Implications of Storing Urinary DNA from Different Populations for Molecular Analyses
Open Access
- 10 September 2009
- journal article
- research article
- Published by Public Library of Science (PLoS) in PLOS ONE
- Vol. 4 (9) , e6985
- https://doi.org/10.1371/journal.pone.0006985
Abstract
Molecular diagnosis using urine is established for many sexually transmitted diseases and is increasingly used to diagnose tumours and other infectious diseases. Storage of urine prior to analysis, whether due to home collection or bio-banking, is increasingly advocated yet no best practice has emerged. Here, we examined the stability of DNA in stored urine in two populations over 28 days. Urine from 40 (20 male) healthy volunteers from two populations, Italy and Zambia, was stored at four different temperatures (RT, 4°C, −20°C & −80°C) with and without EDTA preservative solution. Urines were extracted at days 0, 1, 3, 7 and 28 after storage. Human DNA content was measured using multi-copy (ALU J) and single copy (TLR2) targets by quantitative real-time PCR. Zambian and Italian samples contained comparable DNA quantity at time zero. Generally, two trends were observed during storage; no degradation, or rapid degradation from days 0 to 7 followed by little further degradation to 28 days. The biphasic degradation was always observed in Zambia regardless of storage conditions, but only twice in Italy. Site-specific differences in urine composition significantly affect the stability of DNA during storage. Assessing the quality of stored urine for molecular analysis, by using the type of strategy described here, is paramount before these samples are used for molecular prognostic monitoring, genetic analyses and disease diagnosis.Keywords
This publication has 31 references indexed in Scilit:
- The MIQE Guidelines: Minimum Information for Publication of Quantitative Real-Time PCR ExperimentsClinical Chemistry, 2009
- Stability of Trichomonas vaginalis DNA in Urine SpecimensJournal of Clinical Microbiology, 2008
- Differential susceptibility of PCR reactions to inhibitors: an important and unrecognised phenomenonBMC Research Notes, 2008
- Quantitative Detection of Promoter Hypermethylation as a Biomarker of Acute Kidney Injury During TransplantationPublished by Elsevier ,2006
- Blood and urine samples as useful sources for the direct detection of tuberculosis by polymerase chain reactionDiagnostic Microbiology and Infectious Disease, 2006
- PCR-based detection of the Mycobacterium tuberculosis complex in urine of HIV-infected and uninfected pulmonary and extrapulmonary tuberculosis patients in Burkina FasoJournal of Medical Microbiology, 2005
- Detection of Promoter Hypermethylation of Tumor Suppressor Genes in Urine from Kidney Cancer PatientsAnnals of the New York Academy of Sciences, 2004
- Eutectic Phases in Ice Facilitate Nonenzymatic Nucleic Acid SynthesisAstrobiology, 2001
- Detection ofMycobacterium tuberculosisby PCR analysis of urine and other clinical samples from AIDS and non-HIV-infected patientsMolecular and Cellular Probes, 1997
- DNA typing of urine samples following several years of storageInternational journal of legal medicine, 1993