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Circulating microRNAs as stable blood-based markers for cancer detection

Proceedings of the National Academy of Sciences · 2008 · Vol. 105(30) · pp. 10513–10518
Patrick S. MitchellRachael K. ParkinEvan M. KrohBrian R. FritzStacia K. WymanEra L. Pogosova‐AgadjanyanAmelia C. PetersonJennifer NoteboomKathy O'BriantApril N. AllenDaniel W. LinNicole UrbanCharles W. DrescherBeatrice S. KnudsenDerek L. StirewaltRobert GentlemanRobert L. VessellaPeter S. NelsonDaniel MartinMuneesh Tewari

Abstract

Improved approaches for the detection of common epithelial malignancies are urgently needed to reduce the worldwide morbidity and mortality caused by cancer. MicroRNAs (miRNAs) are small ( approximately 22 nt) regulatory RNAs that are frequently dysregulated in cancer and have shown promise as tissue-based markers for cancer classification and prognostication. We show here that miRNAs are present in human plasma in a remarkably stable form that is protected from endogenous RNase activity. miRNAs originating from human prostate cancer xenografts enter the circulation, are readily measured in plasma, and can robustly distinguish xenografted mice from controls. This concept extends to cancer in humans, where serum levels of miR-141 (a miRNA expressed in prostate cancer) can distinguish patients with prostate cancer from healthy controls. Our results establish the measurement of tumor-derived miRNAs in serum or plasma as an important approach for the blood-based detection of human cancer.

MicroRNA in disease regulationCancer-related molecular mechanisms researchCircular RNAs in diseasesProstate cancermicroRNACancerCancer biomarkersBiologyCancer researchComputational biologyBioinformaticsInternal medicineOncology

MeSH terms

AnimalsCloning, MolecularHumansMaleNeoplasm TransplantationNeoplasmsProstatic NeoplasmsRibonucleasesRNA, NeoplasmSensitivity and SpecificityBiomarkers, TumorGene Expression Regulation, NeoplasticGene Expression ProfilingMicroRNAsMice

Funding

  • Fondation pour la Recherche Médicale
  • National Cancer Institute
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