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14S,21R-Dihydroxydocosahexaenoic Acid Remedies Impaired Healing and Mesenchymal Stem Cell Functions in Diabetic Wounds*

机译:14S,21R-二羟基二十二碳六烯酸可改善糖尿病伤口的愈合和间充质干细胞功能*

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摘要

Treatment of diabetes-impaired wound healing remains a major unresolved medical challenge. Here, we identified suppressed formation of a novel reparative lipid mediator 14S,21R-dihydroxydocosa-4Z,7Z,10Z,12E,16Z,19Z-hexaenoic acid (14S,21R-diHDHA) in cutaneous wounds of diabetic db/db mice. These results indicate that diabetes impedes the biosynthetic pathways of 14S,21R-diHDHA in skin wounds. Administration of exogenous 14S,21R-diHDHA to wounds in diabetic animals rescued healing and angiogenesis. When db/db mesenchymal stem cells (MSCs) were administered together with 14S,21R-diHDHA to wounds in diabetic animals, they coacted to accelerate wound re-epithelialization, granulation tissue formation, and synergistically improved vascularization. In the pivotal cellular processes of angiogenesis, 14S,21R-diHDHA enhanced VEGF release, vasculature formation, and migration of db/db dermal microvascular endothelial cells (DMVECs), as well as remedied paracrine angiogenic functions of db/db MSCs, including VEGF secretion and the promotion of DMVEC migration and vasculature formation. Our results show that 14S,21R-diHDHA activates the p38 MAPK pathway in wounds, db/db MSCs, and DMVECs. Overall, the impeded formation of 14S,21R-diHDHA described in this study suggests that diabetes could affect the generation of pro-healing lipid mediators in wound healing. By restoring wound healing and MSC functions, 14S,21R-diHDHA is a new lead for the development of better therapeutics used in treating wounds of diabetics.
机译:糖尿病受损的伤口愈合的治疗仍然是尚未解决的主要医学挑战。在这里,我们确定了糖尿病db / db小鼠皮肤伤口中新型修复性脂质介体14S,21R-dihydroxydocosa-4Z,7Z,10Z,12E,16Z,19Z-己烯酸(14S,21R-diHDHA)的抑制形成。这些结果表明,糖尿病会阻碍皮肤伤口中14S,21R-diHDHA的生物合成途径。对糖尿病动物伤口施用外源性14S,21R-diHDHA可挽救愈合和血管新生。当将db / db间充质干细胞(MSCs)与14S,21R-diHDHA一起施用给糖尿病动物的伤口时,它们协同作用以加速伤口的重新上皮形成,肉芽组织形成和协同改善的血管形成。在血管新生的关键细胞过程中,14S,21R-diHDHA增强了db / db真皮微血管内皮细胞(DMVEC)的VEGF释放,脉管系统形成和迁移,以及db / db MSC的补救性旁分泌血管生成功能,包括VEGF分泌并促进DMVEC迁移和脉管系统形成。我们的结果表明,14S,21R-diHDHA激活伤口,db / db MSC和DMVEC中的p38 MAPK途径。总体而言,本研究中描述的14S,21R-diHDHA的形成受阻表明糖尿病可能会影响伤口愈合中促愈合脂质介体的生成。通过恢复伤口愈合和MSC功能,14S,21R-diHDHA是开发用于治疗糖尿病伤口的更好疗法的新途径。

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