Intrahepatic cholangiocarcinoma (iCCA) is a highly aggressive cancer with limited therapeutic options and short overall survival. iCCA is characterized by a strong desmoplastic reaction in the surrounding ecosystem that likely affects tumoral progression. Overexpression of the Notch pathway is implicated in iCCA development and progression. Our aim was to investigate the effectiveness of Crenigacestat, a selective inhibitor of NOTCH1 signaling, against the cross-talk between cancer cells and the surrounding ecosystem in an in vivo HuCCT1-xenograft model. In the present study, a transcriptomic analysis approach, validated by Western blotting and qRT-PCR on iCCA tumor masses treated with Crenigacestat, was used to study the molecular pathways responsive to drug treatment. Our results indicate that Crenigacestat significantly inhibited NOTCH1 and HES1, whereas tumor progression was not affected. In addition, the drug triggered a strong immune response and blocked neovascularization in the tumor ecosystem of the HuCCT1-xenograft model without affecting the occurrence of fibrotic reactions. Therefore, although these data need further investigation, our observations confirm that Crenigacestat selectively targets NOTCH1 and that the desmoplastic response in iCCA likely plays a key role in both drug effectiveness and tumor progression.

Mancarella, S., Serino, G., Coletta, S., Armentano, R., Dituri, F., Ardito, F., Ruzzenente, A., Fabregat, I., Giannelli, G., The Tumor Microenvironment Drives Intrahepatic Cholangiocarcinoma Progression, <<INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES>>, 2022; 23 (8): 4187-N/A. [doi:10.3390/ijms23084187] [https://hdl.handle.net/10807/207951]

The Tumor Microenvironment Drives Intrahepatic Cholangiocarcinoma Progression

Ardito, Francesco;
2022

Abstract

Intrahepatic cholangiocarcinoma (iCCA) is a highly aggressive cancer with limited therapeutic options and short overall survival. iCCA is characterized by a strong desmoplastic reaction in the surrounding ecosystem that likely affects tumoral progression. Overexpression of the Notch pathway is implicated in iCCA development and progression. Our aim was to investigate the effectiveness of Crenigacestat, a selective inhibitor of NOTCH1 signaling, against the cross-talk between cancer cells and the surrounding ecosystem in an in vivo HuCCT1-xenograft model. In the present study, a transcriptomic analysis approach, validated by Western blotting and qRT-PCR on iCCA tumor masses treated with Crenigacestat, was used to study the molecular pathways responsive to drug treatment. Our results indicate that Crenigacestat significantly inhibited NOTCH1 and HES1, whereas tumor progression was not affected. In addition, the drug triggered a strong immune response and blocked neovascularization in the tumor ecosystem of the HuCCT1-xenograft model without affecting the occurrence of fibrotic reactions. Therefore, although these data need further investigation, our observations confirm that Crenigacestat selectively targets NOTCH1 and that the desmoplastic response in iCCA likely plays a key role in both drug effectiveness and tumor progression.
2022
AREA06 - SCIENZE MEDICHE
Pubblicazione su rivista con Impact Factor
Inglese
Articolo in rivista
Inglese
gene expression
HuCCT1-xenograft mouse model
intrahepatic cholangiocarcinoma
microenvironment
NOTCH1
Bile Ducts, Intrahepatic
Ecosystem
Humans
Tumor Microenvironment
Bile Duct Neoplasms
Cholangiocarcinoma
Settore MED/18 - CHIRURGIA GENERALE
Settore MEDS-06/A - Chirurgia generale
MDPI
23
8
2022
Epub
4187
N/A
17
Esperti anonimi
Articolo su rivista scientifica / specializzata
a stampa
info:eu-repo/semantics/article
Mancarella, S., Serino, G., Coletta, S., Armentano, R., Dituri, F., Ardito, F., Ruzzenente, A., Fabregat, I., Giannelli, G., The Tumor Microenvironment Drives Intrahepatic Cholangiocarcinoma Progression, <<INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES>>, 2022; 23 (8): 4187-N/A. [doi:10.3390/ijms23084187] [https://hdl.handle.net/10807/207951]
open
262
Mancarella, S.; Serino, G.; Coletta, S.; Armentano, R.; Dituri, F.; Ardito, Francesco; Ruzzenente, A.; Fabregat, I.; Giannelli, G.
9
art_per_29
03. Contributo in rivista::Articolo in rivista, Nota a sentenza
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