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首页> 外文期刊>Immunobiology: Zeitschrift fur Immunitatsforschung >Study of biomaterial-induced macrophage activation, cell-mediated immune response and molecular oxidative damage in patients with dermal bioimplants.
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Study of biomaterial-induced macrophage activation, cell-mediated immune response and molecular oxidative damage in patients with dermal bioimplants.

机译:皮肤生物植入物患者中生物材料诱导的巨噬细胞活化,细胞介导的免疫反应和分子氧化损伤的研究。

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Several soft-tissue dermal fillers have been reported to provoke immunogenicity and may cause adverse reactions despite claims regarding their safety. This study aimed to assess biomaterial-induced macrophage activation, cell-mediated immune response and oxidative stress in 169 patients with dermal bioimplants. To this end, we analysed plasma concentrations of myeloperoxidase (MPO), the chitinase-like proteins chitotriosidase and YKL-40 and molecular oxidative damage. The present study shows, for the first time, that the components of innate immunity: chitotriosidase and YKL-40, are significantly higher in patients with certain bioimplants and these markers of monocyte/macrophage activation rose progressively as adverse reactions (AR) evolved. Plasma MPO levels increased 4-fold in filler users with AR and 3-fold in those without. Analysis by filler type showed subjects injected with calcium hydroxylapatite, methacrylate, acrylamides and silicone to have values significantly above those of non-filler subjects for at least two plasma biomarkers, probably because the afore-mentioned biomaterials are permanent and prone to trigger AR in the long term. By contrast, hyaluronic acid alone elicited little immune response. Plasma concentrations of markers of oxidative damage to lipids and proteins were found to be significantly higher in users of four of the nine dermal fillers studied. These diffusible products of molecular peroxidation would stem from the reaction catalysed by MPO that generates potent oxidants, leading to cell oxidative damage which, in turn, may exert deleterious effects on the organism. Overall, the results of this study on the effects of a range of dermal fillers point to chronic activation of the immune response mediated by macrophages and PMNs. The increases in plasma of MPO, chitotriosidase and YKL-40 proteins and products of macromolecular peroxidation suggests that these molecules could serve as blood-based biochemical markers and alert to the risk of chronic immune system activation and development of adverse events that may arise from the use of certain bioimplants.
机译:据报道,几种软组织真皮填充剂具有免疫原性,尽管对其安全性有要求,但可能引起不良反应。这项研究旨在评估169例皮肤生物植入物患者中生物材料诱导的巨噬细胞活化,细胞介导的免疫反应和氧化应激。为此,我们分析了血浆髓过氧化物酶(MPO),几丁质酶样蛋白壳三糖苷酶和YKL-40的浓度以及分子氧化损伤。本研究首次显示,在具有某些生物植入物的患者中,先天免疫的组成成分:壳三糖苷酶和YKL-40明显更高,并且随着不良反应(AR)的发展,这些单核细胞/巨噬细胞激活的标志物逐渐增加。带有AR的填充器用户血浆MPO水平提高了4倍,而没有填充物的用户则升高了3倍。按填充剂类型进行的分析表明,至少两个血浆生物标记物被注射羟磷灰石钙,甲基丙烯酸酯,丙烯酰胺和硅酮的受试者的值明显高于非填充剂受试者,这可能是因为上述生物材料是永久性的,并且容易触发血管紧张素转换酶。长期。相反,单独的透明质酸几乎不会引起免疫反应。在所研究的九种真皮填充剂中的四种中,发现脂质和蛋白质氧化损伤标记物的血浆浓度明显更高。分子过氧化的这些可扩散产物将源于MPO催化的反应,该反应生成强氧化剂,导致细胞氧化损伤,继而可能对生物产生有害影响。总体而言,这项研究对一系列真皮填充剂的影响表明,巨噬细胞和PMN介导的免疫反应呈慢性活化。血浆MPO,壳三糖苷酶和YKL-40蛋白质以及大分子过氧化产物的增加表明,这些分子可以作为基于血液的生化标志物,并警告慢性免疫系统被激活的风险以及由这种疾病引起的不良事件的发展。使用某些生物植入物。

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