Literature DB >> 29308321

Blocking the CD47-SIRPα axis by delivery of anti-CD47 antibody induces antitumor effects in glioma and glioma stem cells.

Feng Li1, Bingke Lv1, Yang Liu1, Tian Hua1, Jianbang Han1, Chengmei Sun1, Limin Xu1, Zhongfei Zhang1, Zhiming Feng1, Yingqian Cai1, Yuxi Zou1, Yiquan Ke1, Xiaodan Jiang1.   

Abstract

Tumor initiating cells or cancer stem cells (CSCs) play an important role in the initiation, development, metastasis, and recurrence of tumors. However, traditional therapies have limited effects against CSCs and targeting these cells is crucial when developing new therapeutic strategies against cancer. One potentially targetable factor is CD47, a member of the immunoglobulin superfamily. This protein acts as an anti-phagocytic "don't eat me" signal and is often found expressed by cancer cells, particularly CSCs. CD47 functions by activating signal regulatory protein-α (SIRP-α) expressed on macrophages, preventing phagocytosis. However, the role of CD47 in glioma stem cells (GSCs) has been not been thoroughly investigated. Our study therefore examined the expression and function of this protein in glioma cells and GSCs. We found that CD47 was highly expressed on glioma cells, especially GSCs, and that expression associated with worse clinical outcomes. We also found that CD47+ glioma cells possessed stem/progenitor cell-like characteristics and knocking down CD47 expression resulted in a reduction in these characteristics. Treatment with anti-CD47 antibody led to increased phagocytosis of glioma cells and GSCs by macrophages. We next examined the effects of anti-CD47 antibody on glioma cells/GSCs in an immune competent mouse glioma model, revealing significant inhibition of tumor growth and prolonged survival times. Importantly, there were no apparent side effects in the animal model. In summary, we have shown that CD47 is a potentially safe and effective therapeutic target for glioma.

Entities:  

Keywords:  CD47; cancer stem cells; human glioblastoma; immunotherapy

Year:  2017        PMID: 29308321      PMCID: PMC5749673          DOI: 10.1080/2162402X.2017.1391973

Source DB:  PubMed          Journal:  Oncoimmunology        ISSN: 2162-4011            Impact factor:   8.110


  29 in total

1.  CD47 is upregulated on circulating hematopoietic stem cells and leukemia cells to avoid phagocytosis.

Authors:  Siddhartha Jaiswal; Catriona H M Jamieson; Wendy W Pang; Christopher Y Park; Mark P Chao; Ravindra Majeti; David Traver; Nico van Rooijen; Irving L Weissman
Journal:  Cell       Date:  2009-07-23       Impact factor: 41.582

Review 2.  Integrin-associated protein (CD47) and its ligands.

Authors:  E J Brown; W A Frazier
Journal:  Trends Cell Biol       Date:  2001-03       Impact factor: 20.808

3.  Extranodal dissemination of non-Hodgkin lymphoma requires CD47 and is inhibited by anti-CD47 antibody therapy.

Authors:  Mark P Chao; Chad Tang; Russell K Pachynski; Robert Chin; Ravindra Majeti; Irving L Weissman
Journal:  Blood       Date:  2011-08-09       Impact factor: 22.113

4.  The CD47-signal regulatory protein alpha (SIRPa) interaction is a therapeutic target for human solid tumors.

Authors:  Stephen B Willingham; Jens-Peter Volkmer; Andrew J Gentles; Debashis Sahoo; Piero Dalerba; Siddhartha S Mitra; Jian Wang; Humberto Contreras-Trujillo; Robin Martin; Justin D Cohen; Patricia Lovelace; Ferenc A Scheeren; Mark P Chao; Kipp Weiskopf; Chad Tang; Anne Kathrin Volkmer; Tejaswitha J Naik; Theresa A Storm; Adriane R Mosley; Badreddin Edris; Seraina M Schmid; Chris K Sun; Mei-Sze Chua; Oihana Murillo; Pradeep Rajendran; Adriel C Cha; Robert K Chin; Dongkyoon Kim; Maddalena Adorno; Tal Raveh; Diane Tseng; Siddhartha Jaiswal; Per Øyvind Enger; Gary K Steinberg; Gordon Li; Samuel K So; Ravindra Majeti; Griffith R Harsh; Matt van de Rijn; Nelson N H Teng; John B Sunwoo; Ash A Alizadeh; Michael F Clarke; Irving L Weissman
Journal:  Proc Natl Acad Sci U S A       Date:  2012-03-26       Impact factor: 11.205

5.  Molecular Pathways: Activating T Cells after Cancer Cell Phagocytosis from Blockade of CD47 "Don't Eat Me" Signals.

Authors:  Melissa N McCracken; Adriel C Cha; Irving L Weissman
Journal:  Clin Cancer Res       Date:  2015-06-26       Impact factor: 12.531

Review 6.  Concise Review: Stem Cells in Pancreatic Cancer: From Concept to Translation.

