Epidemiology Program, School of Public Health, Ponce Health Sciences University-Ponce Research Institute, Ponce, Puerto Rico.
Biochemistry and Cancer Biology Divisions, Ponce Health Sciences University-Ponce Research Institute, Ponce, Puerto Rico.
Methods Mol Biol. 2021;2279:59-73. doi: 10.1007/978-1-0716-1278-1_6.
In an era of precision medicine important treatment decisions are dictated by expression of clinically informative tumor protein biomarkers. These biomarkers can be detected by immunohistochemistry (IHC) performed in tumor tissue sections obtained from biopsies or resections. Like all experimental procedures, IHC needs optimization for several of its steps. However, the investigator must avoid optimizing the IHC procedure using valuable human biopsy samples which may be difficult to obtain. Ideally, valuable biopsy samples should only be subjected to IHC once the IHC protocol has been optimized. In this chapter, we describe a procedure for IHC optimization using tri-dimensional (3D) cellular spheroids created from cultured cells. In this approach, cultured cells are pelleted into 3D spheroids, which are then processed just like a tissue sample, namely, fixed, embedded, sectioned, mounted on slides, and stained with IHC just like a human tissue sample. These 3D cellular spheroids have a tissue-like architecture and cellularity resembling a tumor section, and both cellular and antigen structure are preserved. This method is therefore acceptable for IHC optimization before proceeding to the IHC staining of human tumor samples.
在精准医学时代,重要的治疗决策取决于临床有意义的肿瘤蛋白生物标志物的表达。这些生物标志物可以通过免疫组织化学(IHC)检测从活检或切除获得的肿瘤组织切片中检测到。与所有实验程序一样,IHC 需要对其几个步骤进行优化。然而,研究人员必须避免使用有价值的人类活检样本来优化 IHC 程序,因为这些样本可能难以获得。理想情况下,只有在优化了 IHC 方案后,才应对有价值的活检样本进行 IHC。在本章中,我们描述了一种使用三维(3D)细胞球体进行 IHC 优化的程序,该程序是由培养的细胞制成的。在这种方法中,培养的细胞被沉淀成 3D 球体,然后像组织样本一样进行处理,即固定、包埋、切片、载玻片上,并像人类组织样本一样进行 IHC 染色。这些 3D 细胞球体具有类似于组织的结构和类似于肿瘤切片的细胞密度,并且细胞和抗原结构都得到了保留。因此,该方法可用于在对人类肿瘤样本进行 IHC 染色之前进行 IHC 优化。