Gracia Villacampa Eva, Larsson Ludvig, Mirzazadeh Reza, Kvastad Linda, Andersson Alma, Mollbrink Annelie, Kokaraki Georgia, Monteil Vanessa, Schultz Niklas, Appelberg Karin Sofia, Montserrat Nuria, Zhang Haibo, Penninger Josef M, Miesbach Wolfgang, Mirazimi Ali, Carlson Joseph, Lundeberg Joakim
Department of Gene Technology, School of Engineering Sciences in Chemistry, Biotechnology and Health, KTH Royal Institute of Technology, Science for Life Laboratory, 17165 Stockholm, Sweden.
Department of Oncology-Pathology, Karolinska Institute, 17176 Stockholm, Sweden.
Cell Genom. 2021 Dec 8;1(3):100065. doi: 10.1016/j.xgen.2021.100065.
Formalin-fixed paraffin embedding (FFPE) is the most widespread long-term tissue preservation approach. Here, we report a procedure to perform genome-wide spatial analysis of mRNA in FFPE-fixed tissue sections, using well-established, commercially available methods for imaging and spatial barcoding using slides spotted with barcoded oligo(dT) probes to capture the 3' end of mRNA molecules in tissue sections. We applied this method for expression profiling and cell type mapping in coronal sections from the mouse brain to demonstrate the method's capability to delineate anatomical regions from a molecular perspective. We also profiled the spatial composition of transcriptomic signatures in two ovarian carcinosarcoma samples, exemplifying the method's potential to elucidate molecular mechanisms in heterogeneous clinical samples. Finally, we demonstrate the applicability of the assay to characterize human lung and kidney organoids and a human lung biopsy specimen infected with SARS-CoV-2. We anticipate that genome-wide spatial gene expression profiling in FFPE biospecimens will be used for retrospective analysis of biobank samples, which will facilitate longitudinal studies of biological processes and biomarker discovery.
福尔马林固定石蜡包埋(FFPE)是最广泛应用的长期组织保存方法。在此,我们报告一种在FFPE固定的组织切片中对mRNA进行全基因组空间分析的方法,该方法使用成熟的、市售的成像和空间条形码技术,通过用条形码寡聚(dT)探针点样的玻片来捕获组织切片中mRNA分子的3'端。我们将此方法应用于小鼠大脑冠状切片的表达谱分析和细胞类型图谱绘制,以从分子角度展示该方法描绘解剖区域的能力。我们还分析了两个卵巢癌肉瘤样本中转录组特征的空间组成,例证了该方法在阐明异质性临床样本分子机制方面的潜力。最后,我们证明了该检测方法可用于表征人肺和肾类器官以及感染了SARS-CoV-2的人肺活检标本。我们预计,FFPE生物样本中的全基因组空间基因表达谱分析将用于生物样本库样本的回顾性分析,这将有助于对生物过程进行纵向研究和发现生物标志物。