Tumour-associated macrophages secrete pleiotrophin to promote PTPRZ1 signalling in glioblastoma stem cells for tumour growth

Tumour-associated macrophages (TAMs) facilitate malignant growth of glioblastoma (GBM). Here, the authors show that TAMs support glioma stem cell renewal via paracrine signalling to the pleiotrophin receptor PTPRZ1 and that blocking this axis results in increased survival of tumour-bearing animals.

Bibliographic Details
Main Authors: Yu Shi, Yi-Fang Ping, Wenchao Zhou, Zhi-Cheng He, Cong Chen, Bai-Shi-Jiao Bian, Lin Zhang, Lu Chen, Xun Lan, Xian-Chao Zhang, Kai Zhou, Qing Liu, Hua Long, Ti-Wei Fu, Xiao-Ning Zhang, Mian-Fu Cao, Zhi Huang, Xiaoguang Fang, Xiuxing Wang, Hua Feng, Xiao-Hong Yao, Shi-Cang Yu, You-Hong Cui, Xia Zhang, Jeremy N Rich, Shideng Bao, Xiu-Wu Bian
Format: Article
Language:English
Published: Nature Publishing Group 2017-06-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/ncomms15080
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spelling doaj-fc10d4b4ab8a4e3cb428bc0e733826492021-05-11T07:11:33ZengNature Publishing GroupNature Communications2041-17232017-06-018111710.1038/ncomms15080Tumour-associated macrophages secrete pleiotrophin to promote PTPRZ1 signalling in glioblastoma stem cells for tumour growthYu Shi0Yi-Fang Ping1Wenchao Zhou2Zhi-Cheng He3Cong Chen4Bai-Shi-Jiao Bian5Lin Zhang6Lu Chen7Xun Lan8Xian-Chao Zhang9Kai Zhou10Qing Liu11Hua Long12Ti-Wei Fu13Xiao-Ning Zhang14Mian-Fu Cao15Zhi Huang16Xiaoguang Fang17Xiuxing Wang18Hua Feng19Xiao-Hong Yao20Shi-Cang Yu21You-Hong Cui22Xia Zhang23Jeremy N Rich24Shideng Bao25Xiu-Wu Bian26Institute of Pathology and Southwest Cancer Centre, Southwest Hospital, The Third Military Medical UniversityInstitute of Pathology and Southwest Cancer Centre, Southwest Hospital, The Third Military Medical UniversityDepartment of Stem Cell Biology and Regenerative Medicine, Lerner Research Institute, Cleveland ClinicInstitute of Pathology and Southwest Cancer Centre, Southwest Hospital, The Third Military Medical UniversityInstitute of Pathology and Southwest Cancer Centre, Southwest Hospital, The Third Military Medical UniversityDepartment of Ophthalmology, Southwest Hospital, The Third Military Medical UniversityDepartment of Neurology, Xijing Hospital, The Fourth Military Medical UniversityInstitute of Pathology and Southwest Cancer Centre, Southwest Hospital, The Third Military Medical UniversityDepartment of Genetics, Stanford UniversityInstitute of Pathology and Southwest Cancer Centre, Southwest Hospital, The Third Military Medical UniversityInstitute of Pathology and Southwest Cancer Centre, Southwest Hospital, The Third Military Medical UniversityInstitute of Pathology and Southwest Cancer Centre, Southwest Hospital, The Third Military Medical UniversityInstitute of Pathology and Southwest Cancer Centre, Southwest Hospital, The Third Military Medical UniversityInstitute of Pathology and Southwest Cancer Centre, Southwest Hospital, The Third Military Medical UniversityInstitute of Pathology and Southwest Cancer Centre, Southwest Hospital, The Third Military Medical UniversityInstitute of Pathology and Southwest Cancer Centre, Southwest Hospital, The Third Military Medical UniversityDepartment of Stem Cell Biology and Regenerative Medicine, Lerner Research Institute, Cleveland ClinicDepartment of Stem Cell Biology and Regenerative Medicine, Lerner Research Institute, Cleveland ClinicDepartment of Stem Cell Biology and Regenerative Medicine, Lerner Research Institute, Cleveland ClinicDepartment of Neurosurgery, Southwest Hospital, The Third Military Medical UniversityInstitute