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A biotherapy based on PSCs-in-3D spheroid-ameliorated biologics depletes in vivo cancer-sustaining stem cells

CSCs are able to survive routine anticancer procedures and peripheral-immune attack. Here we develop and detail a framework of CSC elimination governed by 3D-biologics. Pluripotent cells-engineered 3D-biologics (PMSB) and control non-3D-biologics were prepared from placenta-based somatic stem cells...

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Autores principales: Zhang, Wenhui, Yang, Huanhuan, Zhang, Yanna, Lu, Yanan, Zhou, Tianlin, Li, Meng, Wen, Yanjun, Lin, Xiaojuan, Xiang, Rong, Chen, Xiancheng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4747367/
https://www.ncbi.nlm.nih.gov/pubmed/26512920
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author Zhang, Wenhui
Yang, Huanhuan
Zhang, Yanna
Lu, Yanan
Zhou, Tianlin
Li, Meng
Wen, Yanjun
Lin, Xiaojuan
Xiang, Rong
Chen, Xiancheng
author_facet Zhang, Wenhui
Yang, Huanhuan
Zhang, Yanna
Lu, Yanan
Zhou, Tianlin
Li, Meng
Wen, Yanjun
Lin, Xiaojuan
Xiang, Rong
Chen, Xiancheng
author_sort Zhang, Wenhui
collection PubMed
description CSCs are able to survive routine anticancer procedures and peripheral-immune attack. Here we develop and detail a framework of CSC elimination governed by 3D-biologics. Pluripotent cells-engineered 3D-biologics (PMSB) and control non-3D-biologics were prepared from placenta-based somatic stem cells (PSCs) and inoculated respectively into senile hosts bearing progressive mammary, lung, colon carcinomas and melanoma. We demonstrate that PMSB evokes in vivo central-immune microenvironment with subsequent re-expression of thymosin-α1 ~ β4 in thymic cortex-medulla borderline for rapid MHC-unrestricted renewal of γδT-dominated immunocompetence. The post-renewal γδT-subsets could accurately bind and drive CSCs into apoptosis. Finally, with central/peripheral integral microenvironment renewal and TERT/Wnt/β-catenin pathway blockade, the CSC-subsets are fully depleted, leading to substantial cure of diverse tumors by PMSB inoculation (P < 0.01), yet not by non-3D-biologics. Thus, our study may contribute to open up a new avenue for tumor remission via pluripotent cells-engineered 3D-biologics addressing quick renewal of central-thymus and peripheral immune-microenvironment.
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spelling pubmed-47473672016-03-24 A biotherapy based on PSCs-in-3D spheroid-ameliorated biologics depletes in vivo cancer-sustaining stem cells Zhang, Wenhui Yang, Huanhuan Zhang, Yanna Lu, Yanan Zhou, Tianlin Li, Meng Wen, Yanjun Lin, Xiaojuan Xiang, Rong Chen, Xiancheng Oncotarget Research Paper CSCs are able to survive routine anticancer procedures and peripheral-immune attack. Here we develop and detail a framework of CSC elimination governed by 3D-biologics. Pluripotent cells-engineered 3D-biologics (PMSB) and control non-3D-biologics were prepared from placenta-based somatic stem cells (PSCs) and inoculated respectively into senile hosts bearing progressive mammary, lung, colon carcinomas and melanoma. We demonstrate that PMSB evokes in vivo central-immune microenvironment with subsequent re-expression of thymosin-α1 ~ β4 in thymic cortex-medulla borderline for rapid MHC-unrestricted renewal of γδT-dominated immunocompetence. The post-renewal γδT-subsets could accurately bind and drive CSCs into apoptosis. Finally, with central/peripheral integral microenvironment renewal and TERT/Wnt/β-catenin pathway blockade, the CSC-subsets are fully depleted, leading to substantial cure of diverse tumors by PMSB inoculation (P < 0.01), yet not by non-3D-biologics. Thus, our study may contribute to open up a new avenue for tumor remission via pluripotent cells-engineered 3D-biologics addressing quick renewal of central-thymus and peripheral immune-microenvironment. Impact Journals LLC 2015-10-19 /pmc/articles/PMC4747367/ /pubmed/26512920 Text en Copyright: © 2015 Zhang et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Zhang, Wenhui
Yang, Huanhuan
Zhang, Yanna
Lu, Yanan
Zhou, Tianlin
Li, Meng
Wen, Yanjun
Lin, Xiaojuan
Xiang, Rong
Chen, Xiancheng
A biotherapy based on PSCs-in-3D spheroid-ameliorated biologics depletes in vivo cancer-sustaining stem cells
title A biotherapy based on PSCs-in-3D spheroid-ameliorated biologics depletes in vivo cancer-sustaining stem cells
title_full A biotherapy based on PSCs-in-3D spheroid-ameliorated biologics depletes in vivo cancer-sustaining stem cells
title_fullStr A biotherapy based on PSCs-in-3D spheroid-ameliorated biologics depletes in vivo cancer-sustaining stem cells
title_full_unstemmed A biotherapy based on PSCs-in-3D spheroid-ameliorated biologics depletes in vivo cancer-sustaining stem cells
title_short A biotherapy based on PSCs-in-3D spheroid-ameliorated biologics depletes in vivo cancer-sustaining stem cells
title_sort biotherapy based on pscs-in-3d spheroid-ameliorated biologics depletes in vivo cancer-sustaining stem cells
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4747367/
https://www.ncbi.nlm.nih.gov/pubmed/26512920
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