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Effects of the Storage Solution Type and Prolonged Storage on the Immunoreactivity of Cells
Katsuhide Ikeda1, Shouichi Sato2, Hiroshi Chigira3
1Department of Medical Technology and Sciences, School of Health Sciences at Narita, International University of Health and Welfare, Narita, Japan, katsuhide-ikeda@umin.net.
Insights
Immunocytochemistry (ICC) accuracy in effusion cytology is significantly impacted by the storage solution and duration. Storing samples in solutions other than physiological saline (PS) or for extended periods reduces ICC reactivity and diagnostic accuracy.
Area of Science:
- Cytopathology
- Immunohistochemistry
- Diagnostic Cytology
Background:
- Immunocytochemistry (ICC) is crucial for diagnosing effusions.
- The impact of various washing solutions on ICC reactivity in cytology is not well understood.
- This study investigates how different storage solutions affect ICC in cytological samples.
Purpose of the Study:
- To evaluate the effect of different storage solutions on immunocytochemical reactivity in effusion cytology.
- To determine the optimal storage conditions for preserving ICC markers in cytological specimens.
- To assess the impact of storage duration on ICC results.
Main Methods:
- Cell block specimens from ascites and pleural effusions were used.
- Samples were stored in various solutions (physiological saline, Ringer, dextran, Voluven, Mixid L, RPMI-1640, horse serum) at 4°C.
- Immunocytochemical staining was performed at multiple time points (0-14 days), with results compared to a 1-hour standard.
Main Results:
- ICC reactivity decreased over time for most solutions.
- Solutions other than physiological saline showed reduced reactivity compared to the 1-hour standard.
- Storage duration significantly impacted the accuracy of ICC results.
Conclusions:
- Washing solutions and prolonged storage alter immunocytochemistry results in effusion cytology.
- The accuracy of ICC is compromised when using washing solutions or storing samples long-term.
- Careful consideration of storage solutions and time is essential for reliable ICC interpretation in cytology.
Introduction:
In effusion cytology, immunocytochemistry is a useful staining approach to provide important information for diagnosis. Effusion cytology is performed not only for pleural effusions and ascites but also for peritoneal and needle washing from fine needle aspirations or instruments. Although various solutions are used for washing cytology, the effect of the solution type on immunocytochemical reactivity is not fully understood. In this study, we examined the immunocytochemical reactivity of cytological samples after storage in various solutions.
Methods:
Cell block specimens were obtained from ascites of patients with peritoneal cancer and pleural effusions of patients with diffuse malignant mesothelioma. Various solutions, including physiological saline (PS), Ringer solution, a low-molecular-weight dextran L injection, Voluven 6% solution, Mixid L injection, RPMI-1640 medium, and horse serum were added to the sediment layers of aliquots. All samples were kept at 4°C, and aliquots were subsequently processed at specific time points (0, 1, 2, 4, 7, and 14 days). Formalin-fixed, paraffin-embedded, cell block samples were prepared for immunocytochemical staining. Immunocytochemical results were analyzed for differences in the percentages of positive cells, using the effusion sample stored for 1 h as standard (100%).
Results:
For all solutions other than PS, the median and central 50% of values were <100% (with respect to the effusion sample as a standard) after 1 h of storage. Immunoreactivity decreased for most solutions as time progressed.
Conclusion:
Of note, immunocytochemistry results obtained using a washing solution are different from those using an effusion sample. For cytology, when a washing solution was used or when a sample was stored for a long time, the accuracy of the immunocytochemical results was low.
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