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The biological response to nanometre-sized polymer particles

机译:对纳米级聚合物颗粒的生物反应

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摘要

class="kwd-title">Keywords: Nanoparticle, Polyethylene, Bioactivity, Osteolysis, Joint replacement class="head no_bottom_margin" id="idm139632271635040title">AbstractRecently, nanometre-sized UHMWPE particles generated from hip and knee replacements have been identified in vitro and in vivo. UHMWPE particles in the 0.1–1.0 μm size range have been shown to be more biologically active than larger particles, provoking an inflammatory response implicated in late aseptic loosening of total joint replacements. The biological activity of nanometre-sized particles has not previously been studied. The biological response to clinically-relevant UHMWPE wear particles including nanometre-sized and micrometre-sized, along with polystyrene particles (FluoSpheres 20 nm, 60 nm, 200 nm and 1.0 μm), and nanometre-sized model polyethylene particles (Ceridust 3615®), was determined in terms of osteolytic cytokine release from primary human peripheral blood mononuclear cells (PBMNCs). Nanometre-sized UHMWPE wear particles, nanometre-sized Ceridust 3615® and 20 nm FluoSpheres had no significant effect on TNF-α, IL-1β, IL-6 and IL-8 release from PBMNCs at a concentration of 100 μm3 particles per cell after 12 and 24 h. The micrometre-size UHMWPE wear particles (0.1–1.0 μm) and 60 nm, 200 nm and 1.0 μm FluoSpheres caused significantly elevated osteolytic cytokine release from PBMNCs. These results indicated that particles below circa 50 nm fail to activate PBMNCs and that particle size, composition and morphology played a crucial role in cytokine release by particle stimulated macrophages.
机译:<!-fig ft0-> <!-fig @ position =“ anchor” mode =文章f4-> <!-fig mode =“ anchred” f5-> <!-fig / graphic | fig / alternatives / graphic mode =“ anchored” m1-> class =“ kwd-title”>关键字:纳米颗粒,聚乙烯,生物活性,溶骨,关节置换 class =“ head no_bottom_margin” id =“ idm139632271635040title“>摘要最近,已在体外和体内鉴定了由髋关节和膝关节置换产生的纳米级UHMWPE颗粒。已显示尺寸在0.1–1.0μm范围内的UHMWPE颗粒比较大的颗粒具有更高的生物活性,从而引起炎症反应,这可能与后期无菌性全关节置换术松动有关。纳米级颗粒的生物活性以前尚未进行过研究。对与临床相关的UHMWPE磨损颗粒的生物学响应,包括纳米级和微米级,以及聚苯乙烯颗粒(FluoSpheres 20 nm,60 nm,200 nm和1.0μm)和纳米级模型聚乙烯颗粒(Ceridust3615®)根据从人原代外周血单核细胞(PBMNC)释放的溶骨性细胞因子来确定β1。纳米级的UHMWPE磨损颗粒,纳米级的Ceridust3615®和20纳米FluoSpheres对浓度为100μm 3的PBMNCs释放的TNF-α,IL-1β,IL-6和IL-8没有明显影响 12和24小时后每个单元格中的粒子。微米级的UHMWPE磨损颗粒(0.1-1.0μm)和60 nm,200 nm和1.0μmFluoSpheres导致PBMNCs溶骨细胞因子释放显着升高。这些结果表明,大约50 nm以下的颗粒无法激活PBMNCs,并且颗粒大小,组成和形态在颗粒刺激的巨噬细胞释放细胞因子中起着至关重要的作用。

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