人骨髓间充质干细胞调节白细胞-内皮相互作用和转录因子nf - κ B的激活。

Phillip A Letourneau, Tyler D Menge, Kathryn A Wataha, Charles E Wade, Charles S Cox, John B Holcomb, Shibani Pati
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引用次数: 22

摘要

骨髓源性间充质干细胞(MSCs)已被证明在以脓毒症和急性肺损伤等炎症为特征的多种疾病模型中具有益处。在机制上,我们假设MSCs通过抑制白细胞活化和调节白细胞-内皮相互作用来表现出这些特性;关键的相互关联的过程涉及损伤和炎症的有害影响。在本文中,我们发现MSCs与单核细胞细胞系U937共培养,抑制U937与炎症细胞因子TNFα刺激的肺内皮细胞(PECs)的结合。此外,我们发现这些对功能性粘附的影响不是由于炎性粘附分子在U937s上表达的变化。与MSCs共培养的U937s中CD62L、CD29、CD11b和CD18的表达未见变化。为了确定MSCs对白细胞内皮相互作用的影响是否源于MSCs对白细胞激活的影响,我们研究了MSCs是否影响转录因子NF-Kappa B的功能激活。我们发现MSCs在U937s中显著抑制NF-Kappa B的转录激活。我们还发现MSCs抑制NF-kappa B亚基p50和p65与NF-kappa B DNA结合位点的DNA结合。伴随nf - κ B活化降低的是IL-10的显著升高,IL-10是一种已知抑制nf - κ B活化的抗炎细胞因子。综上所示,这些发现表明MSCs对白细胞-内皮相互作用有强有力的影响,这可能是由于MSCs对IL-10和NF-kB的直接作用。这些发现表明MSCs在以炎症为特征的疾病(如急性肺损伤或创伤性损伤引起的多器官衰竭)中具有潜在的治疗作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Human Bone Marrow Derived Mesenchymal Stem Cells Regulate Leukocyte-Endothelial Interactions and Activation of Transcription Factor NF-Kappa B.

Human Bone Marrow Derived Mesenchymal Stem Cells Regulate Leukocyte-Endothelial Interactions and Activation of Transcription Factor NF-Kappa B.

Bone marrow derived mesenchymal stem cells (MSCs) have been shown to demonstrate benefit in multiple disease models characterized by inflammation such as sepsis and acute lung injury. Mechanistically we hypothesized that MSCs exhibit these properties through inhibition of leukocyte activation and modulation of leukocyte-endothelial interactions; key interlinked processes involved in the deleterious effects of injury and inflammation. In this paper we found that MSCs co-cultured with a monocytoid line, U937, inhibit U937 binding to pulmonary endothelial cells (PECs) stimulated with the inflammatory cytokine TNFα. Furthermore, we show that these effects on functional adhesion are not due to changes in inflammatory adhesion molecule expression on U937s. No changes were found in CD62L, CD29, CD11b and CD18 expression on U937s co-cultured with MSCs. To determine if the effects of MSCs on leukocyte-endothelial interactions are due to the effects of MSCs on leukocyte activation, we investigated whether MSCs affect functional activation of the transcription factor NF-Kappa B. We found that MSCs significantly inhibit transcriptional activation of NF-kappa B in U937s. We also found that MSCs inhibit DNA binding of NF-kappa B subunits p50 and p65 to putative NF-kappa B DNA binding sites. Concomitant with a decrease in NF-kappa B activation was a significant increase in IL-10, an anti-inflammatory cytokine known to inhibit activation of NF-kappa B. Taken together, these findings show that MSCs have potent effects on leukocyte-endothelial interactions which may be due to the direct effects of MSCs on IL-10 and NF-kB. These findings suggest a potential therapeutic role for MSCs in diseases characterized by inflammation such as acute lung injury or multi-organ failure induced by traumatic injury.

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