Inhibition of γ-Secretase Activity Inhibits Tumor Progression in a Mouse Model of Pancreatic Ductal Adenocarcinoma

被引:142
作者
Plentz, Ruben [1 ]
Park, Ji-Sun [1 ]
Rhim, Andrew D. [2 ,3 ]
Abravanel, Daniel [2 ,3 ]
Hezel, Aram F. [1 ]
Sharma, Sreenath V. [1 ,4 ]
Gurumurthy, Sushma [1 ]
Deshpande, Vikram [5 ]
Kenific, Candia [6 ]
Settleman, Jeffrey [1 ,4 ]
Majumder, Pradip K. [7 ]
Stanger, Ben Z. [2 ,3 ]
Bardeesy, Nabeel [1 ]
机构
[1] Harvard Univ, Sch Med, Massachusetts Gen Hosp, Dept Med,Canc Ctr, Boston, MA 02114 USA
[2] Univ Penn, Sch Med, Div Gastroenterol, Philadelphia, PA 19104 USA
[3] Univ Penn, Sch Med, Abramson Family Canc Res Inst, Philadelphia, PA 19104 USA
[4] Harvard Univ, Sch Med, Massachusetts Gen Hosp, Ctr Mol Therapeut, Boston, MA 02114 USA
[5] Harvard Univ, Sch Med, Massachusetts Gen Hosp, Dept Pathol, Boston, MA 02114 USA
[6] Merck Res Labs, Dept Neuropharmacol, Boston, MA USA
[7] Merck Res Labs, Dept Oncol Pharmacol, Boston, MA USA
关键词
CELL EXPANSION; ACINAR-CELLS; NOTCH; CANCER; GROWTH; ACTIVATION; DIFFERENTIATION; INDUCTION; FATE; RAS;
D O I
10.1053/j.gastro.2009.01.008
中图分类号
R57 [消化系及腹部疾病];
学科分类号
摘要
Background & Aim: The Notch signaling pathway is required for the expansion of undifferentiated pancreatic progenitor cells during embryonic development and has been implicated in the progression of pancreatic ductal adenocarcinoma (PDAC). The interaction of Notch ligands with their receptors promotes a gamma-secretase-dependent cleavage of the Notch receptor and release of the Notch intracellular domain, which translocates to the nucleus and activates transcription. We investigated the role of this pathway in PDAC progression. Methods: We tested the effects of a gamma-secretase inhibitor (GSI) that blocks Notch signaling in PDAC cell lines and a genetically engineered mouse model of PDAC (Kras p53 L/+ mice). Results: Notch signaling was activated in PDAC precursors and advanced tumors. The GSI inhibited the growth of premalignant pancreatic duct-derived cells in a Notch-dependent manner. Additionally, in a panel of over 400 human solid tumorderived cell lines, PDAC cells, as a group, were more sensitive to the GSI than any other tumor type. Finally, the GSI completely inhibited tumor development in the genetically engineered model of invasive PDAC (P <.005, chi(2) test; compared with mice exposed to vehicle). Conclusions: These results suggest that Notch signaling is required for PDAC progression. Pharmacologic targeting of this pathway offers therapeutic potential in this treatment-refractory malignancy.
引用
收藏
页码:1741 / 1749
页数:9
相关论文
共 50 条
  • [21] GPR120 promotes metastasis but inhibits tumor growth in pancreatic ductal adenocarcinoma
    Sun, Xiaoyuan
    Chu, Huijun
    Lei, Ke
    Ci, Yandong
    Lu, Haijun
    Wang, Jia
    Zhou, Meng
    Ren, He
    Zheng, Tongsen
    PANCREATOLOGY, 2022, 22 (06) : 749 - 759
  • [22] Notch1 Functions as a Tumor Suppressor in a Model of K-ras-Induced Pancreatic Ductal Adenocarcinoma
    Hanlon, Linda
    Avila, Jacqueline L.
    Demarest, Renee M.
    Troutman, Scott
    Allen, Megan
    Ratti, Francesca
    Rustgi, Anil K.
    Stanger, Ben Z.
    Radtke, Fred
    Adsay, Volkan
    Long, Fenella
    Capobianco, Anthony J.
    Kissil, Joseph L.
