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Incorporation and delivery of an organoselenium antioxidant from a brushite cement

机译:从透钙磷石水泥中掺入和输送有机硒抗氧化剂

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An inflammatory reaction occurs following biomaterial implantation in the body, which produce toxic byproducts such as reactive oxygen species (ROS). Although ROS is required to clear the wound, excessive ROS can damage the tissue around the implant site, eventually leading to implant failure. One approach to control the inflammatory response is to incorporate an antioxidant into the biomaterial in order to scavenge ROS produced by activated phagocytes. In the present study, an organoselenium antioxidative compound was incorporated into a brushite cement, with the goal of scavenging ROS generated from activated primary human mononuclear leukocytes (MNCs), in vitro. The effect of the antioxidant on the physical properties of brushite cement, and its release from the cement were investigated via compressive strength, setting time, phase composition, and UV spectroscopy analysis. The physical properties of brushite remained unchanged following incorporation of the antioxidant. The antioxidant was slowly released from the cement, following a non-Fickian transport mechanism, with approximately 60% of the loaded antioxidant released over five days. The released antioxidant was then tested for its ability to scavenge ROS released by MNCs using the luminol amplified chemiluminescence assay. The results show that antioxidative released at both early stages (24 h) and late stages (120 h) retained its scavenging capacity and effectively reduced ROS production. These results indicate that brushite cements loaded with organoselenium compounds can modulate ROS production after implantation and potentially modulate the inflammatory response to improve device integration. (C) 2017 Elsevier B.V. All rights reserved.
机译:生物材料植入人体后会发生炎症反应,产生有毒的副产物,例如活性氧(ROS)。尽管需要ROS来清除伤口,但是过量的ROS可能会损坏植入部位周围的组织,最终导致植入失败。控制炎症反应的一种方法是将抗氧化剂掺入生物材料中,以清除活化吞噬细胞产生的ROS。在本研究中,将有机硒抗氧化化合物掺入透钙磷石水泥中,目的是在体外清除活化的人类单核白细胞(MNC)产生的ROS。通过抗压强度,凝固时间,相组成和紫外光谱分析研究了抗氧化剂对透钙磷石水泥物理性能的影响及其从水泥中的释放。掺入抗氧化剂后,透钙磷石的物理性质保持不变。按照非菲克式运输机理,抗氧化剂从水泥中缓慢释放,在五天内释放了约60%的负载抗氧化剂。然后使用鲁米诺扩增化学发光试验测试释放的抗氧化剂清除MNC释放的ROS的能力。结果表明,在早期阶段(24小时)和后期阶段(120小时)释放的抗氧化剂保留了其清除能力并有效降低了ROS的产生。这些结果表明,负载有机硒化合物的透钙磷石胶结剂可以在植入后调节ROS的产生,并可能调节炎症反应,从而改善装置的集成度。 (C)2017 Elsevier B.V.保留所有权利。

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