Please use this identifier to cite or link to this item: https://doi.org/10.1136/gutjnl-2020-320805
Title: Spatial profiling of gastric cancer patient-matched primary and locoregional metastases reveals principles of tumour dissemination
Authors: Sundar, Raghav
Liu, Drolaiz HW
Hutchins, Gordon GA
Slaney, Hayley L
Silva, Arnaldo NS
Oosting, Jan
Hayden, Jeremy D
Hewitt, Lindsay C
Ng, Cedric CY 
Mangalvedhekar, Amrita 
Ng, Sarah B
Tan, Iain BH
Tan, Patrick 
Grabsch, Heike I
Keywords: Science & Technology
Life Sciences & Biomedicine
Gastroenterology & Hepatology
GENOMIC HETEROGENEITY
GENETIC PROFILES
LYMPH-NODES
Issue Date: 1-Oct-2021
Publisher: BMJ PUBLISHING GROUP
Citation: Sundar, Raghav, Liu, Drolaiz HW, Hutchins, Gordon GA, Slaney, Hayley L, Silva, Arnaldo NS, Oosting, Jan, Hayden, Jeremy D, Hewitt, Lindsay C, Ng, Cedric CY, Mangalvedhekar, Amrita, Ng, Sarah B, Tan, Iain BH, Tan, Patrick, Grabsch, Heike I (2021-10-01). Spatial profiling of gastric cancer patient-matched primary and locoregional metastases reveals principles of tumour dissemination. GUT 70 (10) : 1823-1832. ScholarBank@NUS Repository. https://doi.org/10.1136/gutjnl-2020-320805
Abstract: Objective Endoscopic mucosal biopsies of primary gastric cancers (GCs) are used to guide diagnosis, biomarker testing and treatment. Spatial intratumoural heterogeneity (ITH) may influence biopsy-derived information. We aimed to study ITH of primary GCs and matched lymph node metastasis (LN met). Design GC resection samples were annotated to identify primary tumour superficial (PT sup), primary tumour deep (PT deep) and LN met subregions. For each subregion, we determined (1) transcriptomic profiles (NanoString 'PanCancer Progression Panel', 770 genes); (2) next-generation sequencing (NGS, 225 gastrointestinal cancer-related genes); (3) DNA copy number profiles by multiplex ligation-dependent probe amplification (MLPA, 16 genes); and (4) histomorphological phenotypes. Results NanoString profiling of 64 GCs revealed no differences between PT sup1 and PT sup2, while 43% of genes were differentially expressed between PT sup versus PT deep and 38% in PT sup versus LN met. Only 16% of genes were differently expressed between PT deep and LN met. Several genes with therapeutic potential (eg IGF1, PIK3CD and TGFB1) were overexpressed in LN met and PT deep compared with PT sup. NGS data revealed orthogonal support of NanoString results with 40% mutations present in PT deep and/or LN met, but not in PT sup. Conversely, only 6% of mutations were present in PT sup and were absent in PT deep and LN met. MLPA demonstrated significant ITH between subregions and progressive genomic changes from PT sup to PT deep /LN met. Conclusion In GC, regional lymph node metastases are likely to originate from deeper subregions of the primary tumour. Future clinical trials of novel targeted therapies must consider assessment of deeper subregions of the primary tumour and/or metastases as several therapeutically relevant genes are only mutated, overexpressed or amplified in these regions.
Source Title: GUT
URI: https://scholarbank.nus.edu.sg/handle/10635/206740
ISSN: 00175749
14683288
DOI: 10.1136/gutjnl-2020-320805
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