Authors:  Deepak Raj; Alexandra Aicher; Christopher Heeschen
Journal:  Stem Cells       Date:  2015-08-14       Impact factor: 6.277

7.  Identification of cells initiating human melanomas.

Authors:  Tobias Schatton; George F Murphy; Natasha Y Frank; Kazuhiro Yamaura; Ana Maria Waaga-Gasser; Martin Gasser; Qian Zhan; Stefan Jordan; Lyn M Duncan; Carsten Weishaupt; Robert C Fuhlbrigge; Thomas S Kupper; Mohamed H Sayegh; Markus H Frank
Journal:  Nature       Date:  2008-01-17       Impact factor: 49.962

8.  Identification of pancreatic cancer stem cells.

Authors:  Chenwei Li; David G Heidt; Piero Dalerba; Charles F Burant; Lanjing Zhang; Volkan Adsay; Max Wicha; Michael F Clarke; Diane M Simeone
Journal:  Cancer Res       Date:  2007-02-01       Impact factor: 12.701

9.  Biological characteristics of a new human glioma cell line transformed into A2B5(+) stem cells.

Authors:  Yanyan Li; Hangzhou Wang; Ting Sun; Jinming Chen; Lingchuan Guo; Haitao Shen; Ziwei Du; Youxin Zhou
Journal:  Mol Cancer       Date:  2015-04-02       Impact factor: 27.401

Review 10.  Association of the Extent of Resection With Survival in Glioblastoma: A Systematic Review and Meta-analysis.

Authors:  Timothy J Brown; Matthew C Brennan; Michael Li; Ephraim W Church; Nicholas J Brandmeir; Kevin L Rakszawski; Akshal S Patel; Elias B Rizk; Dima Suki; Raymond Sawaya; Michael Glantz
Journal:  JAMA Oncol       Date:  2016-11-01       Impact factor: 31.777

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  39 in total

Review 1.  Advances in the Immunotherapeutic Potential of Isocitrate Dehydrogenase Mutations in Glioma.

Authors:  Feng Tang; Zhiyong Pan; Yi Wang; Tian Lan; Mengyue Wang; Fengping Li; Wei Quan; Zhenyuan Liu; Zefen Wang; Zhiqiang Li
Journal:  Neurosci Bull       Date:  2022-06-07       Impact factor: 5.271

2.  CD47 (Cluster of Differentiation 47).

Authors:  Sukhbir Kaur; Jeffrey S Isenberg; David D Roberts
Journal:  Atlas Genet Cytogenet Oncol Haematol       Date:  2021

3.  Preclinical and Clinical Development of Therapeutic Antibodies Targeting Functions of CD47 in the Tumor Microenvironment.

Authors:  Sukhbir Kaur; Kyle V Cicalese; Rajdeep Bannerjee; David D Roberts
Journal:  Antib Ther       Date:  2020-08-08

4.  Immune Checkpoint-Associated Locations of Diffuse Gliomas Comparing Pediatric With Adult Patients Based on Voxel-Wise Analysis.

Authors:  Li Zhang; Buyi Zhang; Zhangqi Dou; Jiawei Wu; Yasaman Iranmanesh; Biao Jiang; Chongran Sun; Jianmin Zhang
Journal:  Front Immunol       Date:  2021-03-17       Impact factor: 7.561

5.  MR susceptibility imaging for detection of tumor-associated macrophages in glioblastoma.

Authors:  Amir Nazem; Samantha C Guiry; MacLean Nasrallah; Ali Nabavizadeh; Mehrdad Pourfathi; Jeffrey B Ware; Hannah Anderson; Srikant Kamesh Iyer; Brianna F Moon; Yi Fan; Walter R Witschey; Rahim Rizi; Stephen J Bagley; Arati Desai; Donald M O'Rourke; Steven Brem
Journal:  J Neurooncol       Date:  2022-01-19       Impact factor: 4.130

6.  ImmunoPET-informed sequence for focused ultrasound-targeted mCD47 blockade controls glioma.

Authors:  Natasha D Sheybani; Victoria R Breza; Soumen Paul; Katelyenn S McCauley; Stuart S Berr; G Wilson Miller; Kiel D Neumann; Richard J Price
Journal:  J Control Release       Date:  2021-01-18       Impact factor: 9.776

7.  Macrophage-Mediated Tumor Cell Phagocytosis: Opportunity for Nanomedicine Intervention.

Authors:  Xuefei Zhou; Xiangrui Liu; Leaf Huang
Journal:  Adv Funct Mater       Date:  2020-11-10       Impact factor: 18.808

8.  Vitamin E succinate exerts anti-tumour effects on human cervical cancer cells via the CD47-SIRPɑ pathway both in vivo and in vitro.

Authors:  Xiaoli Huang; Markus Neckenig; Jintang Sun; Di Jia; Yu Dou; Dan Ai; Zhaodi Nan; Xun Qu
Journal:  J Cancer       Date:  2021-05-05       Impact factor: 4.207

9.  Positive tumour CD47 expression is an independent prognostic factor for recurrence in resected non-small cell lung cancer.

Authors:  Yan Xu; Ji Li; Bing Tong; Minjiang Chen; Xiaoyan Liu; Wei Zhong; Jing Zhao; Mengzhao Wang
Journal:  ESMO Open       Date:  2020-08

10.  VDAC2 interacts with PFKP to regulate glucose metabolism and phenotypic reprogramming of glioma stem cells.

Authors:  Kai Zhou; Yue-Liang Yao; Zhi-Cheng He; Cong Chen; Xiao-Ning Zhang; Kai-Di Yang; Yu-Qi Liu; Qing Liu; Wen-Juan Fu; Ya-Ping Chen; Qin Niu; Qing-Hua Ma; Rong Zhou; Xiao-Hong Yao; Xia Zhang; You-Hong Cui; Xiu-Wu Bian; Yu Shi; Yi-Fang Ping
Journal:  Cell Death Dis       Date:  2018-09-24       Impact factor: 8.469

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