ).
spellingShingle Article
Malkani, Sherina
Chin, Christopher R.
Cekanaviciute, Egle
Mortreux, Marie
Okinula, Hazeem
Tarbier, Marcel
Schreurs, Ann-Sofie
Shirazi-Fard, Yasaman
Tahimic, Candice G.T.
Rodriguez, Deyra N.
Sexton, Brittany S.
Butler, Daniel
Verma, Akanksha
Bezdan, Daniela
Durmaz, Ceyda
MacKay, Matthew
Melnick, Ari
Meydan, Cem
Li, Sheng
Garrett-Bakelman, Francine
Fromm, Bastian
Afshinnekoo, Ebrahim
Langhorst, Brad W.
Dimalanta, Eileen T.
Cheng-Campbell, Margareth
Blaber, Elizabeth
Schisler, Jonathan C.
Vanderburg, Charles
Friedländer, Marc R.
McDonald, J. Tyson
Costes, Sylvain V.
Rutkove, Seward
Grabham, Peter
Mason, Christopher E.
Beheshti, Afshin
Circulating miRNA Spaceflight Signature Reveals Targets for Countermeasure Development
title Circulating miRNA Spaceflight Signature Reveals Targets for Countermeasure Development
title_full Circulating miRNA Spaceflight Signature Reveals Targets for Countermeasure Development
title_fullStr Circulating miRNA Spaceflight Signature Reveals Targets for Countermeasure Development
title_full_unstemmed Circulating miRNA Spaceflight Signature Reveals Targets for Countermeasure Development
title_short Circulating miRNA Spaceflight Signature Reveals Targets for Countermeasure Development
title_sort circulating mirna spaceflight signature reveals targets for countermeasure development
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8441986/
https://www.ncbi.nlm.nih.gov/pubmed/33242410
http://dx.doi.org/10.1016/j.celrep.2020.108448
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