of Pathology and Southwest Cancer Centre, Southwest Hospital, The Third Military Medical UniversityInstitute of Pathology and Southwest Cancer Centre, Southwest Hospital, The Third Military Medical UniversityInstitute of Pathology and Southwest Cancer Centre, Southwest Hospital, The Third Military Medical UniversityInstitute of Pathology and Southwest Cancer Centre, Southwest Hospital, The Third Military Medical UniversityDepartment of Stem Cell Biology and Regenerative Medicine, Lerner Research Institute, Cleveland ClinicDepartment of Stem Cell Biology and Regenerative Medicine, Lerner Research Institute, Cleveland ClinicInstitute of Pathology and Southwest Cancer Centre, Southwest Hospital, The Third Military Medical UniversityTumour-associated macrophages (TAMs) facilitate malignant growth of glioblastoma (GBM). Here, the authors show that TAMs support glioma stem cell renewal via paracrine signalling to the pleiotrophin receptor PTPRZ1 and that blocking this axis results in increased survival of tumour-bearing animals.https://doi.org/10.1038/ncomms15080
collection DOAJ
language English
format Article
sources DOAJ
author Yu Shi
Yi-Fang Ping
Wenchao Zhou
Zhi-Cheng He
Cong Chen
Bai-Shi-Jiao Bian
Lin Zhang
Lu Chen
Xun Lan
Xian-Chao Zhang
Kai Zhou
Qing Liu
Hua Long
Ti-Wei Fu
Xiao-Ning Zhang
Mian-Fu Cao
Zhi Huang
Xiaoguang Fang
Xiuxing Wang
Hua Feng
Xiao-Hong Yao
Shi-Cang Yu
You-Hong Cui
Xia Zhang
Jeremy N Rich
Shideng Bao
Xiu-Wu Bian
spellingShingle Yu Shi
Yi-Fang Ping
Wenchao Zhou
Zhi-Cheng He
Cong Chen
Bai-Shi-Jiao Bian
Lin Zhang
Lu Chen
Xun Lan
Xian-Chao Zhang
Kai Zhou
Qing Liu
Hua Long
Ti-Wei Fu
Xiao-Ning Zhang
Mian-Fu Cao
Zhi Huang
Xiaoguang Fang
Xiuxing Wang
Hua Feng
Xiao-Hong Yao
Shi-Cang Yu
You-Hong Cui
Xia Zhang
Jeremy N Rich
Shideng Bao
Xiu-Wu Bian
Tumour-associated macrophages secrete pleiotrophin to promote PTPRZ1 signalling in glioblastoma stem cells for tumour growth
Nature Communications
author_facet Yu Shi
Yi-Fang Ping
Wenchao Zhou
Zhi-Cheng He
Cong Chen
Bai-Shi-Jiao Bian
Lin Zhang
Lu Chen
Xun Lan
Xian-Chao Zhang
Kai Zhou
Qing Liu
Hua Long
Ti-Wei Fu
Xiao-Ning Zhang
Mian-Fu Cao
Zhi Huang
Xiaoguang Fang
Xiuxing Wang
Hua Feng
Xiao-Hong Yao
Shi-Cang Yu
You-Hong Cui
Xia Zhang
Jeremy N Rich
Shideng Bao
Xiu-Wu Bian
author_sort Yu Shi
title Tumour-associated macrophages secrete pleiotrophin to promote PTPRZ1 signalling in glioblastoma stem cells for tumour growth
title_short Tumour-associated macrophages secrete pleiotrophin to promote PTPRZ1 signalling in glioblastoma stem cells for tumour growth
title_full Tumour-associated macrophages secrete pleiotrophin to promote PTPRZ1 signalling in glioblastoma stem cells for tumour growth
title_fullStr Tumour-associated macrophages secrete pleiotrophin to promote PTPRZ1 signalling in glioblastoma stem cells for tumour growth
title_full_unstemmed Tumour-associated macrophages secrete pleiotrophin to promote PTPRZ1 signalling in glioblastoma stem cells for tumour growth
title_sort tumour-associated macrophages secrete pleiotrophin to promote ptprz1 signalling in glioblastoma stem cells for tumour growth
publisher Nature Publishing Group
series Nature Communications
issn 2041-1723
publishDate 2017-06-01
description Tumour-associated macrophages (TAMs) facilitate malignant growth of glioblastoma (GBM). Here, the authors show that TAMs support glioma stem cell renewal via paracrine signalling to the pleiotrophin receptor PTPRZ1 and that blocking this axis results in increased survival of tumour-bearing animals.
url https://doi.org/10.1038/ncomms15080
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