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首页> 外文期刊>Journal of immunology research. >Infiltration of Blood-Derived Macrophages Contributes to the Development of Diabetic Neuropathy
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Infiltration of Blood-Derived Macrophages Contributes to the Development of Diabetic Neuropathy

机译:血液衍生的巨噬细胞的浸润有助于糖尿病神经病变的发展

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Background and Objective. Diabetic neuropathic pain (DNP) is a common complication associated with diabetes. Currently, its underlying pathomechanism remains unknown. Studies have revealed that the recruitment of blood monocyte-derived macrophages (MDMs) to the spinal cord plays a pivotal role in different models of central nervous system injury. Therefore, the present study aimed at exploring the infiltration and function of MDMs in DNP using a mice model. Methods. Diabetes was induced using streptozotocin in male A/J mice. Mechanical withdrawal thresholds were measured weekly to characterize neuropathy phenotype. Quantitative analysis of CD11b was performed and visualized by immunofluorescence. Spinal cord cells were isolated from myelin and debris by Percoll gradient. Flow cytometry was used to label CD11b and CD45 antibodies to differentiate MDMs (CD45highCD11b+) from resident microglia (CD45lowCD11b+). Mice were injected with clodronate liposomes to investigate the role of MDMs in DNP. The successful depletion of monocytes was determined by flow cytometry. Results. The DNP mice model was successfully established. Compared with nondiabetic mice, diabetic mice displayed a markedly higher level of CD11b immunofluorescence in the spinal cord. The number of CD11b-positive microglia/macrophages gradually increased over the 28 days of testing after STZ injection, and a significant increase was observed on Day 14 (P0.01) and 28 (P0.01). Further analysis by flow cytometry showed that the infiltration of peripheral macrophages began to increase in 2 weeks (P0.001) and reached a maximum at 4 weeks (P0.001) post-STZ injection compared to the control. The depletion of MDMs by clodronate liposomes alleviated diabetes-induced tactile allodynia (P0.05) and reduced the infiltration of MDMs (P0.001) as well as the expression of IL-1β and TNF-α in the spinal cord (P0.05). Conclusions. The infiltration of blood MDMs in the spinal cord may promote the development of painful neuropathy in diabetes.
机译:背景和目标。糖尿病神经病疼痛(DNP)是与糖尿病相关的常见并发症。目前,其潜在的土地机制仍然未知。研究表明,血液单核细胞衍生的巨噬细胞(MDMS)募集到脊髓中在中枢神经系统损伤的不同模型中起着枢轴作用。因此,本研究旨在使用小鼠模型探索DNP中MDMS的渗透和功能。方法。使用雄性A / J小鼠的链脲佐菌素诱导糖尿病。每周测量机械取出阈值以表征神经病变表型。通过免疫荧光进行CD11B的定量分析。通过Percoll梯度从髓鞘和碎片中分离脊髓细胞。流式细胞术用于标记CD11b和CD45抗体,以将MDMS(CD45Highcd11b +)与驻留小胶质细胞(CD45LOWCD11b +)分化。将小鼠注射克莱膦酸盐脂质体,以研究MDMS在DNP中的作用。通过流式细胞术测定单核细胞的成功耗尽。结果。成功建立了DNP小鼠模型。与非糖尿病小鼠相比,糖尿病小鼠在脊髓中显示出明显较高水平的CD11b免疫荧光。在STZ注射后28天测试的CD11b阳性微胶质细胞/巨噬细胞的数量逐渐增加,并在第14天(P <0.01)和28天(P <0.01)观察到显着增加(P <0.01)。流式细胞术的进一步分析表明外周巨噬细胞的渗透开始于2周(P <0.001),并在4周(P <0.001)后达到最大的STZ注射剂与对照相比。通过Clodronate脂质体耗尽糖尿病诱导的触觉异常性疼痛(P <0.05)并降低MDMS的渗透(P <0.001)以及脊髓中IL-1β和TNF-α的表达(P <0.05 )。结论。脊髓中血液MDMS的渗透可能促进糖尿病痛苦神经病变的发育。

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