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对骨整合钛纳米管表面的局部和全身体内反应。

Local and Systemic In Vivo Responses to Osseointegrative Titanium Nanotube Surfaces.

作者信息

Baker Erin A, Fleischer Mackenzie M, Vara Alexander D, Salisbury Meagan R, Baker Kevin C, Fortin Paul T, Friedrich Craig R

机构信息

Departments of Orthopaedic Research and Surgery, Beaumont Health, Royal Oak, MI 48073, USA.

Department of Mechanical Engineering-Engineering Mechanics, Michigan Technological University, Houghton, MI 49931, USA.

出版信息

Nanomaterials (Basel). 2021 Feb 26;11(3):583. doi: 10.3390/nano11030583.

Abstract

Orthopedic implants requiring osseointegration are often surface modified; however, implants may shed these coatings and generate wear debris leading to complications. Titanium nanotubes (TiNT), a new surface treatment, may promote osseointegration. In this study, in vitro (rat marrow-derived bone marrow cell attachment and morphology) and in vivo (rat model of intramedullary fixation) experiments characterized local and systemic responses of two TiNT surface morphologies, aligned and trabecular, via animal and remote organ weight, metal ion, hematologic, and nondecalcified histologic analyses. In vitro experiments showed total adherent cells on trabecular and aligned TiNT surfaces were greater than control at 30 min and 4 h, and cells were smaller in diameter and more eccentric. Control animals gained more weight, on average; however, no animals met the institutional trigger for weight loss. No hematologic parameters (complete blood count with differential) were significantly different for TiNT groups vs. control. Inductively coupled plasma mass spectrometry (ICP-MS) showed greater aluminum levels in the lungs of the trabecular TiNT group than in those of the controls. Histologic analysis demonstrated no inflammatory infiltrate, cytotoxic, or necrotic conditions in proximity of K-wires. There were significantly fewer eosinophils/basophils and neutrophils in the distal region of trabecular TiNT-implanted femora; and, in the midshaft of aligned TiNT-implanted femora, there were significantly fewer foreign body giant/multinucleated cells and neutrophils, indicating a decreased immune response in aligned TiNT-implanted femora compared to controls.

摘要

需要骨整合的骨科植入物通常会进行表面改性;然而,植入物可能会脱落这些涂层并产生磨损碎屑,从而导致并发症。钛纳米管(TiNT)作为一种新的表面处理方法,可能会促进骨整合。在本研究中,通过动物和远程器官重量、金属离子、血液学及非脱钙组织学分析,体外实验(大鼠骨髓来源的骨髓细胞附着和形态)和体内实验(髓内固定大鼠模型)对两种TiNT表面形态(排列状和小梁状)的局部和全身反应进行了表征。体外实验表明,在30分钟和4小时时,小梁状和排列状TiNT表面的总贴壁细胞数量多于对照组,且细胞直径更小、更偏心。平均而言,对照动物体重增加更多;然而,没有动物达到机构设定的体重减轻触发标准。TiNT组与对照组的血液学参数(全血细胞计数及分类)无显著差异。电感耦合等离子体质谱(ICP-MS)显示,小梁状TiNT组肺部的铝含量高于对照组。组织学分析表明,克氏针附近无炎性浸润、细胞毒性或坏死情况。在植入小梁状TiNT的股骨远端区域,嗜酸性粒细胞/嗜碱性粒细胞和中性粒细胞明显减少;并且,在植入排列状TiNT的股骨中段,异物巨细胞/多核细胞和中性粒细胞明显减少,这表明与对照组相比,植入排列状TiNT的股骨免疫反应降低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e50/7996927/ac336a5e680e/nanomaterials-11-00583-g0A1.jpg

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