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Safeguarding Stem Cell-Based Regenerative Therapy against Iatrogenic Cancerogenesis: Transgenic Expression of DNASE1, DNASE1L3, DNASE2, DFFB Controlled By POLA1 Promoter in Proliferating and Directed Differentiation Resisting Human Autologous Pluripotent Induced Stem Cells Leads to their Death
INTRODUCTION: The worst possible complication of using stem cells for regenerative therapy is iatrogenic cancerogenesis. The ultimate goal of our work is to develop a self-triggering feedback mechanism aimed at causing death of all stem cells, which resist directed differentiation, keep proliferatin...
Autores principales: | , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
2013
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4103669/ https://www.ncbi.nlm.nih.gov/pubmed/25045589 http://dx.doi.org/10.4172/2157-7633.S9-005 |
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author | Malecki, Marek LaVanne, Christine Alhambra, Dominique Dodivenaka, Chaitanya Nagel, Sarah Malecki, Raf |
author_facet | Malecki, Marek LaVanne, Christine Alhambra, Dominique Dodivenaka, Chaitanya Nagel, Sarah Malecki, Raf |
author_sort | Malecki, Marek |
collection | PubMed |
description | INTRODUCTION: The worst possible complication of using stem cells for regenerative therapy is iatrogenic cancerogenesis. The ultimate goal of our work is to develop a self-triggering feedback mechanism aimed at causing death of all stem cells, which resist directed differentiation, keep proliferating, and can grow into tumors. SPECIFIC AIM: The specific aim was threefold: (1) to genetically engineer the DNA constructs for the human, recombinant DNASE1, DNASE1L3, DNASE2, DFFB controlled by POLA promoter; (2) to bioengineer anti-SSEA-4 antibody guided vectors delivering transgenes to human undifferentiated and proliferating pluripotent stem cells; (3) to cause death of proliferating and directed differentiation resisting stem cells by transgenic expression of the human recombinant the DNases (hrDNases). METHODS: The DNA constructs for the human, recombinant DNASE1, DNASE1L3, DNASE2, DFFB controlled by POLA promoter were genetically engineered. The vectors targeting specifically SSEA-4 expressing stem cells were bioengineered. The healthy volunteers’ bone marrow mononuclear cells (BMMCs) were induced into human, autologous, pluripotent stem cells with non-integrating plasmids. Directed differentiation of the induced stem cells into endothelial cells was accomplished with EGF and BMP. The anti-SSEA 4 antibodies’ guided DNA vectors delivered the transgenes for the human recombinant DNases’ into proliferating stem cells. RESULTS: Differentiation of the pluripotent induced stem cells into the endothelial cells was verified by highlighting formation of tight and adherens junctions through transgenic expression of recombinant fluorescent fusion proteins: VE cadherin, claudin, zona occludens 1, and catenin. Proliferation of the stem cells was determined through highlighting transgenic expression of recombinant fluorescent proteins controlled by POLA promoter, while also reporting expression of the transgenes for the hrDNases. Expression of the transgenes for the DNases resulted in complete collapse of the chromatin architecture and degradation of the proliferating cells’ genomic DNA. The proliferating stem cells, but not the differentiating ones, were effectively induced to die. CONCLUSION: Herein, we describe attaining the proof-of-concept for the strategy, whereby transgenic expression of the genetically engineered human recombinant DNases in proliferating and directed differentiation resisting stem cells leads to their death. This novel strategy reduces the risk of iatrogenic neoplasms in stem cell therapy. |
format | Online Article Text |
id | pubmed-4103669 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2013 |
record_format | MEDLINE/PubMed |
spelling | pubmed-41036692014-07-18 Safeguarding Stem Cell-Based Regenerative Therapy against Iatrogenic Cancerogenesis: Transgenic Expression of DNASE1, DNASE1L3, DNASE2, DFFB Controlled By POLA1 Promoter in Proliferating and Directed Differentiation Resisting Human Autologous Pluripotent Induced Stem Cells Leads to their Death Malecki, Marek LaVanne, Christine Alhambra, Dominique Dodivenaka, Chaitanya Nagel, Sarah Malecki, Raf J Stem Cell Res Ther Article INTRODUCTION: The worst possible complication of using stem cells for regenerative therapy is iatrogenic cancerogenesis. The ultimate goal of our work is to develop a self-triggering feedback mechanism aimed at causing death of all stem cells, which resist directed differentiation, keep proliferating, and can grow into tumors. SPECIFIC AIM: The specific aim was threefold: (1) to genetically engineer the DNA constructs for the