4.8 Article

Macrophage reprogramming into a pro-healing phenotype by siRNA delivered with LBL assembled nanocomplexes for wound healing applications

期刊

NANOSCALE
卷 13, 期 36, 页码 15445-15463

出版社

ROYAL SOC CHEMISTRY
DOI: 10.1039/d1nr03830c

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资金

  1. Flemish Research Foundation (FWO) [1210120N]
  2. European Research Council (ERC) under the European Union's Horizon 2020 research and innovation program [648124]
  3. European Union [810685]
  4. Ghent University's Special Research Fund
  5. Tehran University of Medical Sciences [41007-87-03-97]
  6. Council for Development of Stem Cell Sciences and Technologies [11/36276]

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This study presents a novel selenium-based layer-by-layer nanocomplex for delivering irf5-siRNA to modulate macrophage polarization and enhance wound healing.
Excessive inflammatory responses in wounds are characterized by the presence of high levels of pro-inflammatory M1 macrophages rather than pro-healing M2 macrophages, which leads to delayed wound healing. Macrophage reprogramming from the M1 to M2 phenotype through knockdown of interferon regulatory factor 5 (irf5) has emerged as a possible therapeutic strategy. While downregulation of irf5 could be achieved by siRNA, it very much depends on successful intracellular delivery by suitable siRNA carriers. Here, we report on highly stable selenium-based layer-by-layer (LBL) nanocomplexes (NCs) for siRNA delivery with polyethyleneimine (PEI-LBL-NCs) as the final polymer layer. PEI-LBL-NCs showed good protection of siRNA with only 40% siRNA release in a buffer of pH = 8.5 after 72 h or in simulated wound fluid after 4 h. PEI-LBL-NCs also proved to be able to transfect RAW 264.7 cells with irf5-siRNA, resulting in successful reprogramming to the M2 phenotype as evidenced by a 3.4 and 2.6 times decrease in NOS-2 and TNF-alpha mRNA expression levels, respectively. Moreover, irf5-siRNA transfected cells exhibited a 2.5 times increase of the healing mediator Arg-1 and a 64% increase in expression of the M2 cell surface marker CD206(+). Incubation of fibroblast cells with conditioned medium isolated from irf5-siRNA transfected RAW 264.7 cells resulted in accelerated wound healing in an in vitro scratch assay. These results show that irf5-siRNA loaded PEI-LBL-NCs are a promising therapeutic approach to tune macrophage polarization for improved wound healing.

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