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THE INTRA-ASSAY PRECISION AND TIME STABILITY OF QUANTITATIVE βIII-TUBULIN EXPRESSION ASSESSMENT IN SOLID TUMOR TISSUE
Author(s) -
А. А. Башарина,
Т. А. Богуш,
Е. А. Рукавишникова,
Е. А. Богуш,
С. А. Калюжный,
Н О Вихлянцева,
В. С. Косоруков
Publication year - 2020
Publication title -
rossijskij bioterapevtičeskij žurnal
Language(s) - English
Resource type - Journals
eISSN - 1726-9792
pISSN - 1726-9784
DOI - 10.17650/1726-9784-2020-19-3-52-56
Subject(s) - flow cytometry , immunofluorescence , staining , coefficient of variation , pathology , cytometry , antibody , biomedical engineering , microbiology and biotechnology , chemistry , biology , medicine , chromatography , immunology
. The introducing of tumor molecular profiling into clinical practice has revealed the need for development of new analytical methods for estimating marker expression in solid tumors, as routinely used method of immunohistochemistry has a number of significant drawbacks. Objective. Analytical validation of immunofluorescence staining and flow cytometry method developed by the authors for the examination of tumor protein markers in the solid tumors tissue. Materials and methods. Method validation was carried out by quantitative estimation of βIII-tubulin (TUBB3) expression in single-cell suspensions of non-small-cell lung cancer obtained from surgical tumor samples. Primary antibodies to TUBB3 (ab7751) and secondary DyLight 650-conjugated antibodies (ab98729) were used for immunofluorescent staining. The «Navios» flow cytometer (Beckman Coulter) was used to measure the fluorescence. The validation parameters were assessed by the coefficient of variation calculated as the ratio of standard deviation of TUBB3 level to its mean value. Results. Two parameters were analyzed: intra-assay precision and time stability of the results of the TUBB3 expression assessment. It was demonstrated that the mean coefficients of variation of the marker expression level in the tumor tissue did not exceed 20 % for both parameters. According to recommendations on the analytical validation of methods based on flow cytometry, it proves the validity of the method for these parameters. Conclusions. The intra-assay precision and time stability were demonstrated for the results of a quantitative estimation of TUBB3 expression in solid tumor tissue using immunofluorescence staining and flow cytometry method developed by the authors. The practical value of the time stability of immunofluorescence stain during 24 h storage of a stained cells suspension in the dark at 4 °C was highlighted. It shows the possibility of adjusting the time interval between completion of the analytical study part and flow cytometer measurement.

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