Harnessing IL‐10 induced anti‐inflammatory response in maturing macrophages in presence of electrospun dexamethasone‐loaded PLLA scaffold

Author:

Iraji Asiabadi Arash1,Esmaeil Nafiseh2,Zargar Kharazi Anousheh13ORCID,Dabiri Arezou4,Varshosaz Jaleh5

Affiliation:

1. Tissue Engineering and Nanotechnology, School of Advanced Technologies in Medicine, Isfahan University of Medical Sciences Isfahan Iran

2. Department of Immunology School of Medicine, Isfahan University of Medical Sciences Isfahan Iran

3. Applied Physiology Research Center, Cardiovascular Research Institute, Isfahan University of Medical Sciences Isfahan Iran

4. Isfahan Cardiovascular Research Institute, Isfahan University of Medical Sciences Isfahan Iran

5. Department of Pharmaceutics, School of Pharmacy and Pharmaceutical Sciences, Isfahan University of Medical Sciences Isfahan Iran

Abstract

AbstractThe ultimate goal of tissue engineering is to repair and regenerate damaged tissue or organ. Achieving this goal requires blood vessel networks to supply oxygen and nutrients to new forming tissues. Macrophages are part of the immune system whose behavior plays a significant role in angiogenesis and blood vessel formation. On the other hand, macrophages are versatile cells that change their behavior in response to environmental stimuli. Given that implantation of a biomaterial is followed by inflammation; therefore, we reasoned that this inflammatory condition in tissue spaces modulates the final phenotype of macrophages. Also, we hypothesized that anti‐inflammatory glucocorticoid dexamethasone improves modulating macrophages behavior. To check these concepts, we investigated the macrophages that had matured in an inflammatory media. Furthermore, we examined macrophages' behavior after maturation on a dexamethasone‐containing scaffold and analyzed how the behavioral change of maturing macrophages stimulates other macrophages in the same environment. In this study, the expression of pro‐inflammatory markers TNFa and NFκB1 along with pro‐healing markers IL‐10 and CD163 were investigated to study the behavior of macrophages. Our results showed that macrophages that were matured in the inflammatory media in vitro increase expression of IL‐10, which in turn decreased the expression of pro‐inflammatory markers TNFa and NFκB in maturing macrophages. Also, macrophages that were matured on dexamethasone‐containing scaffolds decreased the expression of IL‐10, TNFa, and NFκB and increase the expression of CD163 compared to the control group. Moreover, the modulation of anti‐inflammatory response in maturing macrophages on dexamethasone‐containing scaffold resulted in increased expression of TNFa and CD163 by other macrophages in the same media. The results obtained in this study, proposing strategies to improve healing through controlling the behavior of maturing macrophages and present a promising perspective for inflammation control using tissue engineering scaffolds.

Publisher

Wiley

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