Suppr超能文献

自动化Cellient(™)细胞块:更好、更强、更快?

Automated Cellient(™) cytoblocks: better, stronger, faster?

作者信息

Prendeville S, Brosnan T, Browne T J, McCarthy J

机构信息

Department of Cytopathology, Cork University Hospital, Wilton, Cork, Ireland.

出版信息

Cytopathology. 2014 Dec;25(6):372-80. doi: 10.1111/cyt.12159. Epub 2014 Jun 18.

Abstract

OBJECTIVE

Cytoblocks (CBs), or cell blocks, provide additional morphological detail and a platform for immunocytochemistry (ICC) in cytopathology. The Cellient(™) system produces CBs in 45 minutes using methanol fixation, compared with traditional CBs, which require overnight formalin fixation. This study compares Cellient and traditional CB methods in terms of cellularity, morphology and immunoreactivity, evaluates the potential to add formalin fixation to the Cellient method for ICC studies and determines the optimal sectioning depth for maximal cellularity in Cellient CBs.

METHODS

One hundred and sixty CBs were prepared from 40 cytology samples (32 malignant, eight benign) using four processing methods: (A) traditional; (B) Cellient (methanol fixation); (C) Cellient using additional formalin fixation for 30 minutes; (D) Cellient using additional formalin fixation for 60 minutes. Haematoxylin and eosin-stained sections were assessed for cellularity and morphology. ICC was assessed on 14 cases with a panel of antibodies. Three additional Cellient samples were serially sectioned to determine the optimal sectioning depth. Scoring was performed by two independent, blinded reviewers.

RESULTS

For malignant cases, morphology was superior with Cellient relative to traditional CBs (P < 0.001). Cellularity was comparable across all methods. ICC was excellent in all groups and the addition of formalin at any stage during the Cellient process did not influence the staining quality. Serial sectioning through Cellient CBs showed optimum cellularity at 30-40 μm with at least 27 sections obtainable.

CONCLUSIONS

Cellient CBs provide superior morphology to traditional CBs and, if required, formalin fixation may be added to the Cellient process for ICC. Optimal Cellient CB cellularity is achieved at 30-40 μm, which will impact on the handling of cases in daily practice.

摘要

目的

细胞块(CBs),即细胞团块,在细胞病理学中可提供额外的形态学细节,并为免疫细胞化学(ICC)提供一个平台。与需要过夜福尔马林固定的传统细胞块相比,Cellient™系统使用甲醇固定在45分钟内即可制备细胞块。本研究比较了Cellient法和传统方法在细胞数量、形态和免疫反应性方面的差异,评估了在Cellient法中添加福尔马林固定用于ICC研究的可能性,并确定了Cellient细胞块中实现最大细胞数量的最佳切片深度。

方法

使用四种处理方法从40份细胞学样本(32份恶性,8份良性)制备160个细胞块:(A)传统方法;(B)Cellient法(甲醇固定);(C)Cellient法并额外进行30分钟福尔马林固定;(D)Cellient法并额外进行60分钟福尔马林固定。对苏木精和伊红染色切片的细胞数量和形态进行评估。对14例病例使用一组抗体进行ICC评估。对另外3个Cellient样本进行连续切片以确定最佳切片深度。由两名独立的、不知情的审阅者进行评分。

结果

对于恶性病例,相对于传统细胞块,Cellient法的形态更佳(P < 0.001)。所有方法的细胞数量相当。所有组的ICC效果均良好,在Cellient过程中的任何阶段添加福尔马林均不影响染色质量。对Cellient细胞块进行连续切片显示,在30 - 40μm时细胞数量最佳,可获得至少27个切片。

结论

Cellient细胞块比传统细胞块具有更优的形态,并且如果需要,可在Cellient过程中添加福尔马林固定用于ICC。Cellient细胞块在30 - 40μm时可实现最佳细胞数量,这将对日常实践中的病例处理产生影响。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验