Literature DB >> 27982025

Morphological characterization of colorectal cancers in The Cancer Genome Atlas reveals distinct morphology-molecular associations: clinical and biological implications.

Jinru Shia1, Nikolaus Schultz2, Deborah Kuk3, Efsevia Vakiani1, Sumit Middha1, Neil H Segal4, Jaclyn F Hechtman1, Michael F Berger1, Zsofia K Stadler4, Martin R Weiser5, Jedd D Wolchok4, C Richard Boland6, Mithat Gönen3, David S Klimstra1.   

Abstract

The Cancer Genome Atlas data on colorectal carcinoma have provided a comprehensive view of the tumor's genomic alterations and their tumorigenic roles. Tumor morphology, however, has not been fully integrated into the analysis. The aim of this study was to explore relevant associations between tumor morphology and the newly characterized genomic alterations in colorectal carcinoma. Two hundred and seven colorectal carcinomas that had undergone whole-exome sequencing as part of The Cancer Genome Atlas project and had adequate virtual images in the cBioPortal for Cancer Genomics constituted our study population. Upon analysis, a tight association between 'microsatellite instability-high histology' and microsatellite instability-high (P<0.001) was readily detected and helped validate our image-based histology evaluation. Further, we showed, (1) among all histologies, the not otherwise specified type had the lowest overall mutation count (P<0.001 for entire cohort, P<0.03 for the microsatellite-instable group), and among the microsatellite-instable tumors, this type also correlated with fewer frameshift mutations in coding mononucleotide repeats of a defined set of relevant genes (P<0.01); (2) cytosine phosphate guanine island methylator phenotype-high colorectal cancers with or without microsatellite instability tended to have different histological patterns: the former more often mucinous and the latter more often not otherwise specified; (3) mucinous histology was associated with more frequent alterations in BRAF, PIK3CA, and the transforming growth factor-β pathway when compared with non-mucinous histologies (P<0.001, P=0.01, and P<0.001, respectively); and (4) few colorectal cancers (<9%) exhibited upregulation of immune-inhibitory genes including major immune checkpoints; these tumors were primarily microsatellite-instable (up to 43%, vs <3% in microsatellite-stable group) and had distinctly non-mucinous histologies with a solid growth. These morphology-molecular associations are interesting and propose important clinical implications. The morphological patterns associated with alterations of immune checkpoint genes bear the potential to guide patient selection for clinical trials that target immune checkpoints in colorectal cancer, and provide directions for future studies.

Entities:  

Mesh:

Substances:

Year:  2016        PMID: 27982025      PMCID: PMC5380525          DOI: 10.1038/modpathol.2016.198

Source DB:  PubMed          Journal:  Mod Pathol        ISSN: 0893-3952            Impact factor:   7.842


  31 in total

1.  PD-1 Blockers.

Authors:  Jedd D Wolchok
Journal:  Cell       Date:  2015-08-27       Impact factor: 41.582

2.  Smad4 inactivation predicts for worse prognosis and response to fluorouracil-based treatment in colorectal cancer.

Authors:  Margaret M Kozak; Rie von Eyben; Jonathan Pai; Stephen R Vossler; Maneesha Limaye; Priya Jayachandran; Eric M Anderson; Jenny L Shaffer; Teri Longacre; Reetesh K Pai; Albert C Koong; Daniel T Chang
Journal:  J Clin Pathol       Date:  2015-02-13       Impact factor: 3.411

3.  Medullary carcinoma of the colon: a distinct morphology reveals a distinctive immunoregulatory microenvironment.

Authors:  Kenneth Friedman; Alexander S Brodsky; Shaolei Lu; Stephanie Wood; Anthony J Gill; Kara Lombardo; Dongfang Yang; Murray B Resnick
Journal:  Mod Pathol       Date:  2016-03-11       Impact factor: 7.842

