The Genome-Wide Analysis of Carcinoembryonic Antigen Signaling by Colorectal Cancer Cells Using RNA Sequencing
PLOS ONE
Authors: Bajenova, Olga; Gorbunova, Anna; Evsyukov, Igor; Rayko, Michael; Gapon, Svetlana; Bozhokina, Ekaterina; Shishkin, Alexander; O'Brien, Stephen J.
Abstract
Carcinoembryonic antigen (CEA, CEACAM5, CD66) is a promoter of metastasis in epithelial cancers that is widely used as a prognostic clinical marker of metastasis. The aim of this study is to identify the network of genes that are associated with CEA-induced colorectal cancer liver metastasis. We compared the genome-wide transcriptomic profiles of CEA positive (MIP101 clone 8) and CEA negative (MIP 101) colorectal cancer cell lines with different metastatic potential in vivo. The CEA-producing cells displayed quantitative changes in the level of expression for 100 genes (over-expressed or down-regulated). They were confirmed by quantitative RT-PCR. The KEGG pathway analysis identified 4 significantly enriched pathways: cytokine-cytokine receptor interaction, MAPK signaling pathway, TGFbeta signaling pathway and pyrimidine metabolism. Our results suggest that CEA production by colorectal cancer cells triggers colorectal cancer progression by inducing the epithelial-mesenchymal transition, increasing tumor cell invasiveness into the surrounding tissues and suppressing stress and apoptotic signaling. The novel gene expression distinctions establish the relationships between the existing cancer markers and implicate new potential biomarkers for colorectal cancer hepatic metastasis.
Preclinical evaluation of a novel CEA-targeting near-infrared fluorescent tracer delineating colorectal and pancreatic tumors
INTERNATIONAL JOURNAL OF CANCER
Authors: Boonstra, Martin C.; Tolner, Berend; Schaafsma, Boudewijn E.; Boogerd, Leonora S. F.; Prevoo, Hendrica A. J. M.; Bhavsar, Guarav; Kuppen, Peter J. K.; Sier, Cornelis F. M.; Bonsing, Bert A.; Frangioni, John V.; van de Velde, Cornelis J. H.; Chester, Kerry A.; Vahrmeijer, Alexander L.
Abstract
Surgery is the cornerstone of oncologic therapy with curative intent. However, identification of tumor cells in the resection margins is difficult, resulting in nonradical resections, increased cancer recurrence and subsequent decreased patient survival. Novel imaging techniques that aid in demarcating tumor margins during surgery are needed. Overexpression of carcinoembryonic antigen (CEA) is found in the majority of gastrointestinal carcinomas, including colorectal and pancreas. We developed ssSM3E/800CW, a novel CEA-targeted near-infrared fluorescent (NIRF) tracer, based on a disulfide-stabilized single-chain antibody fragment (ssScFv), to visualize colorectal and pancreatic tumors in a clinically translatable setting. The applicability of the tracer was tested for cell and tissue binding characteristics and dosing using immunohistochemistry, flow cytometry, cell-based plate assays and orthotopic colorectal (HT-29, well differentiated) and pancreatic (BXPC-3, poorly differentiated) xenogeneic human-mouse models. NIRF signals were visualized using the clinically compatible FLARE imaging system. Calculated clinically relevant doses of ssSM3E/800CW selectively accumulated in colorectal and pancreatic tumors/cells, with highest tumor-to-background ratios of 5.10.6 at 72 hr postinjection, which proved suitable for intraoperative detection and delineation of tumor boarders and small (residual) tumor nodules in mice, between 8 and 96 hr postinjection. Ex vivo fluorescence imaging and pathologic examination confirmed tumor specificity and the distribution of the tracer. Our results indicate that ssSM3E/800CW shows promise as a diagnostic tool to recognize colorectal and pancreatic cancers for fluorescent-guided surgery applications. If successfully translated clinically, this tracer could help improve the completeness of surgery and thus survival. What's new? The use of fluorescent tracers to identify cancerous cells at tumor margins could improve outcomes for surgery with curative intent. This study describes a newly developed near-infrared fluorescent tracer targeted to carcinoembryonic antigen (CEA), a glycoprotein overexpressed in gastrointestinal cancers. In mice, the fluorescent agent, ssSM3E/800CW, accumulated specifically in tumor cells, enabling the detection and delineation of tumor borders on a clinically relevant timescale. If successfully translated into the clinic, ssSM3E/800CW could facilitate the visualization of cancerous tissue and improve the completeness of surgical resection.