human, recombinant DNASE1, DNASE1L3, DNASE2, DFFB controlled by POLA promoter; (2) to bioengineer anti-SSEA-4 antibody guided vectors delivering transgenes to human undifferentiated and proliferating pluripotent stem cells; (3) to cause death of proliferating and directed differentiation resisting stem cells by transgenic expression of the human recombinant the DNases (hrDNases). METHODS: The DNA constructs for the human, recombinant DNASE1, DNASE1L3, DNASE2, DFFB controlled by POLA promoter were genetically engineered. The vectors targeting specifically SSEA-4 expressing stem cells were bioengineered. The healthy volunteers’ bone marrow mononuclear cells (BMMCs) were induced into human, autologous, pluripotent stem cells with non-integrating plasmids. Directed differentiation of the induced stem cells into endothelial cells was accomplished with EGF and BMP. The anti-SSEA 4 antibodies’ guided DNA vectors delivered the transgenes for the human recombinant DNases’ into proliferating stem cells. RESULTS: Differentiation of the pluripotent induced stem cells into the endothelial cells was verified by highlighting formation of tight and adherens junctions through transgenic expression of recombinant fluorescent fusion proteins: VE cadherin, claudin, zona occludens 1, and catenin. Proliferation of the stem cells was determined through highlighting transgenic expression of recombinant fluorescent proteins controlled by POLA promoter, while also reporting expression of the transgenes for the hrDNases. Expression of the transgenes for the DNases resulted in complete collapse of the chromatin architecture and degradation of the proliferating cells’ genomic DNA. The proliferating stem cells, but not the differentiating ones, were effectively induced to die. CONCLUSION: Herein, we describe attaining the proof-of-concept for the strategy, whereby transgenic expression of the genetically engineered human recombinant DNases in proliferating and directed differentiation resisting stem cells leads to their death. This novel strategy reduces the risk of iatrogenic neoplasms in stem cell therapy. 2013-07-22 /pmc/articles/PMC4103669/ /pubmed/25045589 http://dx.doi.org/10.4172/2157-7633.S9-005 Text en Copyright: © 2013 Malecki M, et al. http://creativecommons.org/licenses/by-nc/3.0/ 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 | Article Malecki, Marek LaVanne, Christine Alhambra, Dominique Dodivenaka, Chaitanya Nagel, Sarah Malecki, Raf Safeguarding Stem Cell-Based Regenerative Therapy against Iatrogenic Cancerogenesis: Transgenic Expression of DNASE1, DNASE1L3, DNASE2, DFFB Controlled By POLA1 Promoter in Proliferating and Directed Differentiation Resisting Human Autologous Pluripotent Induced Stem Cells Leads to their Death |
title | Safeguarding Stem Cell-Based Regenerative Therapy against Iatrogenic
Cancerogenesis: Transgenic Expression of DNASE1,
DNASE1L3, DNASE2, DFFB
Controlled By POLA1 Promoter in Proliferating and Directed
Differentiation Resisting Human Autologous Pluripotent Induced Stem Cells Leads
to their Death |
title_full | Safeguarding Stem Cell-Based Regenerative Therapy against Iatrogenic
Cancerogenesis: Transgenic Expression of DNASE1,
DNASE1L3, DNASE2, DFFB
Controlled By POLA1 Promoter in Proliferating and Directed
Differentiation Resisting Human Autologous Pluripotent Induced Stem Cells Leads
to their Death |
title_fullStr | Safeguarding Stem Cell-Based Regenerative Therapy against Iatrogenic
Cancerogenesis: Transgenic Expression of DNASE1,
DNASE1L3, DNASE2, DFFB
Controlled By POLA1 Promoter in Proliferating and Directed
Differentiation Resisting Human Autologous Pluripotent Induced Stem Cells Leads
to their Death |
title_full_unstemmed | Safeguarding Stem Cell-Based Regenerative Therapy against Iatrogenic
Cancerogenesis: Transgenic Expression of DNASE1,
DNASE1L3, DNASE2, DFFB
Controlled By POLA1 Promoter in Proliferating and Directed
Differentiation Resisting Human Autologous Pluripotent Induced Stem Cells Leads
to their Death |
title_short | Safeguarding Stem Cell-Based Regenerative Therapy against Iatrogenic
Cancerogenesis: Transgenic Expression of DNASE1,
DNASE1L3, DNASE2, DFFB
Controlled By POLA1 Promoter in Proliferating and Directed
Differentiation Resisting Human Autologous Pluripotent Induced Stem Cells Leads
to their Death |
title_sort | safeguarding stem cell-based regenerative therapy against iatrogenic
cancerogenesis: transgenic expression of dnase1,
dnase1l3, dnase2, dffb
controlled by pola1 promoter in proliferating and directed
differentiation resisting human autologous pluripotent induced stem cells leads
to their death |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4103669/ https://www.ncbi.nlm.nih.gov/pubmed/25045589 http://dx.doi.org/10.4172/2157-7633.S9-005 |
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