Literature DB >> 25837415

Interleukin-10 conjugated electrospun polycaprolactone (PCL) nanofibre scaffolds for promoting alternatively activated (M2) macrophages around the peripheral nerve in vivo.

Jason R Potas1, Farhia Haque2, Francesca L Maclean3, David R Nisbet3.   

Abstract

Macrophages play a key role in tissue regeneration following peripheral nerve injury by preparing the surrounding parenchyma for regeneration, however, they can be damaging if the response is excessive. Interleukin 10 (IL-10) is a cytokine that promotes macrophages toward an anti-inflammatory/wound healing state (M2 phenotype). The bioactive half-life of IL-10 is dependent on the cellular microenvironment and ranges from minutes to hours in vivo. Our objective was to extend the in vivo bioavailability and bioactivity of IL-10 by attaching the protein onto nanofibrous scaffolds and demonstrating increased expression levels of M2 macrophages when placed around healthy intact peripheral nerves. IL-10 was adsorbed and covalently bound to electrospun poly(ε-caprolactone) (PCL) nanofibrous scaffolds. In vivo bioavailability and bioactivity of IL-10 was confirmed by wrapping IL-10 conjugated nanofibres around the sciatic nerves of Wistar rats and quantifying M2 macrophages immunohistochemically double labelled with ED1 and either arginase 1 or CD206. IL-10 remained immobilised to PCL scaffolds for more than 120 days when stored in phosphate buffered saline at room temperature and for up to 14d ays when implanted around the sciatic nerve. IL-10 conjugated nanofibres successfully induced macrophage polarisation towards the M2 activated state within the scaffold material as well as the adjacent tissue surrounding the nerve. PCL biofunctionalised nanofibres are useful for manipulating the cellular microenvironment. Materials such as these could potentially lead to new therapeutic strategies for nervous tissue injuries as well as provide novel investigative tools for biological research.
Copyright © 2015 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Artificial nerve graft; Connective tissue; Electrospinning; Neural tissue engineering; Perineural; Sub-micron scaffolds

Mesh:

Substances:

Year:  2015        PMID: 25837415     DOI: 10.1016/j.jim.2015.03.013

Source DB:  PubMed          Journal:  J Immunol Methods        ISSN: 0022-1759            Impact factor:   2.303


  11 in total

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Authors:  Wei Chang; Munish B Shah; Gan Zhou; Kevin Walsh; Swetha Rudraiah; Sangamesh G Kumbar; Xiaojun Yu
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Journal:  Neural Regen Res       Date:  2018-09       Impact factor: 5.135

7.  Dental pulp-derived stem cell conditioned medium to regenerate peripheral nerves in a novel animal model of dysphagia.

Authors:  Takeshi Tsuruta; Kiyoshi Sakai; Junna Watanabe; Wataru Katagiri; Hideharu Hibi
Journal:  PLoS One       Date:  2018-12-11       Impact factor: 3.240

Review 8.  Review: Biomaterial systems to resolve brain inflammation after traumatic injury.

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Review 9.  New insights into M1/M2 macrophages: key modulators in cancer progression.

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Review 10.  Biomaterial and Therapeutic Approaches for the Manipulation of Macrophage Phenotype in Peripheral and Central Nerve Repair.

Authors:  Adrian Dervan; Antonio Franchi; Francisco R Almeida-Gonzalez; Jennifer K Dowling; Ohemaa B Kwakyi; Claire E McCoy; Fergal J O'Brien; Alan Hibbitts
Journal:  Pharmaceutics       Date:  2021-12-15       Impact factor: 6.321

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