Snoddy Erin P, Tang Tien T, Fowlkes Natalie, Huynh Thomas, Brewer Savannah Kari J, Contreras Alejandro, Reece Gregory, Brock Kristy K
Department of Imaging Physics, The University of Texas MD Anderson Cancer Center, Houston, TX.
Department of Veterinary Medicine and Surgery, The University of Texas MD Anderson Cancer Center, Houston, TX.
medRxiv. 2024 Dec 22:2024.12.20.24319432. doi: 10.1101/2024.12.20.24319432.
Hematoxylin and eosin (H&E) staining is widely considered to be the gold-standard diagnostic tool for histopathology evaluation. However, the fatty nature of some tissue types, such as breast tissue, presents challenges with cryo-sectioning, often resulting in artifacts that can make histopathologic interpretation and correlation with other imaging modalities virtually impossible. We present an optimized on-block H&E staining technique that improves contrast for identifying collagenous stroma during cryo-fluorescence tomography (CFT) sectioning.
In this prospective study, we embedded four breast specimens with confirmed ligaments from a bilateral mastopexy in an optimal cutting temperature block. Two of the samples were processed on a CFT imager and stained with our on-block staining protocol. In this protocol, hematoxylin was applied to the block face before being washed with deionized water. Eosin was then applied and washed with 95% ethanol. We then applied mounting medium and acquired images with a stereo-dissecting microscope and camera. Prior to staining, GFP fluorescence and white-light images were acquired with the CFT system to serve as a validation metric. The other two samples were sectioned on a standard cryostat and stained according to gold-standard H&E protocol. The resulting microscope slides were imaged with a digital slide scanner and viewed with Leica Imagescope software. An experienced pathologist evaluated both sets of images for qualitative comparisons.
Pathologist evaluation confirmed that striations from on-block staining were qualitatively comparable with collagen tracks identified in gold-standard histology images. Furthermore, GFP images captured collagen autofluorescence, which aligned with the same structures identified by our on-block staining protocol.
Our on-block staining technique shows comparable visualization of collagenous structures at the mesoscopic level for fresh breast tissue samples. This technique improves tissue contrast and region of interest selection for histology during CFT imaging for analysis of the stromal architecture of the breast.
苏木精和伊红(H&E)染色被广泛认为是组织病理学评估的金标准诊断工具。然而,某些组织类型(如乳腺组织)的脂肪性质给冷冻切片带来了挑战,常常导致伪像,使得组织病理学解释以及与其他成像方式的关联几乎无法实现。我们提出了一种优化的块面H&E染色技术,该技术可在冷冻荧光断层扫描(CFT)切片过程中提高识别胶原性基质的对比度。
在这项前瞻性研究中,我们将来自双侧乳房上提术且已确认有韧带的四个乳腺标本嵌入最佳切割温度包埋块中。其中两个样本在CFT成像仪上进行处理,并按照我们的块面染色方案进行染色。在该方案中,先用苏木精处理包埋块表面,然后用去离子水冲洗。接着应用伊红并用95%乙醇冲洗。然后我们应用封片剂,并用体视解剖显微镜和相机采集图像。在染色前,用CFT系统采集绿色荧光蛋白(GFP)荧光和白光图像,作为验证指标。另外两个样本在标准低温恒温器上切片,并按照金标准H&E方案进行染色。将所得的显微镜载玻片用数字载玻片扫描仪成像,并用徕卡图像观察软件进行查看。一位经验丰富的病理学家对两组图像进行评估以进行定性比较。
病理学家评估证实,块面染色的条纹在质量上与金标准组织学图像中识别出的胶原轨迹相当。此外,GFP图像捕捉到了胶原自发荧光,这与我们的块面染色方案识别出的相同结构一致。
我们的块面染色技术在介观水平上对新鲜乳腺组织样本的胶原结构显示出可比的可视化效果。该技术在CFT成像分析乳腺基质结构的组织学过程中提高了组织对比度和感兴趣区域的选择。