4.  Only three driver gene mutations are required for the development of lung and colorectal cancers.

Authors:  Cristian Tomasetti; Luigi Marchionni; Martin A Nowak; Giovanni Parmigiani; Bert Vogelstein
Journal:  Proc Natl Acad Sci U S A       Date:  2014-12-22       Impact factor: 11.205

5.  Immunogenic peptides generated by frameshift mutations in DNA mismatch repair-deficient cancer cells.

Authors:  Yvette Schwitalle; Michael Linnebacher; Eva Ripberger; Johannes Gebert; Magnus von Knebel Doeberitz
Journal:  Cancer Immun       Date:  2004-11-25

6.  Stepwise deletions of polyA sequences in mismatch repair-deficient colorectal cancers.

Authors:  C Blake; J L Tsao; A Wu; D Shibata
Journal:  Am J Pathol       Date:  2001-05       Impact factor: 4.307

7.  Immunoselective pressure and human leukocyte antigen class I antigen machinery defects in microsatellite unstable colorectal cancers.

Authors:  Matthias Kloor; Christina Becker; Axel Benner; Stefan M Woerner; Johannes Gebert; Soldano Ferrone; Magnus von Knebel Doeberitz
Journal:  Cancer Res       Date:  2005-07-15       Impact factor: 12.701

Review 8.  Evolving approach and clinical significance of detecting DNA mismatch repair deficiency in colorectal carcinoma.

Authors:  Jinru Shia
Journal:  Semin Diagn Pathol       Date:  2015-02-04       Impact factor: 3.464

9.  Evaluation of PIK3CA mutation as a predictor of benefit from nonsteroidal anti-inflammatory drug therapy in colorectal cancer.

Authors:  Enric Domingo; David N Church; Oliver Sieber; Rajarajan Ramamoorthy; Yoko Yanagisawa; Elaine Johnstone; Brian Davidson; David J Kerr; Ian P M Tomlinson; Rachel Midgley
Journal:  J Clin Oncol       Date:  2013-09-23       Impact factor: 44.544

10.  Comprehensive molecular characterization of human colon and rectal cancer.

Authors: 
Journal:  Nature       Date:  2012-07-18       Impact factor: 49.962

View more
  26 in total

1.  Clinical Sequencing Defines the Genomic Landscape of Metastatic Colorectal Cancer.

Authors:  Rona Yaeger; Walid K Chatila; Marla D Lipsyc; Jaclyn F Hechtman; Andrea Cercek; Francisco Sanchez-Vega; Gowtham Jayakumaran; Sumit Middha; Ahmet Zehir; Mark T A Donoghue; Daoqi You; Agnes Viale; Nancy Kemeny; Neil H Segal; Zsofia K Stadler; Anna M Varghese; Ritika Kundra; Jianjiong Gao; Aijazuddin Syed; David M Hyman; Efsevia Vakiani; Neal Rosen; Barry S Taylor; Marc Ladanyi; Michael F Berger; David B Solit; Jinru Shia; Leonard Saltz; Nikolaus Schultz
Journal:  Cancer Cell       Date:  2018-01-08       Impact factor: 31.743

Review 2.  [Colorectal tumor evolution in inflammatory bowel disease : Dynamics of genomic alterations and potential molecular markers to predict malignant progression].

Authors:  D Hirsch
Journal:  Pathologe       Date:  2019-12       Impact factor: 1.011

3.  Pan-cancer computational histopathology reveals mutations, tumor composition and prognosis.

Authors:  Yu Fu; Alexander W Jung; Ramon Viñas Torne; Santiago Gonzalez; Harald Vöhringer; Artem Shmatko; Lucy R Yates; Mercedes Jimenez-Linan; Luiza Moore; Moritz Gerstung
Journal:  Nat Cancer       Date:  2020-07-27

4.  Clinicopathological and molecular characteristics of RSPO fusion-positive colorectal cancer.

Authors:  Taiki Hashimoto; Daisuke Takayanagi; Junpei Yonemaru; Tomoaki Naka; Kengo Nagashima; Yasushi Yatabe; Dai Shida; Ryuji Hamamoto; Sam O Kleeman; Simon J Leedham; Timothy Maughan; Atsuo Takashima; Kouya Shiraishi; Shigeki Sekine
Journal:  Br J Cancer       Date:  2022-06-17       Impact factor: 9.075

Review 5.  Microsatellite Instable Colorectal Adenocarcinoma Diagnostics: The Advent of Liquid Biopsy Approaches.

