Hauck Sophia, Zager Paula, Halfter Norbert, Wandel Elke, Torregrossa Marta, Kakpenova Ainur, Rother Sandra, Ordieres Michelle, Räthel Susann, Berg Albrecht, Möller Stephanie, Schnabelrauch Matthias, Simon Jan C, Hintze Vera, Franz Sandra
Department of Dermatology, Venerology und Allergology, Leipzig University, 04103, Leipzig, Germany.
Institute of Materials Science, Max Bergmann Center for Biomaterials, Technische Universität Dresden, 01069, Dresden, Germany.
Bioact Mater. 2021 Apr 30;6(12):4342-4359. doi: 10.1016/j.bioactmat.2021.04.026. eCollection 2021 Dec.
Sustained inflammation associated with dysregulated macrophage activation prevents tissue formation and healing of chronic wounds. Control of inflammation and immune cell functions thus represents a promising approach in the development of advanced therapeutic strategies. Here we describe immunomodulatory hyaluronan/collagen (HA-AC/coll)-based hydrogels containing high-sulfated hyaluronan (sHA) as immunoregulatory component for the modulation of inflammatory macrophage activities in disturbed wound healing. Solute sHA downregulates inflammatory activities of bone marrow-derived and tissue-resident macrophages . This further affects macrophage-mediated pro-inflammatory activation of skin cells as shown in skin cultures. In a mouse model of acute skin inflammation, intradermal injection of sHA downregulates the inflammatory processes in the skin. This is associated with the promotion of an anti-inflammatory gene signature in skin macrophages indicating a shift of their activation profile. For translation, we designed HA-AC/coll hydrogels allowing delivery of sHA into wounds over a period of at least one week. Their immunoregulatory capacity was analyzed in a translational experimental approach in skin wounds of diabetic db/db mice, an established model for disturbed wound healing. The sHA-releasing hydrogels improved defective tissue repair with reduced inflammation, augmented pro-regenerative macrophage activation, increased vascularization, and accelerated new tissue formation and wound closure.
与巨噬细胞激活失调相关的持续性炎症会阻碍慢性伤口的组织形成和愈合。因此,控制炎症和免疫细胞功能是开发先进治疗策略的一个有前景的方法。在这里,我们描述了一种基于免疫调节性透明质酸/胶原蛋白(HA-AC/胶原)的水凝胶,其含有高硫酸化透明质酸(sHA)作为免疫调节成分,用于调节伤口愈合紊乱时炎症巨噬细胞的活性。溶质sHA可下调骨髓来源和组织驻留巨噬细胞的炎症活性。如皮肤培养所示,这进一步影响巨噬细胞介导的皮肤细胞促炎激活。在急性皮肤炎症的小鼠模型中,皮内注射sHA可下调皮肤中的炎症过程。这与促进皮肤巨噬细胞中的抗炎基因特征有关,表明其激活谱发生了转变。为了进行转化研究,我们设计了HA-AC/胶原水凝胶,使其能够在至少一周的时间内将sHA递送至伤口。在糖尿病db/db小鼠的皮肤伤口(一种公认的伤口愈合紊乱模型)中,通过转化实验方法分析了它们的免疫调节能力。释放sHA的水凝胶改善了有缺陷的组织修复,减少了炎症,增强了促再生巨噬细胞的激活,增加了血管生成,并加速了新组织形成和伤口闭合。
Infect Drug Resist. 2025-6-27
Am J Transl Res. 2025-3-15
Biomolecules. 2020-12-29
Stem Cell Res Ther. 2020-6-11
Carbohydr Polym. 2020-8-1
Front Pharmacol. 2020-1-29
J Clin Invest. 2019-7-22
Int J Mol Sci. 2019-7-6
Biochim Biophys Acta Mol Cell Biol Lipids. 2019-4-4