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Host non-inflammatory neutrophils mediate the engraftment of bioengineered vascular networks

Notwithstanding remarkable progress in vascular network engineering, implanted bioengineered microvessels largely fail to form anastomoses with the host vasculature. Here, we demonstrate that implants containing assembled human vascular networks (A-Grafts) fail to engraft due to their inability to e...

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Autores principales: Lin, Ruei-Zeng, Lee, Chin Nien, Moreno-Luna, Rafael, Neumeyer, Joseph, Piekarski, Breanna, Zhou, Pingzhu, Moses, Marsha A., Sachdev, Monisha, Pu, William T., Emani, Sitaram, Melero-Martin, Juan M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5578427/
https://www.ncbi.nlm.nih.gov/pubmed/28868207
http://dx.doi.org/10.1038/s41551-017-0081
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author Lin, Ruei-Zeng
Lee, Chin Nien
Moreno-Luna, Rafael
Neumeyer, Joseph
Piekarski, Breanna
Zhou, Pingzhu
Moses, Marsha A.
Sachdev, Monisha
Pu, William T.
Emani, Sitaram
Melero-Martin, Juan M.
author_facet Lin, Ruei-Zeng
Lee, Chin Nien
Moreno-Luna, Rafael
Neumeyer, Joseph
Piekarski, Breanna
Zhou, Pingzhu
Moses, Marsha A.
Sachdev, Monisha
Pu, William T.
Emani, Sitaram
Melero-Martin, Juan M.
author_sort Lin, Ruei-Zeng
collection PubMed
description Notwithstanding remarkable progress in vascular network engineering, implanted bioengineered microvessels largely fail to form anastomoses with the host vasculature. Here, we demonstrate that implants containing assembled human vascular networks (A-Grafts) fail to engraft due to their inability to engage non-inflammatory host neutrophils upon implantation into mice. In contrast, unassembled vascular cells (U-Grafts) readily engage alternatively polarized neutrophils, which in turn serve as indispensable mediators of vascular assembly and anastomosis. The depletion of host neutrophils abrogated vascularization in U-Grafts, whereas an adoptive transfer of neutrophils fully restored vascularization in myeloid-depleted mice. Neutrophil engagement was regulated by secreted factors and was progressively silenced as the vasculature matured. Exogenous addition of factors from U-Grafts reengaged neutrophils and enhanced revascularization in A-Grafts, a process that was recapitulated by blocking Notch signaling. Our data suggest that the pro-vascularization potential of neutrophils can be harnessed to improve the engraftment of bioengineered tissues.
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spelling pubmed-55784272017-12-13 Host non-inflammatory neutrophils mediate the engraftment of bioengineered vascular networks Lin, Ruei-Zeng Lee, Chin Nien Moreno-Luna, Rafael Neumeyer, Joseph Piekarski, Breanna Zhou, Pingzhu Moses, Marsha A. Sachdev, Monisha Pu, William T. Emani, Sitaram Melero-Martin, Juan M. Nat Biomed Eng Article Notwithstanding remarkable progress in vascular network engineering, implanted bioengineered microvessels largely fail to form anastomoses with the host vasculature. Here, we demonstrate that implants containing assembled human vascular networks (A-Grafts) fail to engraft due to their inability to engage non-inflammatory host neutrophils upon implantation into mice. In contrast, unassembled vascular cells (U-Grafts) readily engage alternatively polarized neutrophils, which in turn serve as indispensable mediators of vascular assembly and anastomosis. The depletion of host neutrophils abrogated vascularization in U-Grafts, whereas an adoptive transfer of neutrophils fully restored vascularization in myeloid-depleted mice. Neutrophil engagement was regulated by secreted factors and was progressively silenced as the vasculature matured. Exogenous addition of factors from U-Grafts reengaged neutrophils and enhanced revascularization in A-Grafts, a process that was recapitulated by blocking Notch signaling. Our data suggest that the pro-vascularization potential of neutrophils can be harnessed to improve the engraftment of bioengineered tissues. 2017-06-13 2017 /pmc/articles/PMC5578427/ /pubmed/28868207 http://dx.doi.org/10.1038/s41551-017-0081 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Lin, Ruei-Zeng
Lee, Chin Nien
Moreno-Luna, Rafael
Neumeyer, Joseph
Piekarski, Breanna
Zhou, Pingzhu
Moses, Marsha A.
Sachdev, Monisha
Pu, William T.
Emani, Sitaram
Melero-Martin, Juan M.
Host non-inflammatory neutrophils mediate the engraftment of bioengineered vascular networks
title Host non-inflammatory neutrophils mediate the engraftment of bioengineered vascular networks
title_full Host non-inflammatory neutrophils mediate the engraftment of bioengineered vascular networks
title_fullStr Host non-inflammatory neutrophils mediate the engraftment of bioengineered vascular networks
title_full_unstemmed Host non-inflammatory neutrophils mediate the engraftment of bioengineered vascular networks
title_short Host non-inflammatory neutrophils mediate the engraftment of bioengineered vascular networks
title_sort host non-inflammatory neutrophils mediate the engraftment of bioengineered vascular networks
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5578427/
https://www.ncbi.nlm.nih.gov/pubmed/28868207
http://dx.doi.org/10.1038/s41551-017-0081
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