Department of Neuroscience, Mario Negri Institute for Pharmacological Research, Milan, Italy.
Glia. 2013 Jun;61(6):827-42. doi: 10.1002/glia.22474. Epub 2013 Feb 26.
The studies on fractalkine and its unique receptor CX3CR1 in neurological disorders yielded contrasting results. We have explored the consequences of CX3CR1 deletion in ischemic (30' MCAo) mice on: (1) brain infarct size; (2) microglia dynamism and morphology; (3) expression of markers of microglia/macrophages (M/M) activation and polarization. We observed smaller infarcts in cx3cr1(-/-) (26.42 ± 7.41 mm(3) , mean ± sd) compared to wild type (36.29 ± 11.57) and cx3cr1(-/+) (34.49 ± 8.91) mice. We longitudinally analyzed microglia by in vivo two-photon microscopy before, 1 and 24 h after transient ischemia. Microglia were stationary in both cx3cr1(-/-) and cx3cr1(-/+) mice throughout the study. In cx3cr1(-/-) mice, they displayed a significantly higher number of ramifications >10 μm at baseline and at 24 h after ischemia compared to cx3cr1(-/+) mice, indicating that CX3CR1 deficiency impaired the development of microglia hypertrophic/amoeboid morphology. At 24 h after ischemia, we performed post mortem quantitative immunohistochemistry for different M/M markers. In cx3cr1(-/-) immunoreactivity for CD11b (M/M activation) and for CD68 (associated with phagocytosis) were decreased, while that for CD45(high) (macrophage and leukocyte recruitment) was increased. In addition, immunoreactivity for Ym1 (M2 polarization) was enhanced, while that for iNOS (M1) was decreased. Our data show that in cx3cr1(-/-) mice protection from ischemia at early time points after injury is associated with a protective inflammatory milieu, characterized by the promotion of M2 polarization markers.
在神经紊乱中对 fractalkine 及其独特受体 CX3CR1 的研究结果相互矛盾。我们探索了在缺血性(30 分钟 MCAo)小鼠中 CX3CR1 缺失的后果:(1)脑梗死面积;(2)小胶质细胞动力学和形态;(3)小胶质细胞/巨噬细胞(M/M)激活和极化的标志物表达。我们观察到 cx3cr1(-/-)(26.42 ± 7.41 mm3,平均值 ± 标准差)比野生型(36.29 ± 11.57)和 cx3cr1(-/+)(34.49 ± 8.91)小鼠的梗死体积更小。我们通过在短暂缺血前后进行活体双光子显微镜对小胶质细胞进行了纵向分析。在整个研究过程中,cx3cr1(-/-)和 cx3cr1(-/+)小鼠的小胶质细胞均处于静止状态。在 cx3cr1(-/-)小鼠中,与 cx3cr1(-/+)小鼠相比,它们在基线和缺血后 24 小时的分支数>10 μm 明显更多,表明 CX3CR1 缺失损害了小胶质细胞肥大/阿米巴样形态的发育。在缺血后 24 小时,我们对不同的 M/M 标志物进行了死后定量免疫组织化学分析。在 cx3cr1(-/-)中,CD11b(M/M 激活)和 CD68(与吞噬作用相关)的免疫反应性降低,而 CD45(高)(巨噬细胞和白细胞募集)的免疫反应性增加。此外,Ym1(M2 极化)的免疫反应性增强,而 iNOS(M1)的免疫反应性降低。我们的数据表明,在 cx3cr1(-/-)小鼠中,损伤后早期的缺血保护与保护性炎症环境有关,其特征是促进 M2 极化标志物。