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The wonders of BMP9: From mesenchymal stem cell differentiation, angiogenesis, neurogenesis, tumorigenesis, and metabolism to regenerative medicine

Although bone morphogenetic proteins (BMPs) initially showed effective induction of ectopic bone growth in muscle, it has since been determined that these proteins, as members of the TGF-β superfamily, play a diverse and critical array of biological roles. These roles include regulating skeletal and...

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Autores principales: Mostafa, Sami, Pakvasa, Mikhail, Coalson, Elam, Zhu, Allen, Alverdy, Alex, Castillo, Hector, Fan, Jiaming, Li, Alex, Feng, Yixiao, Wu, Di, Bishop, Elliott, Du, Scott, Spezia, Mia, Li, Alissa, Hagag, Ofir, Deng, Alison, Liu, Winny, Li, Mingyang, Ho, Sherwin S., Athiviraham, Aravind, Lee, Michael J., Wolf, Jennifer Moriatis, Ameer, Guillermo A., Luu, Hue H., Haydon, Rex C., Strelzow, Jason, Hynes, Kelly, He, Tong-Chuan, Reid, Russell R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Chongqing Medical University 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6997590/
https://www.ncbi.nlm.nih.gov/pubmed/32042861
http://dx.doi.org/10.1016/j.gendis.2019.07.003
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author Mostafa, Sami
Pakvasa, Mikhail
Coalson, Elam
Zhu, Allen
Alverdy, Alex
Castillo, Hector
Fan, Jiaming
Li, Alex
Feng, Yixiao
Wu, Di
Bishop, Elliott
Du, Scott
Spezia, Mia
Li, Alissa
Hagag, Ofir
Deng, Alison
Liu, Winny
Li, Mingyang
Ho, Sherwin S.
Athiviraham, Aravind
Lee, Michael J.
Wolf, Jennifer Moriatis
Ameer, Guillermo A.
Luu, Hue H.
Haydon, Rex C.
Strelzow, Jason
Hynes, Kelly
He, Tong-Chuan
Reid, Russell R.
author_facet Mostafa, Sami
Pakvasa, Mikhail
Coalson, Elam
Zhu, Allen
Alverdy, Alex
Castillo, Hector
Fan, Jiaming
Li, Alex
Feng, Yixiao
Wu, Di
Bishop, Elliott
Du, Scott
Spezia, Mia
Li, Alissa
Hagag, Ofir
Deng, Alison
Liu, Winny
Li, Mingyang
Ho, Sherwin S.
Athiviraham, Aravind
Lee, Michael J.
Wolf, Jennifer Moriatis
Ameer, Guillermo A.
Luu, Hue H.
Haydon, Rex C.
Strelzow, Jason
Hynes, Kelly
He, Tong-Chuan
Reid, Russell R.
author_sort Mostafa, Sami
collection PubMed
description Although bone morphogenetic proteins (BMPs) initially showed effective induction of ectopic bone growth in muscle, it has since been determined that these proteins, as members of the TGF-β superfamily, play a diverse and critical array of biological roles. These roles include regulating skeletal and bone formation, angiogenesis, and development and homeostasis of multiple organ systems. Disruptions of the members of the TGF-β/BMP superfamily result in severe skeletal and extra-skeletal irregularities, suggesting high therapeutic potential from understanding this family of BMP proteins. Although it was once one of the least characterized BMPs, BMP9 has revealed itself to have the highest osteogenic potential across numerous experiments both in vitro and in vivo, with recent studies suggesting that the exceptional potency of BMP9 may result from unique signaling pathways that differentiate it from other BMPs. The effectiveness of BMP9 in inducing bone formation was recently revealed in promising experiments that demonstrated efficacy in the repair of critical sized cranial defects as well as compatibility with bone-inducing bio-implants, revealing the great translational promise of BMP9. Furthermore, emerging evidence indicates that, besides its osteogenic activity, BMP9 exerts a broad range of biological functions, including stem cell differentiation, angiogenesis, neurogenesis, tumorigenesis, and metabolism. This review aims to summarize our current understanding of BMP9 across biology and the body.
