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Optimal Papanicolaou Smear Conditions for Manual Microdissection of Single Target Cells
Kaori Okayama1, Mao Kakinuma1, Saki Tajima1
1Department of Medical Technology, Faculty of Health Sciences, Gunma Paz University, 1-7-1 Tonyamachi, Takasaki-shi 370-0006, Gunma, Japan.
Abstract:
This study aimed to investigate the optimal conditions for Papanicolaou (Pap) smear to increase the success rate of target cell isolation through manual microdissection (MMD) and prevent cell spread. Pap smears were prepared using an HPV42-positive SurePath™ liquid-based cytology case, and 46 and 50 koilocytes were used in wet and dried Pap smears, respectively, to verify the success rate of target cell isolation using MMD based on the HPV detection rate. During MMD, the microscopic examination of both specimens revealed that cells in dried smears could be easily identified; however, cell debris remained in the surrounding area after MMD. Although it was difficult to observe cells in wet smears, there was no cell debris. When the needle tip was immersed in DNA lysate after cell isolation through MMD, a difference in cell solubility was found between dry and wet smears. HPV42 was detected in 94.7% and 97.4% of dried and wet Pap smears, respectively, via polymerase chain reaction genotyping using lysed cell solution; the detection rates were not significantly different. The isolation of target cells from wet Pap smears using MMD reduced the risk of contamination and increased the success rate of HPV detection. This study might facilitate the identification of new CIN-derived HPV-infected cells using MMD with wet Pap smears.
Insights
Wet Papanicolaou (Pap) smears improve manual microdissection (MMD) for isolating target cells and detecting human papillomavirus (HPV). This method reduces contamination and enhances HPV detection success rates for cervical cancer research.
Area of Science:
- Cytopathology
- Molecular Virology
- Cell Biology
Background:
- Papanicolaou (Pap) smears are crucial for cervical cancer screening.
- Manual microdissection (MMD) is a technique for isolating specific cells.
- Optimizing Pap smear preparation is key for accurate molecular analysis.
Purpose of the Study:
- To determine optimal Papanicolaou (Pap) smear conditions for manual microdissection (MMD).
- To enhance target cell isolation success rates and prevent cell spread.
- To improve human papillomavirus (HPV) detection rates using MMD.
Main Methods:
- Pap smears were prepared using HPV42-positive liquid-based cytology.
- Koilocytes were used in wet and dried Pap smears for MMD.
- HPV detection was performed via polymerase chain reaction (PCR) genotyping.
Main Results:
- Wet Pap smears showed no cell debris after MMD, unlike dried smears.
- HPV42 detection rates were high and not significantly different between wet (97.4%) and dried (94.7%) smears.
- Wet Pap smears facilitated target cell isolation with MMD, reducing contamination risk.
Conclusions:
- Isolating target cells from wet Pap smears using MMD increases HPV detection success.
- This technique may aid in identifying novel cervical intraepithelial neoplasia (CIN)-derived HPV-infected cells.
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