Literature DB >> 28251902

Evolutionarily conserved serum microRNAs predict radiation-induced fatality in nonhuman primates.

Wojciech Fendler1, Beata Malachowska1, Khyati Meghani2, Panagiotis A Konstantinopoulos3, Chandan Guha4,5, Vijay K Singh6,7, Dipanjan Chowdhury8.   

Abstract

Effective planning for the medical response to a radiological or nuclear accident is complex. Because of limited resources for medical countermeasures, the key would be to accurately triage and identify victims most likely to benefit from treatment. We used a mouse model system to provide evidence that serum microRNAs (miRNAs) may effectively predict the impact of radiation on the long-term viability of animals. We had previously used nonhuman primates (NHPs) to demonstrate that this concept is conserved and serum miRNA signatures have the potential to serve as prediction biomarkers for radiation-induced fatality in a human population. We identified a signature of seven miRNAs that are altered by irradiation in both mice and NHPs. Genomic analysis of these conserved miRNAs revealed that there is a combination of seven transcription factors that are predicted to regulate these miRNAs in human, mice, and NHPs. Moreover, a combination of three miRNAs (miR-133b, miR-215, and miR-375) can identify, with nearly complete accuracy, NHPs exposed to radiation versus unexposed NHPs. Consistent with historical data, female macaques appeared to be more sensitive to radiation, but the difference was not significant. Sex-based stratification allowed us to identify an interaction between gender and miR-16-2 expression, which affected the outcome of radiation exposure. Moreover, we developed a classifier based on two miRNAs (miR-30a and miR-126) that can reproducibly predict radiation-induced mortality. Together, we have obtained a five-miRNA composite signature that can identify irradiated macaques and predict their probability of survival.
Copyright © 2017, American Association for the Advancement of Science.

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Year:  2017        PMID: 28251902      PMCID: PMC5441546          DOI: 10.1126/scitranslmed.aal2408

Source DB:  PubMed          Journal:  Sci Transl Med        ISSN: 1946-6234            Impact factor:   17.956


  32 in total

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Journal:  Radiat Environ Biophys       Date:  2009-02-26       Impact factor: 1.925

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Journal:  Sci Transl Med       Date:  2015-05-13       Impact factor: 17.956

9.  Radioprotective Efficacy of Gamma-Tocotrienol in Nonhuman Primates.

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  20 in total

Review 1.  Nonhuman primates as models for the discovery and development of radiation countermeasures.

Authors:  Vijay K Singh; Ayodele O Olabisi
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2.  A Metabolomic Serum Signature from Nonhuman Primates Treated with a Radiation Countermeasure, Gamma-tocotrienol, and Exposed to Ionizing Radiation.

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Review 3.  Ionizing radiation-induced altered microRNA expression as biomarkers for assessing acute radiation injury.

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Journal:  Expert Rev Mol Diagn       Date:  2017-08-14       Impact factor: 5.225

Review 4.  Long and short non-coding RNA and radiation response: a review.

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5.  Thioredoxin mitigates radiation-induced hematopoietic stem cell injury in mice.

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6.  A Metabolomic and Lipidomic Serum Signature from Nonhuman Primates Administered with a Promising Radiation Countermeasure, Gamma-Tocotrienol.

Authors:  Amrita K Cheema; Khyati Y Mehta; Oluseyi O Fatanmi; Stephen Y Wise; Charles P Hinzman; Josh Wolff; Vijay K Singh
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7.  Non-coding RNAs in the Ovarian Follicle.

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Review 9.  Targeting MicroRNAs in Prostate Cancer Radiotherapy.

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10.  Serum microRNAs - potent biomarkers for radiation biodosimetry.

Authors:  Bartłomiej Tomasik; Wojciech Fendler; Dipanjan Chowdhury
Journal:  Oncotarget       Date:  2018-02-02
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