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Neutrophils Inhibit Synthesis of Mineralized Extracellular Matrix by Human Bone Marrow-Derived Stromal Cells In Vitro

机译:中性粒细胞抑制人骨髓基质细胞体外矿化细胞外基质的合成。

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摘要

Although controlled local inflammation is essential for adequate bone regeneration, several studies have shown that hyper-inflammatory conditions after major trauma are associated with impaired fracture healing. These hyper-inflammatory conditions include the trauma-induced systemic inflammatory response to major injury, open fractures, and significant injury to the surrounding soft tissues. The current literature suggests that increased or prolonged influx of neutrophils into the fracture hematoma may mediate impairment of bone regeneration after hyper-inflammatory conditions. The underlying mechanism remains unclear. We hypothesize that high neutrophil numbers inhibit synthesis of mineralized extracellular matrix (ECM) by bone marrow stromal cells (BMSCs). We therefore studied the effect of increasing concentrations of neutrophils on ECM synthesis by human BMSCs in vitro. Moreover, we determined how high neutrophil concentrations affect BMSC cell counts, as well as BMSC osteogenic activity determined by alkaline phosphatase (ALP) expression and ALP activity. Co-culture of BMSCs with neutrophils induced a 52% decrease in BMSC cell count (p < 0.01), a 64% decrease in the percentage of ALP+ cells (p < 0.001), a 28% decrease in total ALP activity (p < 0.01), and a significant decrease in the amount of mineralized ECM [38% decrease after 4 weeks (p < 0.05)]. Co-cultures with peripheral blood mononuclear cells and neutrophils within transwells did not induce a significant decrease in ALP activity. In conclusion, our data shows that a decreased amount of mineralized ECM became synthesized by BMSCs, when they were co-cultured with high neutrophil concentrations. Moreover, high neutrophil concentrations induced a decrease in BMSC cell counts and decreased ALP activity. Clarifying the underlying mechanism may contribute to development of therapies that augment bone regeneration or prevent impaired fracture healing after hyper-inflammatory conditions.
机译:尽管受控的局部炎症对于充分的骨骼再生至关重要,但多项研究表明,严重创伤后的高炎症状态与骨折愈合受损有关。这些高炎症性疾病包括创伤引起的对严重损伤,开放性骨折以及对周围软组织的严重损伤的全身性炎症反应。目前的文献表明,嗜中性粒细胞向骨折血肿的流入量增加或持续时间延长,可能会介导过度炎症条件后骨骼再生的损害。潜在机制尚不清楚。我们假设高中性粒细胞数抑制骨髓基质细胞(BMSCs)矿化的细胞外基质(ECM)的合成。因此,我们研究了中性粒细胞浓度增加对人BMSC体外ECM合成的影响。此外,我们确定了高中性粒细胞浓度如何影响BMSC细胞计数,以及由碱性磷酸酶(ALP)表达和ALP活性确定的BMSC成骨活性。 BMSC与中性粒细胞的共培养诱导BMSC细胞计数降低52%(p <0.01),ALP +细胞百分比降低64%(p <0.001),总ALP活性降低28%(p <0.01) ),矿物质ECM的量显着减少[4周后减少38%(p <0.05)]。与transwell内的外周血单核细胞和嗜中性粒细胞共培养不会引起ALP活性的显着降低。总之,我们的数据表明,当将BMSC与中性粒细胞浓度较高的培养物共培养时,其合成的矿化ECM数量会减少。此外,中性粒细胞浓度高诱导BMSC细胞计数减少和ALP活性降低。阐明潜在的机制可能有助于促进治疗,这些治疗可增强骨骼再生或预防炎症性疾病后骨折愈合受损。

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