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优化染色体分散质量:细胞密度的关键作用。

Optimizing chromosome dispersion quality: the key role of cell density.

作者信息

Gao Chao-Xian, Li Li-Mei, Chen Yu-Ting, Guo Ying-Yan, Li Bo-Xin, Yang Xue-Qin, Hui Chang-Ye

机构信息

Pathology and Toxicology Institute, Shenzhen Prevention and Treatment Center for Occupational Diseases, Shenzhen, China.

出版信息

Front Cell Dev Biol. 2025 Jul 18;13:1636498. doi: 10.3389/fcell.2025.1636498. eCollection 2025.

Abstract

OBJECTIVE

This study aims to optimize metaphase dispersion in automated detection by quantitatively determining the optimal cell suspension density to enhance the accuracy and efficiency of chromosomal aberrations analysis.

METHODS

Lymphocyte metaphase suspensions were prepared using an automated harvesting system and subjected to a concentration gradient of 10-10 cells/mL. Metaphase images were captured using an automated chromosome scanning and analysis system, and cell density, suspension turbidity, metaphase counts, and dispersion area were measured to quantitatively assess the impact of cell density on metaphase dispersion quality. The practical application of turbidity-based density adjustment was further validated.

RESULTS

The study found that a cell density of 1.04 × 10 cells/mL and suspension turbidity of 0.21 McFarland (McF) yielded the preferred metaphase dispersion, sufficient metaphase counts, and maximum dispersion area, significantly reducing chromosome crossover and overlap. Turbidity adjustment enabled consistent dispersion effects across different initial densities, markedly improving the uniformity of metaphase dispersion.

CONCLUSION

This study innovatively established a turbidity-based cell density adjustment method, clarifying the impact of cell density on metaphase dispersion through quantitative means and providing standardized technical support for automated detection. This method effectively addresses the inconsistency in metaphase dispersion due to varying cell densities in automated detection, offering a significant basis for homogenizing detection results across laboratories and advancing the standardization and homogenization of chromosomal aberrations analysis techniques.

摘要

目的

本研究旨在通过定量确定最佳细胞悬液密度,优化自动检测中的中期分散,以提高染色体畸变分析的准确性和效率。

方法

使用自动收获系统制备淋巴细胞中期悬液,并使其浓度梯度为10 - 10个细胞/毫升。使用自动染色体扫描和分析系统采集中期图像,并测量细胞密度、悬液浊度、中期计数和分散面积,以定量评估细胞密度对中期分散质量的影响。进一步验证基于浊度的密度调整的实际应用。

结果

研究发现,细胞密度为1.04×10个细胞/毫升且悬液浊度为0.21麦氏(McF)时,可产生最佳的中期分散、足够的中期计数和最大的分散面积,显著减少染色体交叉和重叠。浊度调整可在不同初始密度下实现一致的分散效果,显著提高中期分散的均匀性。

结论

本研究创新性地建立了基于浊度的细胞密度调整方法,通过定量手段阐明了细胞密度对中期分散的影响,为自动检测提供了标准化技术支持。该方法有效解决了自动检测中因细胞密度不同导致的中期分散不一致问题,为跨实验室统一检测结果以及推进染色体畸变分析技术的标准化和同质化提供了重要依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/50d8/12313621/15a7bf19295c/fcell-13-1636498-g001.jpg

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