Please use this identifier to cite or link to this item: doi:10.22028/D291-36696
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Title: Technical Stability and Biological Variability in MicroRNAs from Dried Blood Spots : A Lung Cancer Therapy-Monitoring Showcase
Author(s): Kahraman, Mustafa
Laufer, Thomas
Backes, Christina
Schrörs, Hannah
Fehlmann, Tobias
Ludwig, Nicole
Kohlhaas, Jochen
Meese, Eckart
Wehler, Thomas
Bals, Robert
Keller, Andreas
Language: English
Title: Clinical Chemistry
Volume: 63
Issue: 9
Pages: 1476–1488
Publisher/Platform: Oxford University Press
Year of Publication: 2017
DDC notations: 610 Medicine and health
Publikation type: Journal Article
Abstract: BACKGROUND: Different work flows have been proposed to use miRNAs as blood-borne biomarkers. In particular, the method used for collecting blood from patients can considerably influence the diagnostic results. METHODS: We explored whether dried blood spots (DBSs) facilitate stable miRNA measurements and compared its technical stability with biological variability. First, we tested the stability of DBS samples by generating from 1 person 18 whole-genome-wide miRNA profiles of DBS samples that were exposed to different temperature and humidity conditions. Second, we investigated technical reproducibility by performing 7 replicates of DBS again from 1 person. Third, we investigated DBS samples from 53 patients with lung cancer undergoing different therapies. Across these 3 stages, 108 genome-wide miRNA profiles from DBS were generated and evaluated biostatistically. RESULTS: In the stability analysis, we observed that temperature and humidity had an overall limited influence on the miRNomes (average correlation between the different conditions of 0.993). Usage of a silica gel slightly diminished DBS’ technical reproducibility. The 7 technical replicates had an average correlation of 0.996. The correlation with whole-blood PAXGene miRNomes of the same individual was remarkable (correlation of 0.88). Finally, evaluation of the samples from the 53 patients with lung cancer exposed to different therapies showed that the biological variations exceeded the technical variability significantly (P 0.0001), yielding 51 dysregulated miRNAs. CONCLUSIONS: We present a stable work flow for profiling of whole miRNomes on the basis of samples collected from DBS. Biological variations exceeded technical variations significantly. DBS-based miRNA profiles will potentially further the translational character of miRNA biomarker studies.
DOI of the first publication: 10.1373/clinchem.2017.271619
URL of the first publication: https://academic.oup.com/clinchem/article/63/9/1476/5612652
Link to this record: urn:nbn:de:bsz:291--ds-366961
hdl:20.500.11880/33340
http://dx.doi.org/10.22028/D291-36696
ISSN: 1530-8561
0009-9147
Date of registration: 7-Jul-2022
Faculty: M - Medizinische Fakultät
Department: M - Humangenetik
M - Innere Medizin
M - Medizinische Biometrie, Epidemiologie und medizinische Informatik
Professorship: M - Prof. Dr. Robert Bals
M - Univ.-Prof. Dr. Andreas Keller
M - Prof. Dr. Eckhart Meese
Collections:SciDok - Der Wissenschaftsserver der Universität des Saarlandes

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