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A bioactive material with dual integrin-targeting ligands regulates specific endogenous cell adhesion and promotes vascularized bone regeneration in adult and fetal bone defects

Significant progress has been made in designing bone materials capable of directing endogenous cells to promote vascularized bone regeneration. However, current strategies lack regulation of the specific endogenous cell populations for vascularized bone regeneration, thus leading to adverse tissue f...

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Autores principales: Hao, Dake, Liu, Ruiwu, Fernandez, Tomas Gonzalez, Pivetti, Christopher, Jackson, Jordan Elizabeth, Kulubya, Edwin Samuel, Jiang, Hong-Jiang, Ju, Hai-Yang, Liu, Wen-Liang, Panitch, Alyssa, Lam, Kit S., Leach, J. Kent, Farmer, Diana L., Wang, Aijun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: KeAi Publishing 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9160290/
https://www.ncbi.nlm.nih.gov/pubmed/35663336
http://dx.doi.org/10.1016/j.bioactmat.2022.05.027
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author Hao, Dake
Liu, Ruiwu
Fernandez, Tomas Gonzalez
Pivetti, Christopher
Jackson, Jordan Elizabeth
Kulubya, Edwin Samuel
Jiang, Hong-Jiang
Ju, Hai-Yang
Liu, Wen-Liang
Panitch, Alyssa
Lam, Kit S.
Leach, J. Kent
Farmer, Diana L.
Wang, Aijun
author_facet Hao, Dake
Liu, Ruiwu
Fernandez, Tomas Gonzalez
Pivetti, Christopher
Jackson, Jordan Elizabeth
Kulubya, Edwin Samuel
Jiang, Hong-Jiang
Ju, Hai-Yang
Liu, Wen-Liang
Panitch, Alyssa
Lam, Kit S.
Leach, J. Kent
Farmer, Diana L.
Wang, Aijun
author_sort Hao, Dake
collection PubMed
description Significant progress has been made in designing bone materials capable of directing endogenous cells to promote vascularized bone regeneration. However, current strategies lack regulation of the specific endogenous cell populations for vascularized bone regeneration, thus leading to adverse tissue formation and decreased regenerative efficiency. Here, we engineered a biomaterial to regulate endogenous cell adhesion and promote vascularized bone regeneration. The biomaterial works by presenting two synthetic ligands, LLP2A and LXW7, explicitly targeting integrins α4β1 and αvβ3, respectively, expressed on the surfaces of the cells related to bone formation and vascularization, such as mesenchymal stem cells (MSCs), osteoblasts, endothelial progenitor cells (EPCs), and endothelial cells (ECs). In vitro, the LLP2A/LXW7 modified biomaterial improved the adhesion of MSCs, osteoblasts, EPCs, and ECs via integrin α4β1 and αvβ3, respectively. In an adult rat calvarial bone defect model, the LLP2A/LXW7 modified biomaterial enhanced bone formation and vascularization by synergistically regulating endogenous cells with osteogenic and angiogenic potentials, such as DLX5(+) cells, osteocalcin(+) cells, CD34(+)/CD45(-) cells and CD31(+) cells. In a fetal sheep spinal bone defect model, the LLP2A/LXW7 modified biomaterial augmented bone formation and vascularization without any adverse effects. This innovative biomaterial offers an off-the-shelf, easy-to-use, and biologically safe product suitable for vascularized bone regeneration in both fetal and adult disease environments.
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spelling pubmed-91602902022-06-04 A bioactive material with dual integrin-targeting ligands regulates specific endogenous cell adhesion and promotes vascularized bone regeneration in adult and fetal bone defects Hao, Dake Liu, Ruiwu Fernandez, Tomas Gonzalez Pivetti, Christopher Jackson, Jordan Elizabeth Kulubya, Edwin Samuel Jiang, Hong-Jiang Ju, Hai-Yang Liu, Wen-Liang Panitch, Alyssa Lam, Kit S. Leach, J. Kent Farmer, Diana L. Wang, Aijun Bioact Mater Article Significant progress has been made in designing bone materials capable of directing endogenous cells to promote vascularized bone regeneration. However, current strategies lack regulation of the specific endogenous cell populations for vascularized bone regeneration, thus leading to adverse tissue formation and decreased regenerative efficiency. Here, we engineered a biomaterial to regulate endogenous cell adhesion and promote vascularized bone regeneration. The biomaterial works by presenting two synthetic ligands, LLP2A and LXW7, explicitly targeting integrins α4β1 and αvβ3, respectively, expressed on the surfaces of the cells related to bone formation and vascularization, such as mesenchymal stem cells (MSCs), osteoblasts, endothelial progenitor cells (EPCs), and endothelial cells (ECs). In vitro, the LLP2A/LXW7 modified biomaterial improved the adhesion of MSCs, osteoblasts, EPCs, and ECs via integrin α4β1 and αvβ3, respectively. In an adult rat calvarial bone defect model, the LLP2A/LXW7 modified biomaterial enhanced bone formation and vascularization by synergistically regulating endogenous cells with osteogenic and angiogenic potentials, such as DLX5(+) cells, osteocalcin(+) cells, CD34(+)/CD45(-) cells and CD31(+) cells. In a fetal sheep spinal bone defect model, the LLP2A/LXW7 modified biomaterial augmented bone formation and vascularization without any adverse effects. This innovative biomaterial offers an off-the-shelf, easy-to-use, and biologically safe product suitable for vascularized bone regeneration in both fetal and adult disease environments. KeAi Publishing 2022-05-29 /pmc/articles/PMC9160290/ /pubmed/35663336 http://dx.doi.org/10.1016/j.bioactmat.2022.05.027 Text en © 2022 The Authors https://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
Hao, Dake
Liu, Ruiwu
Fernandez, Tomas Gonzalez
Pivetti, Christopher
Jackson, Jordan Elizabeth
Kulubya, Edwin Samuel
Jiang, Hong-Jiang
Ju, Hai-Yang
Liu, Wen-Liang
Panitch, Alyssa
Lam, Kit S.
Leach, J. Kent
Farmer, Diana L.
Wang, Aijun
A bioactive material with dual integrin-targeting ligands regulates specific endogenous cell adhesion and promotes vascularized bone regeneration in adult and fetal bone defects
title A bioactive material with dual integrin-targeting ligands regulates specific endogenous cell adhesion and promotes vascularized bone regeneration in adult and fetal bone defects
title_full A bioactive material with dual integrin-targeting ligands regulates specific endogenous cell adhesion and promotes vascularized bone regeneration in adult and fetal bone defects
title_fullStr A bioactive material with dual integrin-targeting ligands regulates specific endogenous cell adhesion and promotes vascularized bone regeneration in adult and fetal bone defects
title_full_unstemmed A bioactive material with dual integrin-targeting ligands regulates specific endogenous cell adhesion and promotes vascularized bone regeneration in adult and fetal bone defects
title_short A bioactive material with dual integrin-targeting ligands regulates specific endogenous cell adhesion and promotes vascularized bone regeneration in adult and fetal bone defects
title_sort bioactive material with dual integrin-targeting ligands regulates specific endogenous cell adhesion and promotes vascularized bone regeneration in adult and fetal bone defects
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9160290/
https://www.ncbi.nlm.nih.gov/pubmed/35663336
http://dx.doi.org/10.1016/j.bioactmat.2022.05.027
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