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MgYREZr合金可降解接骨板对人成骨细胞、成纤维细胞和骨肉瘤细胞功能的影响。

Effects of degradable osteosynthesis plates of MgYREZr alloy on cell function of human osteoblasts, fibroblasts and osteosarcoma cells.

作者信息

Naujokat Hendrik, Gülses Aydin, Wiltfang Jörg, Açil Yahya

机构信息

Department of Oral and Maxillofacial Surgery, University Hospital of Schleswig-Holstein, Campus Kiel, Arnold-Heller-Straße 3, 24105, Kiel, Germany.

Public Hospital Association, Ministry of Health of Turkey, Ankara, Turkey.

出版信息

J Mater Sci Mater Med. 2017 Aug;28(8):126. doi: 10.1007/s10856-017-5938-z. Epub 2017 Jul 15.

Abstract

The aim was to evaluate the biocompatibility of osteosynthesis plates of the MgYREZr/WE43 alloy by using human cells in vitro. Eluates of degradable magnesium osteosynthesis plates as well as halved plates were used for incubation with human osteoblasts, fibroblasts and osteosarcoma cells. The cell viability was evaluated by using FDA/PI-Staining and LDH analysis. Cell proliferation was assessed by MTT, WST-Test and BrdU-ELISA. Scanning electron microscope was used for investigation of the cell adhesion. The number of devitalized cells in all treatment groups did not significantly deviate from the control group. According to MTT results, the number of metabolically active cells was not significantly affected by the addition of the eluates. The number of metabolically active cells was reduced by 24 to 38% compared to the control on incubation in direct contact with the osteosynthesis plates. The proliferation of the cells was inhibited by the addition of the eluates. While the eluate of the half-hour elution has only a very small effect, the 24 h eluate significantly inhibits proliferation by 23-25% compared to the control. The roughened surface of the magnesium osteosynthesis plate after incubation showed adherent cells. However, some areas of the plates were also free of adherent cells. WE43 based magnesium alloys showed favorable biocompatibility considering the viability of the cells evaluated; however, proliferation rates were reduced in a time dependent manner, especially in fibroblast group. This might be a potential clinical benefit of magnesium osteosynthesis plates and their superiority to titanium, thus the fibroblastic ingrowth might negatively influence the bone-plate contact.

摘要

目的是通过体外使用人类细胞来评估MgYREZr/WE43合金接骨板的生物相容性。可降解镁接骨板的洗脱液以及切成两半的接骨板用于与人成骨细胞、成纤维细胞和骨肉瘤细胞共培养。通过FDA/PI染色和乳酸脱氢酶(LDH)分析评估细胞活力。通过MTT、WST检测和BrdU-ELISA评估细胞增殖。使用扫描电子显微镜研究细胞粘附情况。所有治疗组中失活细胞的数量与对照组相比无显著差异。根据MTT结果,洗脱液的添加对代谢活跃细胞的数量没有显著影响。与对照组相比,在与接骨板直接接触培养时,代谢活跃细胞的数量减少了24%至38%。洗脱液的添加抑制了细胞的增殖。虽然半小时洗脱的洗脱液只有非常小的影响,但与对照组相比,24小时洗脱的洗脱液显著抑制增殖23%-25%。培养后镁接骨板粗糙的表面显示有贴壁细胞。然而,接骨板的一些区域也没有贴壁细胞。考虑到所评估细胞的活力,基于WE43的镁合金显示出良好的生物相容性;然而,增殖率呈时间依赖性降低,尤其是在成纤维细胞组。这可能是镁接骨板的潜在临床优势及其相对于钛的优越性,因此成纤维细胞向内生长可能会对骨-接骨板接触产生负面影响。

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