Suppr超能文献

肿瘤球体中蛋白质的原位表达:共聚焦显微镜免疫染色方案的开发。

In situ protein expression in tumour spheres: development of an immunostaining protocol for confocal microscopy.

机构信息

IFR71 Sciences du Médicament, Faculté des Sciences Pharmaceutiques et Biologiques, Université Paris Descartes, Paris, France.

出版信息

BMC Cancer. 2010 Mar 22;10:106. doi: 10.1186/1471-2407-10-106.

Abstract

BACKGROUND

Multicellular tumour sphere models have been shown to closely mimic phenotype characteristics of in vivo solid tumours, or to allow in vitro propagation of cancer stem cells (CSCs). CSCs are usually characterized by the expression of specific membrane markers using flow cytometry (FC) after enzymatic dissociation. Consequently, the spatial location of positive cells within spheres is not documented. Confocal microscopy is the best technique for the imaging of thick biological specimens after multi-labelling but suffers from poor antibody penetration. Thus, we describe here a new protocol for in situ confocal imaging of protein expression in intact spheroids.

METHODS

Protein expression in whole spheroids (150 mum in diameter) from two human colon cancer cell lines, HT29 and CT320X6, has been investigated with confocal immunostaining, then compared with profiles obtained through paraffin immunohistochemistry (pIHC) and FC. Target antigens, relevant for colon cancer and with different expression patterns, have been studied.

RESULTS

We first demonstrate that our procedure overcomes the well-known problem of antibody penetration in compact structures by performing immunostaining of EpCAM, a membrane protein expressed by all cells within our spheroids. EpCAM expression is detected in all cells, even the deepest ones. Likewise, antibody access is confirmed with CK20 and CD44 immunostaining. Confocal imaging shows that 100% of cells express beta-catenin, mainly present in the plasma membrane with also cytoplasmic and nuclear staining, in agreement with FC and pIHC data. pIHC and confocal imaging show similar CA 19-9 cytoplasmic and membranar expression profile in a cell subpopulation. CA 19-9+ cell count confirms confocal imaging as a highly sensitive method (75%, 62% and 51%, for FC, confocal imaging and pIHC, respectively). Finally, confocal imaging reveals that the weak expression of CD133, a putative colon CSC marker, is restricted to the luminal cell surface of colorectal cancer acini, with CD133+ cellular debris into glandular lumina.

CONCLUSION

The present protocol enables in situ visualization of protein expression in compact three-dimensional models by whole mount confocal imaging, allowing the accurate localization and quantification of cells expressing specific markers. It should prove useful to study rare events like CSCs within tumour spheres.

摘要

背景

多细胞肿瘤球体模型已被证明能够很好地模拟体内实体肿瘤的表型特征,或者能够在体外增殖癌症干细胞(CSC)。CSC 通常通过酶解后流式细胞术(FC)检测到特定的膜标记物来表征。因此,阳性细胞在球体中的空间位置没有记录。共聚焦显微镜是对多标记后的厚生物标本进行成像的最佳技术,但抗穿透性差。因此,我们在这里描述了一种用于在完整球体中对蛋白质表达进行原位共聚焦成像的新方案。

方法

使用共聚焦免疫染色研究了来自两种人结肠癌细胞系 HT29 和 CT320X6 的整个球体(直径 150 微米)中的蛋白质表达,然后将其与通过石蜡免疫组织化学(pIHC)和 FC 获得的图谱进行比较。研究了与结肠癌相关且表达模式不同的靶抗原。

结果

我们首先证明,通过对 EpCAM 进行免疫染色,我们的方法克服了在致密结构中抗体穿透的已知问题,EpCAM 是我们球体中所有细胞表达的一种膜蛋白。EpCAM 表达可在所有细胞中检测到,甚至在最深的细胞中也可检测到。同样,通过 CK20 和 CD44 免疫染色证实了抗体的可及性。共聚焦成像显示,β-连环蛋白在 100%的细胞中表达,主要存在于质膜中,也存在细胞质和核染色,与 FC 和 pIHC 数据一致。pIHC 和共聚焦成像显示,在细胞亚群中,CA19-9 的细胞质和膜表达谱相似。CA19-9+细胞计数证实共聚焦成像为一种高度敏感的方法(FC、共聚焦成像和 pIHC 分别为 75%、62%和 51%)。最后,共聚焦成像显示,CD133 是一种假定的结肠癌 CSC 标志物,其弱表达仅限于结直肠癌细胞腺腔的腔表面,CD133+细胞碎片进入腺腔。

结论

本方案通过整体共聚焦成像实现了对致密三维模型中蛋白质表达的原位可视化,允许对表达特定标记物的细胞进行精确定位和定量。它应该有助于研究肿瘤球体中罕见的事件,如 CSC。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bc8c/2851689/3f4c5231f3f1/1471-2407-10-106-1.jpg

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验