首页> 外文期刊>Scientific reports. >Endotoxin free hyaluronan and hyaluronan fragments do not stimulate TNF-α, interleukin-12 or upregulate co-stimulatory molecules in dendritic cells or macrophages
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Endotoxin free hyaluronan and hyaluronan fragments do not stimulate TNF-α, interleukin-12 or upregulate co-stimulatory molecules in dendritic cells or macrophages

机译:内毒素免费透明质酸和透明质酸碎片不刺激树突细胞或巨噬细胞中的TNF-α,白细胞介素-12或上调共刺激分子

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The extracellular matrix glycosaminoglycan, hyaluronan, has been described as a regulator of tissue inflammation, with hyaluronan fragments reported to stimulate innate immune cells. High molecular mass hyaluronan is normally present in tissues, but upon inflammation lower molecular mass fragments are generated. It is unclear if these hyaluronan fragments induce an inflammatory response or are a consequence of inflammation. In this study, mouse bone marrow derived macrophages and dendritic cells (DCs) were stimulated with various sizes of hyaluronan from different sources, fragmented hyaluronan, hyaluronidases and heavy chain modified-hyaluronan (HA-HC). Key pro-inflammatory molecules, tumour necrosis factor alpha, interleukin-1 beta, interleukin-12, CCL3, and the co-stimulatory molecules, CD40 and CD86 were measured. Only human umbilical cord hyaluronan, bovine testes and Streptomyces hyaluronlyticus hyaluronidase stimulated macrophages and DCs, however, these reagents were found to be contaminated with endotoxin, which was not fully removed by polymyxin B treatment. In contrast, pharmaceutical grade hyaluronan and hyaluronan fragments failed to stimulate in vitro-derived or ex vivo macrophages and DCs, and did not induce leukocyte recruitment after intratracheal instillation into mouse lungs. Hence, endotoxin-free pharmaceutical grade hyaluronan does not stimulate macrophages and DCs in our inflammatory models. These results emphasize the importance of ensuring hyaluronan preparations are endotoxin free.
机译:细胞外基质糖胺聚糖,透明质酸被描述为组织炎症调节剂,据报道透明质酸片段刺激先天免疫细胞。高分子质量透明质酸通常存在于组织中,但在炎症时产生较低分子质量片段。目前尚不清楚这些透明质酸片段是否诱导炎症反应或是炎症的结果。在该研究中,小鼠骨髓衍生的巨噬细胞和树突状细胞(DCS)被各种透明质酸从不同来源的透明质酸刺激,碎裂的透明质酸酶,透明质酸酶和重链改性 - 透明质酸(HA-HC)。测定键促炎分子,肿瘤坏死因子α,白细胞介素-1β,白细胞介素-12,CCL3和共刺激分子,CD40和CD86。只有人类脐带透明质酸,牛睾丸和链霉菌透明质性透明质酸酶刺激的巨噬细胞和DCS,然而,这些试剂被发现被内毒素污染,所述内毒素未得到多粘蛋白B处理。相比之下,药物级透明质酸和透明质酸片段未能刺激体外或离体巨噬细胞和DCS,并且没有诱导白细胞灌注后的白细胞募集到小鼠肺部。因此,内毒素的药物级透明质酸在我们的炎症模型中不会刺激巨噬细胞和DC。这些结果强调了确保透明质酸制剂的重要性是无毒素的制剂。

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