A systematic approach to therapeutic target selection in oesophago-gastric cancer
File(s)paterson et al gut.doc (319 KB)
Accepted version
Author(s)
Type
Journal Article
Abstract
PDF
Upper GI cancer
Original article
A systematic approach to therapeutic target selection in oesophago-gastric cancer
Free
Anna L Paterson1, Nicholas B Shannon1, Pierre Lao-Sirieix1, Chin-Ann J Ong1, Christopher J Peters1, Maria O'Donovan1,2, Rebecca C Fitzgerald1
Author affiliations
Abstract
Objective The success of personalised therapy depends on identification and inhibition of the oncogene(s) on which that tumour is dependent. We aimed to determine whether a receptor tyrosine kinase (RTK) array could be used to select the most effective therapeutic strategies in molecularly heterogeneous oesophago-gastric adenocarcinomas.
Design Gene expression profiling from oesophago-gastric tumours (n=75) and preinvasive stages (n=57) identified the active signalling pathways, which was confirmed using immunohistochemistry (n=434). RTK arrays on a cell line panel (n=14) determined therapeutic targets for in vitro cytotoxic testing. Feasibility of this personalised approach was tested in tumour samples (n=46).
Results MAPK was the most frequently activated pathway (32/75 samples (42.7%)) with progressive enrichment in preinvasive disease stages (p<0.05) and ERK phosphorylation in 148/434 (34.3%) independent samples. Cell lines displayed a range of RTK activation profiles. When no RTKs were activated, tyrosine kinase inhibitors (TKIs) and a Mek inhibitor were not useful (MKN1). In lines with a dominant phosphorylated RTK (OE19, MKN45 and KATOIII), selection of this TKI or Mek in nM concentrations induced cytotoxicity and inhibited Erk and Akt phosphorylation. In cells lines with complex activation profiles (HSC39 and OE33), a combination of TKIs or Mek inhibition (in nM concentrations) was necessary for cytotoxicity and inhibition of Erk and Akt phosphorylation. Human tumours demonstrated diverse activation profiles and 65% of cases had two or more active RTKs.
Conclusions The MAPK pathway is commonly activated in oesophago-gastric cancer following activation of a variety of RTKs. Molecular phenotyping can inform a rational choice of targeted therapy.
Upper GI cancer
Original article
A systematic approach to therapeutic target selection in oesophago-gastric cancer
Free
Anna L Paterson1, Nicholas B Shannon1, Pierre Lao-Sirieix1, Chin-Ann J Ong1, Christopher J Peters1, Maria O'Donovan1,2, Rebecca C Fitzgerald1
Author affiliations
Abstract
Objective The success of personalised therapy depends on identification and inhibition of the oncogene(s) on which that tumour is dependent. We aimed to determine whether a receptor tyrosine kinase (RTK) array could be used to select the most effective therapeutic strategies in molecularly heterogeneous oesophago-gastric adenocarcinomas.
Design Gene expression profiling from oesophago-gastric tumours (n=75) and preinvasive stages (n=57) identified the active signalling pathways, which was confirmed using immunohistochemistry (n=434). RTK arrays on a cell line panel (n=14) determined therapeutic targets for in vitro cytotoxic testing. Feasibility of this personalised approach was tested in tumour samples (n=46).
Results MAPK was the most frequently activated pathway (32/75 samples (42.7%)) with progressive enrichment in preinvasive disease stages (p<0.05) and ERK phosphorylation in 148/434 (34.3%) independent samples. Cell lines displayed a range of RTK activation profiles. When no RTKs were activated, tyrosine kinase inhibitors (TKIs) and a Mek inhibitor were not useful (MKN1). In lines with a dominant phosphorylated RTK (OE19, MKN45 and KATOIII), selection of this TKI or Mek in nM concentrations induced cytotoxicity and inhibited Erk and Akt phosphorylation. In cells lines with complex activation profiles (HSC39 and OE33), a combination of TKIs or Mek inhibition (in nM concentrations) was necessary for cytotoxicity and inhibition of Erk and Akt phosphorylation. Human tumours demonstrated diverse activation profiles and 65% of cases had two or more active RTKs.
Conclusions The MAPK pathway is commonly activated in oesophago-gastric cancer following activation of a variety of RTKs. Molecular phenotyping can inform a rational choice of targeted therapy.
Date Issued
2013-10-01
Date Acceptance
2012-06-09
Citation
Gut, 2013, 62 (10), pp.1415-1424
ISSN
0017-5749
Publisher
BMJ Publishing Group
Start Page
1415
End Page
1424
Journal / Book Title
Gut
Volume
62
Issue
10
Copyright Statement
© 2012 The Author(s). This article has been accepted for publication in Gut following peer review. The definitive copyedited, typeset version: Paterson AL, Shannon NB, Lao-Sirieix P, et al
A systematic approach to therapeutic target selection in oesophago-gastric cancer
Gut 2013;62:1415-1424.
is available online at: https://dx.doi.org/10.1136/gutjnl-2012-302039
A systematic approach to therapeutic target selection in oesophago-gastric cancer
Gut 2013;62:1415-1424.
is available online at: https://dx.doi.org/10.1136/gutjnl-2012-302039
Identifier
http://gateway.webofknowledge.com/gateway/Gateway.cgi?GWVersion=2&SrcApp=PARTNER_APP&SrcAuth=LinksAMR&KeyUT=WOS:000324422400007&DestLinkType=FullRecord&DestApp=ALL_WOS&UsrCustomerID=1ba7043ffcc86c417c072aa74d649202
Subjects
Science & Technology
Life Sciences & Biomedicine
Gastroenterology & Hepatology
Oesophageal adenocarcinoma
oncogene addiction
small molecular inhibitors
receptor tyrosine kinases
MAPK pathways
oesophageal cancer
cell signalling
Barrett's oesophagus
biostatistics
cancer genetics
adenocarcinoma
gastro-oesophageal reflux disease
CELL LUNG-CANCER
RECEPTOR TYROSINE KINASES
HUMAN GASTRIC CARCINOMAS
IN-SITU HYBRIDIZATION
BARRETTS-ESOPHAGUS
AMPLIFICATION
ADENOCARCINOMAS
RESISTANCE
LINES
EGFR
Publication Status
Published
Date Publish Online
2012-07-06