Authors
Mick, Eric O.Shah, Ravi
Tanriverdi, Kahraman
Murthy, Venkatesh
Gerstein, Mark
Rozowsky, Joel
Kitchen, Robert
Larson, Martin G.
Levy, Daniel
Freedman, Jane E.
UMass Chan Affiliations
UMass Metabolic NetworkDepartment of Medicine, Division of Cardiovascular Medicine
Department of Quantitative Health Sciences
Document Type
Journal ArticlePublication Date
2017-04-01Keywords
RNAscardiovascular diseases
genes
risk factors
stroke
UMCCTS funding
Biochemistry
Cardiovascular Diseases
Cell Biology
Cellular and Molecular Physiology
Molecular Biology
Metadata
Show full item recordAbstract
BACKGROUND AND PURPOSE: There is increasing interest in extracellular RNAs (ex-RNAs), with numerous reports of associations between selected microRNAs (miRNAs) and a variety of cardiovascular disease phenotypes. Previous studies of ex-RNAs in relation to risk for cardiovascular disease have investigated small numbers of patients and assayed only candidate miRNAs. No human studies have investigated links between novel ex-RNAs and stroke. METHODS: We conducted unbiased next-generation sequencing using plasma from 40 participants of the FHS (Framingham Heart Study; Offspring Cohort Exam 8) followed by high-throughput polymerase chain reaction of 471 ex-RNAs. The reverse transcription quantitative polymerase chain reaction included 331 of the most abundant miRNAs, 43 small nucleolar RNAs, and 97 piwi-interacting RNAs in 2763 additional FHS participants and explored the relations of ex-RNAs and prevalent (n=63) and incident (n=51) stroke and coronary heart disease (prevalent=286, incident=69). RESULTS: After adjustment for multiple cardiovascular disease risk factors, 7 ex-RNAs were associated with stroke prevalence or incidence; there were no ex-RNA associated with prevalent or incident coronary heart disease. Statistically significant ex-RNA associations with stroke were specific, with no overlap between prevalent and incident events. CONCLUSIONS: This is the largest study of ex-RNAs in relation to stroke using an unbiased approach in an observational cohort and the first large study to examine human small noncoding RNAs beyond miRNAs. These results demonstrate that when studied in a large observational cohort, extracellular miRNAs are associated with stroke risk.Source
Stroke. 2017 Apr;48(4):828-834 Epub 2017 Mar 13. Link to article on publisher's site
DOI
10.1161/STROKEAHA.116.015140Permanent Link to this Item
http://hdl.handle.net/20.500.14038/36713PubMed ID
28289238Related Resources
ae974a485f413a2113503eed53cd6c53
10.1161/STROKEAHA.116.015140