Effect of concentration, temperature, and time on the stability of hepatitis C virus nucleic acid in serum

Author:

Wang Ya-pei1,Yang Shu-wen23ORCID,Jia Fan1,Wang Wei1,Xu Xue34,Wang Yi-xuan23,Bi Jing-feng3ORCID,Li Bo-an1ORCID

Affiliation:

1. Laboratory Department, Fifth Medical Center of PLA General Hospital, Beijing, China

2. Grade 2022 Postgraduate Class, School of Pharmaceutical Sciences, Shandong University of Traditional Chinese Medicine, Jinan, China

3. Phase I Clinical Trial Ward, Senior Department of Infectious Diseases Medicine, Fifth Medical Center of PLA General Hospital, National Clinical Research Center for Infectious Diseases, Beijing, China

4. Grade 2021 Postgraduate Class, School of Pharmaceutical Sciences, Shandong University of Traditional Chinese Medicine, Jinan, China

Abstract

ABSTRACT To explore the influence of storage temperature and time on the stability of different concentrations of hepatitis C virus nucleic acid (HCV RNA) samples and to provide data reference for laboratory quality control. Serum samples of 10 patients with HCV RNA detection quantitation of 10 6 –10 8 IU/mL were collected. The samples of each patient were diluted into three concentrations: high, medium, and low. Then the samples of each concentration were divided into 21, which were divided into three groups according to the storage conditions of −20°C, 4°C, and 25°C, with seven samples in each group. The samples were selected from each group for quantitative detection of HCV RNA on day 0, day 1, day 3, day 5, day 7, day 14, and day 30. The results of each concentration and storage temperature sample remained stable within 5 days. Based on the mixed-effect linear model, the main effects of temperature, time, and concentration were statistically significant ( P < 0.01). There was an interaction effect between concentration and time ( P = 0.0448), and there was also an interaction effect between temperature and time ( P < 0.01). There was no interaction effect between concentration and temperature ( P = 0.11) or between concentration, temperature, and time ( P = 0.90). The results of serum samples with different concentrations of the HCV RNA remained stable within 5 days. The lower the initial concentration of HCV RNA serum sample, the worse the stability; the higher the storage temperature, the worse the stability. If conditions permit, the laboratory should store such samples at −20°C. IMPORTANCE Previously, there were few reports about the influence of different concentrations of sample nucleic acid on the stability of samples at various temperatures and times in various literatures. Therefore, it is necessary to analyze the influence of concentration factors on the stability of samples and test results at different storage times and temperatures. This study took the concentration of hepatitis C virus nucleic acid as the research object to further understand the stability of hepatitis C virus nucleic acid test samples under various storage conditions, to provide data reference for the treatment of hepatitis C virus nucleic acid and RNA test samples before clinical laboratory test, and provide guidance and help for the improvement of laboratory quality control.

Publisher

American Society for Microbiology

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