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spelling pubmed-69975902020-02-10 The wonders of BMP9: From mesenchymal stem cell differentiation, angiogenesis, neurogenesis, tumorigenesis, and metabolism to regenerative medicine Mostafa, Sami Pakvasa, Mikhail Coalson, Elam Zhu, Allen Alverdy, Alex Castillo, Hector Fan, Jiaming Li, Alex Feng, Yixiao Wu, Di Bishop, Elliott Du, Scott Spezia, Mia Li, Alissa Hagag, Ofir Deng, Alison Liu, Winny Li, Mingyang Ho, Sherwin S. Athiviraham, Aravind Lee, Michael J. Wolf, Jennifer Moriatis Ameer, Guillermo A. Luu, Hue H. Haydon, Rex C. Strelzow, Jason Hynes, Kelly He, Tong-Chuan Reid, Russell R. Genes Dis Article Although bone morphogenetic proteins (BMPs) initially showed effective induction of ectopic bone growth in muscle, it has since been determined that these proteins, as members of the TGF-β superfamily, play a diverse and critical array of biological roles. These roles include regulating skeletal and bone formation, angiogenesis, and development and homeostasis of multiple organ systems. Disruptions of the members of the TGF-β/BMP superfamily result in severe skeletal and extra-skeletal irregularities, suggesting high therapeutic potential from understanding this family of BMP proteins. Although it was once one of the least characterized BMPs, BMP9 has revealed itself to have the highest osteogenic potential across numerous experiments both in vitro and in vivo, with recent studies suggesting that the exceptional potency of BMP9 may result from unique signaling pathways that differentiate it from other BMPs. The effectiveness of BMP9 in inducing bone formation was recently revealed in promising experiments that demonstrated efficacy in the repair of critical sized cranial defects as well as compatibility with bone-inducing bio-implants, revealing the great translational promise of BMP9. Furthermore, emerging evidence indicates that, besides its osteogenic activity, BMP9 exerts a broad range of biological functions, including stem cell differentiation, angiogenesis, neurogenesis, tumorigenesis, and metabolism. This review aims to summarize our current understanding of BMP9 across biology and the body. Chongqing Medical University 2019-07-24 /pmc/articles/PMC6997590/ /pubmed/32042861 http://dx.doi.org/10.1016/j.gendis.2019.07.003 Text en © 2019 Chongqing Medical University. Production and hosting by Elsevier B.V. http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Mostafa, Sami
Pakvasa, Mikhail
Coalson, Elam
Zhu, Allen
Alverdy, Alex
Castillo, Hector
Fan, Jiaming
Li, Alex
Feng, Yixiao
Wu, Di
Bishop, Elliott
Du, Scott
Spezia, Mia
Li, Alissa
Hagag, Ofir
Deng, Alison
Liu, Winny
Li, Mingyang
Ho, Sherwin S.
Athiviraham, Aravind
Lee, Michael J.
Wolf, Jennifer Moriatis
Ameer, Guillermo A.
Luu, Hue H.
Haydon, Rex C.
Strelzow, Jason
Hynes, Kelly
He, Tong-Chuan
Reid, Russell R.
The wonders of BMP9: From mesenchymal stem cell differentiation, angiogenesis, neurogenesis, tumorigenesis, and metabolism to regenerative medicine
title The wonders of BMP9: From mesenchymal stem cell differentiation, angiogenesis, neurogenesis, tumorigenesis, and metabolism to regenerative medicine
title_full The wonders of BMP9: From mesenchymal stem cell differentiation, angiogenesis, neurogenesis, tumorigenesis, and metabolism to regenerative medicine
title_fullStr The wonders of BMP9: From mesenchymal stem cell differentiation, angiogenesis, neurogenesis, tumorigenesis, and metabolism to regenerative medicine
title_full_unstemmed The wonders of BMP9: From mesenchymal stem cell differentiation, angiogenesis, neurogenesis, tumorigenesis, and metabolism to regenerative medicine
title_short The wonders of BMP9: From mesenchymal stem cell differentiation, angiogenesis, neurogenesis, tumorigenesis, and metabolism to regenerative medicine
title_sort wonders of bmp9: from mesenchymal stem cell differentiation, angiogenesis, neurogenesis, tumorigenesis, and metabolism to regenerative medicine
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6997590/
https://www.ncbi.nlm.nih.gov/pubmed/32042861
http://dx.doi.org/10.1016/j.gendis.2019.07.003
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