    CANCER RESEARCH, 2010, 70 (11) : 4280 - 4286
  • [23] Panoramic tumor microenvironment in pancreatic ductal adenocarcinoma
    Li, Xiaoying
    Hou, Wanting
    Xiao, Chaoxin
    Yang, Heqi
    Zhao, Chengjian
    Cao, Dan
    CELLULAR ONCOLOGY, 2024, 47 (05) : 1561 - 1578
  • [24] Dendritic cell immunotherapy induces anti-tumor effect in a transgenic mouse model of pancreatic ductal adenocarcinoma
    Yang, Jia
    Hu, Su
    Shangguan, Junjie
    Eresen, Aydin
    Li, Yu
    Pan, Liang
    Ma, Quanhong
    Velichko, Yuri
    Wang, Jian
    Hu, Chunhong
    Yaghmai, Vahid
    Zhang, Zhuoli
    AMERICAN JOURNAL OF CANCER RESEARCH, 2019, 9 (11): : 2456 - +
  • [25] Aberrant DNA methyltransferase expression in pancreatic ductal adenocarcinoma development and progression
    Gao, Jun
    Wang, Lihua
    Xu, Jinkang
    Zheng, Jianming
    Man, Xiaohua
    Wu, Hongyu
    Jin, Jin
    Wang, Kaixuan
    Xiao, Huasheng
    Li, Shude
    Li, Zhaoshen
    JOURNAL OF EXPERIMENTAL & CLINICAL CANCER RESEARCH, 2013, 32
  • [26] Midazolam exhibits antitumour and anti-inflammatory effects in a mouse model of pancreatic ductal adenocarcinoma
    Oshima, Yukino
    Sano, Makoto
    Kajiwara, Ichie
    Ichimaru, Yoshimi
    Itaya, Tomoaki
    Kuramochi, Tomoya
    Hayashi, Emiko
    Kim, Jinsuk
    Kitajima, Osamu
    Masugi, Yohei
    Masamune, Atsushi
    Ijichi, Hideaki
    Ishii, Yukimoto
    Suzuki, Takahiro
    BRITISH JOURNAL OF ANAESTHESIA, 2022, 128 (04) : 679 - 690
  • [27] Pancreatic ductal adenocarcinoma progression is restrained by stromal matrix
    Jiang, Honglin
    Torphy, Robert J.
    Steiger, Katja
    Hongo, Henry
    Ritchie, Alexa J.
    Kriegsmann, Mark
    Horst, David
    Umetsu, Sarah E.
    Joseph, Nancy M.
    McGregor, Kimberly
    Pishvaian, Michael J.
    Blais, Edik M.
    Lu, Brian
    Li, Mingyu
    Hollingsworth, Michael
    Stashko, Connor
    Volmar, Keith
    Yeh, Jen Jen
    Weaver, Valerie M.
    Wang, Zhen J.
    Tempero, Margaret A.
    Weichert, Wilko
    Collisson, Eric A.
    JOURNAL OF CLINICAL INVESTIGATION, 2020, 130 (09) : 4704 - 4709
  • [28] MiR-24-3p Inhibits the Progression of Pancreatic Ductal Adenocarcinoma Through LAMB3 Downregulation
    Huang, Wenjie
    Gu, Jianyou
    Tao, Tian
    Zhang, Junfeng
    Wang, Huaizhi
    Fan, Yingfang
    FRONTIERS IN ONCOLOGY, 2020, 9
  • [29] Expression of MicroRNA-218 in Human Pancreatic Ductal Adenocarcinoma and Its Correlation With Tumor Progression and Patient Survival
    Zhu, Ziman
    Xu, Yuefang
    Du, Jundong
    Tan, Jingwang
    Jiao, Huabao
    JOURNAL OF SURGICAL ONCOLOGY, 2014, 109 (02) : 89 - 94
  • [30] 5-Azacytidine Potentiates Anti-tumor Immunity in a Model of Pancreatic Ductal Adenocarcinoma
    Ebelt, Nancy D.
    Zuniga, Edith
    Johnson, Benjamin L.
    Diamond, Don J.
    Manuel, Edwin R.
    FRONTIERS IN IMMUNOLOGY, 2020, 11