Implantation of scaffolds may elicit a host foreign body response triggered by monocyte/macrophage lineage cells. Growing evidence suggests that topographical cues of scaffolds play an important role in MSC functionality. In this work, we examined whether surface topographical features can regulate paracrine interactions that MSCs establish with macrophages. Three-dimensional (3D) topography sensing drives MSCs into a spatial arrangement that stimulates the production of the anti-inflammatory proteins PGE(2) and TSG-6. Compared to two-dimensional (2D) settings, 3D arrangement of MSCs co-cultured with macrophages leads to an important decrease in the secretion of soluble factors related with inflammation and chemotaxis including IL-6 and MCP...
Macrophages are master regulators of immune responses towards implanted biomaterials. The activation...
Mesenchymal stromal cells (MSC) have emerged as promising cell therapies for multiple conditions ba...
Adverse immune reactions prevent clinical translation of numerous implantable devices and materials....
AbstractImplantation of scaffolds may elicit a host foreign body response triggered by monocyte/macr...
© 2020 The Authors. Published by WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim Macrophages play a cen...
Macrophages play a central role in orchestrating immune responses to foreign materials, which are of...
Monocyte-derived macrophages arrive early at a newly implanted device and affect the performance of ...
Macrophages exhibit phenotypic plasticity, as they have the ability to switch their functional pheno...
The implantation of biomaterial devices can negatively impact the local microenvironment through sev...
Macrophages are involved in almost every aspect of biological systems and include development, homeo...
Macrophages are plastic innate immune cells, involved in both inflammation and tissue repair process...
Adverse immune reactions prevent clinical translation of numerous implantable devices and materials....
Osseointegration, the direct attachment of living bone to an implant surface, is necessary for the s...
Adverse immune reactions prevent clinical translation of numerous implantable devices and materials....
Background: Immunoregulatory capacity of mesenchymal stem cells (MSC) is triggered by the inflammato...
Macrophages are master regulators of immune responses towards implanted biomaterials. The activation...
Mesenchymal stromal cells (MSC) have emerged as promising cell therapies for multiple conditions ba...
Adverse immune reactions prevent clinical translation of numerous implantable devices and materials....
AbstractImplantation of scaffolds may elicit a host foreign body response triggered by monocyte/macr...
© 2020 The Authors. Published by WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim Macrophages play a cen...
Macrophages play a central role in orchestrating immune responses to foreign materials, which are of...
Monocyte-derived macrophages arrive early at a newly implanted device and affect the performance of ...
Macrophages exhibit phenotypic plasticity, as they have the ability to switch their functional pheno...
The implantation of biomaterial devices can negatively impact the local microenvironment through sev...
Macrophages are involved in almost every aspect of biological systems and include development, homeo...
Macrophages are plastic innate immune cells, involved in both inflammation and tissue repair process...
Adverse immune reactions prevent clinical translation of numerous implantable devices and materials....
Osseointegration, the direct attachment of living bone to an implant surface, is necessary for the s...
Adverse immune reactions prevent clinical translation of numerous implantable devices and materials....
Background: Immunoregulatory capacity of mesenchymal stem cells (MSC) is triggered by the inflammato...
Macrophages are master regulators of immune responses towards implanted biomaterials. The activation...
Mesenchymal stromal cells (MSC) have emerged as promising cell therapies for multiple conditions ba...
Adverse immune reactions prevent clinical translation of numerous implantable devices and materials....