RAS, Cellular Plasticity, and Tumor Budding in Colorectal Cancer

被引:52
作者
Maffeis, Valeria [1 ]
Nicole, Lorenzo [1 ]
Cappellesso, Rocco [2 ]
机构
[1] Univ Padua, Dept Med, Surg Pathol & Cytopathol Unit, Padua, Italy
[2] Padova Univ Hosp, Pathol Anat Unit, Padua, Italy
关键词
RAS; colorectal cancer; plasticity; epithelial to mesenchymal transition; tumor budding; EPITHELIAL-MESENCHYMAL TRANSITION; LYMPH-NODE METASTASIS; ISLAND METHYLATOR PHENOTYPE; HIGH-RISK PATIENTS; MICROSATELLITE INSTABILITY; PROGNOSTIC VALUE; COLON-CANCER; E-CADHERIN; INTEROBSERVER VARIABILITY; EPIGENETIC ALTERATIONS;
D O I
10.3389/fonc.2019.01255
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
The high morbidity and mortality of colorectal cancer (CRC) remain a worldwide challenge, despite the advances in prevention, diagnosis, and treatment. RAS alterations have a central role in the pathogenesis of CRC universally recognized both in the canonical mutation-based classification and in the recent transcriptome-based classification. About 40% of CRCs are KRAS mutated, 5% NRAS mutated, and only rare cases are HRAS mutated. Morphological and molecular correlations demonstrated the involvement of RAS in cellular plasticity, which is related to invasive and migration properties of neoplastic cells. RAS signaling has been involved in the initiation of epithelial to mesenchymal transition (EMT) in CRC leading to tumor spreading. Tumor budding is the morphological surrogate of EMT and features cellular plasticity. Tumor budding is clinically relevant for CRC patients in three different contexts: (i) in pT1 CRC the presence of tumor buds is associated with nodal metastasis, (ii) in stage II CRC identifies the cases with a prognosis similar to metastatic disease, and (iii) intratumoral budding could be useful in patient selection for neoadjuvant therapy. This review is focused on the current knowledge on RAS in CRC and its link with cellular plasticity and related clinicopathological features.
引用
收藏
页数:17
相关论文
共 50 条
[21]   Clinico-pathological evaluation of tumor budding in the oncological progression of colorectal cancer [J].
Giordano, Pietro Giovanni ;
Zelaya, Ana Gabriela Diaz ;
Molina, Yari Yuritzi Aguilera ;
Mostajo, Nestor Orlando Taboada ;
Ramos, Yelene Ajete ;
Garcia, Ricardo Ortega ;
de Michelis, Esteban Peralta ;
Diaz, Juan Carlos Meneu .
MEDICINA CLINICA, 2024, 163 (04) :159-166
[22]   Prognostic evaluation of cancer associated fibrosis and tumor budding in colorectal cancer [J].
Khan, Adil Aziz ;
Malik, Shaivy ;
Jacob, Sherrin ;
Aden, Durre ;
Ahuja, Sana ;
Zaheer, Sufian ;
Ranga, Sunil .
PATHOLOGY RESEARCH AND PRACTICE, 2023, 248
[23]   Tumor budding in gastric cancer [J].
Xiao, Shuo-Meng ;
Li, Jian .
WORLD JOURNAL OF GASTROINTESTINAL SURGERY, 2023, 15 (04) :578-591
[24]   PROGNOSTIC VALUE OF TUMOR BUDDING IN PATIENTS WITH COLORECTAL-CANCER [J].
HASE, K ;
SHATNEY, C ;
JOHNSON, D ;
TROLLOPE, M ;
VIERRA, M .
DISEASES OF THE COLON & RECTUM, 1993, 36 (07) :627-635
[25]   Correlation Between Tumor Budding and Survivin Expression in Colorectal Cancer [J].
Zhang, Guangping ;
Min, Qingzhong .
CLINICAL AND EXPERIMENTAL GASTROENTEROLOGY, 2024, 17 :331-336
[26]   Recommendations for reporting tumor budding in colorectal cancer based on the International Tumor Budding Consensus Conference (ITBCC) 2016 [J].
Lugli, Alessandro ;
Kirsch, Richard ;
Ajioka, Yoichi ;
Bosman, Fred ;
Cathomas, Gieri ;
Dawson, Heather ;
El Zimaity, Hala ;
Flejou, Jean-Francois ;
Hansen, Tine Plato ;
Hartmann, Arndt ;
Kakar, Sanjay ;
Langner, Cord ;
Nagtegaal, Iris ;
Puppa, Giacomo ;
Riddell, Robert ;
Ristimaki, Ari ;
Sheahan, Kieran ;
Smyrk, Thomas ;
Sugihara, Kenichi ;
Terris, Benoit ;
Ueno, Hideki ;
Vieth, Michael ;
Zlobec, Inti ;
Quirke, Phil .
MODERN PATHOLOGY, 2017, 30 (09) :1299-1311
[27]   Cell Line Derived Xenograft Mouse Models Are a Suitable in vivo Mode for Studying Tumor Budding in Colorectal Cancer [J].
Georges, Laurent M. C. ;
De Wever, Olivier ;
Galvan, Jose A. ;
Dawson, Heather ;
Lugli, Alessandro ;
Demetter, Pieter ;
Zlobec, Inti .
FRONTIERS IN MEDICINE, 2019, 6
[28]   Tumor budding and size as risk factors of lymph node metastasis in early colorectal cancer [J].
Li, Hongye ;
Huang, Dehong ;
Jiang, Liyuan ;
Yao, Jianming ;
He, Hong ;
Yao, Ping ;
Liao, Xianghui .
INTERNATIONAL JOURNAL OF CLINICAL AND EXPERIMENTAL MEDICINE, 2016, 9 (06) :11907-11912
[29]   Tumor budding and human chorionic gonadotropin-β expression correlate with unfavorable patient outcome in colorectal carcinoma [J].
Konishi, Yuji ;
Kawamata, Futoshi ;
Nishihara, Hiroshi ;
Homma, Shigenori ;
Kato, Yasutaka ;
Tsuda, Masumi ;
Kohsaka, Shinji ;
Einama, Takahiro ;
Liu, Cheng ;
Yoshida, Tadashi ;
Nagatsu, Akihisa ;
Tanino, Mishie ;
Tanaka, Shinya ;
Kawamura, Hideki ;
Kamiyama, Toshiya ;
Taketomi, Akinobu .
MEDICAL ONCOLOGY, 2018, 35 (07)
[30]   Assessing the applicability and interobserver variability of tumor budding and poorly differentiated clusters in colorectal cancer [J].
Monise Tadin Reis ;
Marcus Matsushita ;
Wellington Santos ;
Marcos Alves de Lima ;
Denise Peixoto Guimarães ;
Rui Manuel Reis .
Surgical and Experimental Pathology, 7 (1)