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International Journal Of Bilogical Sciences

.: Home > International Journal Of Bilogical Sciences > 2014 > Volume 10 Number 1 > Su He Wang1, Lin Lu2,3, Yongyi Fan1, Max S. Wicha2, Zhengyi Cao1, Alfred E. Chang2, Jian-chuan Xia3, James R. Baker Jr.1,Qiao Li2

Characterization of a Novel Transgenic Mouse Tumor Model for Targeting HER2+ Cancer Stem Cells

Su He Wang1, Lin Lu2,3, Yongyi Fan1, Max S. Wicha2, Zhengyi Cao1, Alfred E. Chang2, Jian-chuan Xia3, James R. Baker Jr.1,Qiao Li2
1. Michigan Nanotechnology Institute for Medicine and Biological Sciences 2. University of Michigan Comprehensive Cancer Center, Ann Arbor, Michigan 48109, USA 3. State Key Laboratory of Oncology in Southern China and Department of Experimental Research, Sun Yat-sen University Cancer Center, Guangzhou 510060, P.R. China  Corresponding author: Dr. Su He Wang (shidasui@umich.edu) or Qiao Li (qiaoli@umich.edu), Phone: 734-615-2205 or 734-615-1977
Abstract :

HER2 is an oncogenic tumor-associated antigen overexpressed in 20-25% of breast cancers, which is associated with increased invasion, metastasis of the disease and resistance to therapy. Recent studies have further shown that HER2 can increase the population of breast cancer stem cells (BCSCs). However, there is currently no in vivo model for the study of HER2+ BCSCs. In this study, we characterized a mouse breast cancer model for HER2+ BCSCs. This was accomplished by inoculating mouse mammary tumor EO771 cells engineered with human wild-type HER2 (EO771E2) into C57BL/6 HER2 transgenic mice to test and confirm the stable human HER2 expression in the model. More importantly, we detected a subpopulation of EO771E2 cells with a high activity of aldehyde dehydrogenases (ALDHhigh). We demonstrated that the isolated ALDHhigh EO771E2 cells possessed key properties of BCSCs including enhanced tumorigenicity, generation of heterogeneous tumors and the capacity to self-renewal in vitro. In conclusion, the tumors formed in C57BL/6 HER2 transgenic mice with EO771E2 cell injection revealed stable and functional human HER2 expression. These tumors contain a subset of ALDHhigh cells which are small in number, but are enriched in cancer stem cells. This model is deemed to be useful for experiments aimed to develop novel treatments to target HER2+ BCSCs

Keywords :
HER2, breast cancer, cancer stem cells, mouse model, antitumor immunity

Date Deposited : 01 Feb 2016 10:26

Last Modified : 01 Feb 2016 10:26

Official URL: http://www.ijbs.com/v10i1

Volume 10, Number 1, - 2014 , ISSN 1449-2288

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