Authors:  Carlotta Ceccon; Valentina Angerilli; Cosimo Rasola; Letizia Procaccio; Marianna Sabbadin; Francesca Bergamo; Umberto Malapelle; Sara Lonardi; Matteo Fassan
Journal:  Front Oncol       Date:  2022-06-28       Impact factor: 5.738

6.  Cellular localization of PD-L1 expression in mismatch-repair-deficient and proficient colorectal carcinomas.

Authors:  Sandy Liu; Mithat Gӧnen; Zsofia K Stadler; Martin R Weiser; Jaclyn F Hechtman; Efsevia Vakiani; Tao Wang; Monika Vyas; Upasana Joneja; Moataz Al-Bayati; Neil H Segal; J Joshua Smith; Sarah King; Shanna Guercio; Peter Ntiamoah; Arnold J Markowitz; Liying Zhang; Andrea Cercek; Julio Garcia-Aguilar; Leonard B Saltz; Luis A Diaz; David S Klimstra; Jinru Shia
Journal:  Mod Pathol       Date:  2018-08-30       Impact factor: 7.842

7.  Dynamics of Genome Alterations in Crohn's Disease-Associated Colorectal Carcinogenesis.

Authors:  Karoline Horisberger; Thomas Ried; Timo Gaiser; Daniela Hirsch; Darawalee Wangsa; Yuelin J Zhu; Yue Hu; Daniel C Edelman; Paul S Meltzer; Kerstin Heselmeyer-Haddad; Claudia Ott; Peter Kienle; Christian Galata
Journal:  Clin Cancer Res       Date:  2018-07-02       Impact factor: 12.531

Review 8.  PanCancer insights from The Cancer Genome Atlas: the pathologist's perspective.

Authors:  Lee Ad Cooper; Elizabeth G Demicco; Joel H Saltz; Reid T Powell; Arvind Rao; Alexander J Lazar
Journal:  J Pathol       Date:  2018-02-22       Impact factor: 7.996

9.  Pan-cancer image-based detection of clinically actionable genetic alterations.

Authors:  Alexander T Pearson; Tom Luedde; Jakob Nikolas Kather; Lara R Heij; Heike I Grabsch; Chiara Loeffler; Amelie Echle; Hannah Sophie Muti; Jeremias Krause; Jan M Niehues; Kai A J Sommer; Peter Bankhead; Loes F S Kooreman; Jefree J Schulte; Nicole A Cipriani; Roman D Buelow; Peter Boor; Nadi-Na Ortiz-Brüchle; Andrew M Hanby; Valerie Speirs; Sara Kochanny; Akash Patnaik; Andrew Srisuwananukorn; Hermann Brenner; Michael Hoffmeister; Piet A van den Brandt; Dirk Jäger; Christian Trautwein
Journal:  Nat Cancer       Date:  2020-07-27

10.  Histopathological characteristics and artificial intelligence for predicting tumor mutational burden-high colorectal cancer.

Authors:  Yoshifumi Shimada; Shujiro Okuda; Yu Watanabe; Yosuke Tajima; Masayuki Nagahashi; Hiroshi Ichikawa; Masato Nakano; Jun Sakata; Yasumasa Takii; Takashi Kawasaki; Kei-Ichi Homma; Tomohiro Kamori; Eiji Oki; Yiwei Ling; Shiho Takeuchi; Toshifumi Wakai
Journal:  J Gastroenterol       Date:  2021-04-28       Impact factor: 7.527

View more

北京卡尤迪生物科技股份有限公司 © 2022-2023.