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Netrin-1 reduces monocyte and macrophage chemotaxis towards the complement component C5a.

机译:Netrin-1可降低单核细胞和巨噬细胞对补体成分C5a的趋化性。

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摘要

Netrin-1, acting at its cognate receptor UNC5b, has been previously demonstrated to inhibit CC chemokine-induced immune cell migration. In line with this, we found that netrin-1 was able to inhibit CCL2-induced migration of bone marrow derived macrophages (BMDMs). However, whether netrin-1 is capable of inhibiting chemotaxis to a broader range of chemoattractants remains largely unexplored. As our initial experiments demonstrated that RAW264.7 and BMDMs expressed high levels of C5a receptor 1 (C5aR1) on their surface, we aimed to determine the effect of netrin-1 exposure on monocyte/macrophage cell migration induced by C5a, a complement peptide that plays a major role in multiple inflammatory pathologies. Treatment of RAW264.7 macrophages, BMDMs and human monocytes with netrin-1 inhibited their chemotaxis towards C5a, as measured using two different real-time methods. This inhibitory effect was found to be dependent on netrin-1 receptor signalling, as an UNC5b blocking antibody was able to reverse netrin-1 inhibition of C5a induced BMDM migration. Treatment of BMDMs with netrin-1 had no effect on C5aR1 proximal signalling events, as surface C5aR1 expression, internalisation and intracellular Ca2+ release following C5aR1 ligation remained unaffected after netrin-1 exposure. We next examined receptor distal events that occur following C5aR1 activation, but found that netrin-1 was unable to inhibit C5a induced phosphorylation of ERK1/2, Akt and p38, pathways important for cellular migration. Furthermore, netrin-1 treatment had no effect on BMDM cytoskeletal rearrangement following C5a stimulation as determined by microscopy and real-time electrical impedance sensing. Taken together these data highlight that netrin-1 inhibits monocyte and macrophage cell migration, but that the mechanism behind this effect remains unresolved. Nevertheless, netrin-1 and its cognate receptors warrant further investigation as they may represent a potential avenue for the development of novel anti-inflammatory therapeutics.
机译:Netrin-1发挥其同源受体UNC5b的作用,以前已被证明可以抑制CC趋化因子诱导的免疫细胞迁移。与此相符,我们发现netrin-1能够抑制CCL2诱导的骨髓衍生巨噬细胞(BMDM)迁移。但是,netrin-1是否能够抑制趋化作用于更广泛的趋化剂,目前尚待进一步研究。正如我们最初的实验表明RAW264.7和BMDM在其表面上表达高水平的C5a受体1(C5aR1)一样,我们旨在确定netrin-1暴露对C5a诱导的单核细胞/巨噬细胞迁移的影响,在多种炎症病理中起主要作用。使用两种不同的实时方法测量,使用netrin-1处理RAW264.7巨噬细胞,BMDM和人单核细胞可抑制其对C5a的趋化性。发现该抑制作用取决于netrin-1受体信号传导,因为UNC5b阻断抗体能够逆转netrin-1对C5a诱导的BMDM迁移的抑制。用netrin-1处理BMDM对C5aR1近端信号传递事件没有影响,因为在接触netrin-1后,C5aR1连接后的表面C5aR1表达,内在化和细胞内Ca2 +释放仍然不受影响。接下来,我们检查了C5aR1激活后发生的受体远端事件,但发现netrin-1无法抑制C5a诱导的ERK1 / 2,Akt和p38磷酸化,这对细胞迁移很重要。此外,netrin-1处理对C5a刺激后的BMDM细胞骨架重排没有影响,如通过显微镜和实时电阻抗检测所确定的。综合这些数据,可以看出netrin-1抑制单核细胞和巨噬细胞的迁移,但这种作用背后的机制仍未解决。然而,netrin-1及其同源受体值得进一步研究,因为它们可能代表了开发新型抗炎疗法的潜在途径。

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