Cohen Hannah Caitlin, Frost Dustin C, Lieberthal Tyler Jacob, Li Lingjun, Kao W John
Pharmaceutical Sciences Division, School of Pharmacy, University of Wisconsin-Madison, 777 Highland Avenue, Madison, WI 53705, USA.
Department of Biomedical Engineering, University of Wisconsin-Madison, Madison, WI 53705, USA.
Biomaterials. 2015 May;50:47-55. doi: 10.1016/j.biomaterials.2015.01.050. Epub 2015 Feb 14.
In the foreign body response, infiltrating PMNs exocytose granule subsets to influence subsequent downstream inflammatory and wound healing events. In previous studies, we found that PMNs cultured on poly(ethylene glycol) (PEG)-containing hydrogels (i.e., PEG and gelatin + PEG hydrogels) had enhanced primary granule release, yet similar tertiary granule release compared with PMNs cultured on polydimethylsiloxane or tissue culture polystyrene. PMN primary granules contain microbicidal proteins and proteases, which can potentially injure bystander cells, degrade the extracellular matrix, and promote inflammation. Here, we sought to understand the mechanism of the enhanced primary granule release from PMNs on PEG hydrogels. We found that primary granule release from PMNs on PEG hydrogels was adhesion mediated and involved Src family kinases and PI3K-γ. The addition of gelatin to PEG hydrogels did not further enhance PMN primary granule release. Using stable-isotope dimethyl labeling-based shotgun proteomics, we identified many serum proteins - including Ig gamma constant chain region proteins and alpha-1-acid glycoprotein 1 - that were absorbed/adsorbed in higher quantities on PEG hydrogels than on TCPS, and may be involved in mediating PMN primary granule release. Ultimately, this mechanistic knowledge can be used to direct inflammation and wound healing following biomaterial implantation to promote a more favorable healing response.
在异物反应中,浸润的中性粒细胞通过胞吐颗粒亚群来影响随后的下游炎症和伤口愈合事件。在先前的研究中,我们发现,与在聚二甲基硅氧烷或组织培养聚苯乙烯上培养的中性粒细胞相比,在含聚乙二醇(PEG)的水凝胶(即PEG和明胶+PEG水凝胶)上培养的中性粒细胞初级颗粒释放增强,但三级颗粒释放相似。中性粒细胞初级颗粒含有杀菌蛋白和蛋白酶,它们可能会损伤旁观者细胞、降解细胞外基质并促进炎症。在此,我们试图了解PEG水凝胶上中性粒细胞初级颗粒释放增强的机制。我们发现,PEG水凝胶上中性粒细胞的初级颗粒释放是由黏附介导的,涉及Src家族激酶和PI3K-γ。向PEG水凝胶中添加明胶并未进一步增强中性粒细胞初级颗粒的释放。使用基于稳定同位素二甲基标记的鸟枪法蛋白质组学,我们鉴定出许多血清蛋白——包括Igγ恒定链区蛋白和α-1-酸性糖蛋白1——它们在PEG水凝胶上的吸附量高于在组织培养聚苯乙烯上,并且可能参与介导中性粒细胞初级颗粒的释放。最终,这一机制知识可用于指导生物材料植入后的炎症和伤口愈合,以促进更有利的愈合反应。