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首页> 外文期刊>Mediators of inflammation >Oxygen-Loaded Nanodroplets Effectively Abrogate Hypoxia Dysregulating Effects on Secretion of MMP-9 and TIMP-1 by Human Monocytes
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Oxygen-Loaded Nanodroplets Effectively Abrogate Hypoxia Dysregulating Effects on Secretion of MMP-9 and TIMP-1 by Human Monocytes

机译:氧气加载的纳米油植物有效地消除了人单核细胞的MMP-9和TIMP-1的分泌缺氧缺氧效果

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Monocytes play a key role in the inflammatory stage of the healing process. To allow monocyte migration to injured tissues, the balances between secreted matrix metalloproteinases (MMPs) and their inhibitors (TIMPs) must be finely modulated. However, a reduction of blood supply and local oxygen tension can modify the phenotype of immune cells. Intriguingly, hypoxia might be targeted by new effective oxygenating devices such as 2H,3H-decafluoropentane- (DFP-) based oxygen-loaded nanodroplets (OLNs). Here, hypoxia effects on gelatinase/TIMP release from human peripheral monocytes were investigated, and the therapeutic potential of dextran-shelled OLNs was evaluated. Normoxic monocytes constitutively released similar to 500 ng/mL MMP-9, similar to 1.3 ng/mL TIMP-1, and similar to 0.6 ng/mL TIMP-2 proteins. MMP-2 was not detected. After 24 hours, hypoxia significantly altered MMP-9/TIMP-1 balance by reducing MMP-9 and increasing TIMP-1, without affecting TIMP-2 secretion. Interestingly OLNs, not displaying toxicity to human monocytes after cell internalization, effectively counteracted hypoxia, restoring a normoxia-like MMP-9/TIMP-1 ratio. The action of OLNs was specifically dependent on time-sustained oxygen diffusion up to 24 h from their DFP-based core. Therefore, OLNs appear as innovative, nonconventional, cost-effective, and nontoxic therapeutic tools, to be potentially employed to restore the physiological invasive phenotype of immune cells in hypoxia-associated inflammation.
机译:单核细胞在愈合过程的炎症阶段发挥关键作用。为了使单核细胞迁移到受伤组织,必须精细地调节分泌的基质金属蛋白酶(MMP)和其抑制剂(TIMP)之间的平衡。然而,减少血液供应和局部氧气张力可以改变免疫细胞的表型。有趣的是,缺氧可以通过新的有效氧化装置来靶向,例如基于2H,3H-甲烷 - (DFP-)的氧气负载的纳米油(OLN)。这里,研究了对人外周血单核细胞的缺氧对明胶酶/ TIMP释放的影响,并评估葡聚糖壳蛋白的治疗潜力。常氧单核细胞体组成型释放到类似于500ng / mMMMP-9,类似于1.3ng / ml TIMP-1,类似于0.6ng / ml TIMP-2蛋白。未检测到MMP-2。 24小时后,通过减少MMP-9和增加TIMP-1,缺氧显着改变MMP-9 / TIMP-1平衡,而不会影响TIMP-2分泌。有趣的是,在细胞内化后,没有向人单核细胞显示毒性,有效地抵消缺氧,恢复常氧化MMP-9 / TIMP-1的比例。 OLNS的作用具体地依赖于时间持续的氧气扩散,从其DFP的核心达到24小时。因此,OLNS表现为创新,非传统,具有成本效益和无毒的治疗工具,潜在地用于恢复缺氧相关炎症中免疫细胞的生理侵入性表型。

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