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Human umbilical cord blood monocytes, but not adult blood monocytes, rescue brain cells from hypoxic-ischemic injury: Mechanistic and therapeutic implications

机译:人脐带血单核细胞(而非成人血单核细胞)拯救脑细胞免受缺氧缺血性损伤的影响:机理和治疗意义

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摘要

Cord blood (CB) mononuclear cells (MNC) are being tested in clinical trials to treat hypoxic-ischemic (HI) brain injuries. Although early results are encouraging, mechanisms underlying potential clinical benefits are not well understood. To explore these mechanisms further, we exposed mouse brain organotypic slice cultures to oxygen and glucose deprivation (OGD) and then treated the brain slices with cells from CB or adult peripheral blood (PB). We found that CB-MNCs protect neurons from OGD-induced death and reduced both microglial and astrocyte activation. PB-MNC failed to affect either outcome. The protective activities were largely mediated by factors secreted by CB-MNC, as direct cell-to-cell contact between the injured brain slices and CB cells was not essential. To determine if a specific subpopulation of CB-MNC are responsible for these protective activities, we depleted CB-MNC of various cell types and found that only removal of CB CD14+ monocytes abolished neuroprotection. We also used positively selected subpopulations of CB-MNC and PB-MNC in this assay and demonstrated that purified CB-CD14+ cells, but not CB-PB CD14+ cells, efficiently protected neuronal cells from death and reduced glial activation following OGD. Gene expression microarray analysis demonstrated that compared to PB-CD14+ monocytes, CB-CD14+ monocytes over-expressed several secreted proteins with potential to protect neurons. Differential expression of five candidate effector molecules, chitinase 3-like protein-1, inhibin-A, interleukin-10, matrix metalloproteinase-9 and thrombospondin-1, were confirmed by western blotting, and immunofluorescence. These findings suggest that CD14+ monocytes are a critical cell-type when treating HI with CB-MNC.
机译:脐血(CB)单核细胞(MNC)正在临床试验中进行测试,以治疗缺氧缺血性(HI)脑损伤。尽管早期结果令人鼓舞,但对潜在临床益处的潜在机制仍知之甚少。为了进一步探索这些机制,我们将小鼠脑器官切片培养物暴露于氧和葡萄糖剥夺(OGD),然后用CB或成人外周血(PB)细胞处理脑切片。我们发现,CB-MNCs保护神经元免受OGD诱导的死亡,并减少小胶质细胞和星形胶质细胞的激活。 PB-MNC无法影响任何一种结果。保护性作用主要由CB-MNC分泌的因子介导,因为受伤的脑片和CB细胞之间的直接细胞间接触不是必需的。为了确定CB-MNC的特定亚群是否负责这些保护活性,我们耗尽了各种细胞类型的CB-MNC,发现仅去除CB CD14 + 单核细胞才废除了神经保护作用。我们还在此测定法中使用了CB-MNC和PB-MNC的阳性选择亚群,并证明了纯化的CB-CD14 + 细胞,而不是CB-PB CD14 + 细胞,有效保护神经元细胞免于死亡并降低OGD后的神经胶质激活。基因表达芯片分析表明,与PB-CD14 + 单核细胞相比,CB-CD14 + 单核细胞过表达几种分泌的蛋白,具有保护神经元的潜力。通过蛋白质印迹和免疫荧光证实了五个候选效应分子,几丁质酶3-样蛋白-1,抑制素-A,白介素-10,基质金属蛋白酶-9和血小板反应蛋白-1的差异表达。这些发现表明,当用CB-MNC治疗HI时,CD14 + 单核细胞是关键细胞类型。

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