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In vivo evaluation of copper release and acute local tissue reactions after implantation of copper-coated titanium implants in rats

机译:大鼠体内铜包膜钛植入物植入后铜释放和急性局部组织反应的体内评估

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摘要

Copper (Cu) based coatings can reduce infections for titanium (Ti) implants. However, Cu is also cytotoxic. To examine the balance of antibacterial versus adverse tissue effects, this study aimed at evaluating a Cu coating regarding in vivo Cu release and local inflammatory reactions for 72 h. TiAl6V4 plates received either plasma electrolytic oxidation only (Ti), or an additional galvanic Cu deposition (Ti-Cu). No Staphylococcus aureus were found in vitro on Ti-Cu after 24 h. Following simultaneous intramuscular implantation of two Ti and two Ti-Cu plates into nine rats, serum Cu was elevated until 48 h and residual Cu on explanted samples reduced accordingly after 48 h. Total and tissue macrophages around implants increased until 72 h for both series, and were increased for Ti-Cu. As numbers of total and tissue macrophages were comparable, macrophages were probably tissue-derived. MHC-class-II-positive cells increased for Ti-Cu only. T-lymphocytes had considerably lower numbers than macrophages, did not increase or differ between both series, and thus had minor importance. Tissue reactions increased beyond Cu release, indicating effects of either surface-bound Cu or more likely the implants themselves. Altogether, Ti-Cu samples possessed antibacterial effectiveness in vitro, released measurable Cu amounts in vivo and caused a moderately increased local inflammatory response, demonstrating anti-infective potential of Cu coatings.
机译:铜(Cu)基涂层可以减少钛(Ti)植入物的感染。但是,铜也具有细胞毒性。为了检查抗菌与不良组织效应之间的平衡,本研究旨在评估有关铜涂层的体内铜释放和局部炎症反应72小时的情况。 TiAl6V4板仅接受等离子电解氧化(Ti),或接受额外的电化铜沉积(Ti-Cu)。 24小时后在Ti-Cu上未发现金黄色葡萄球菌。在将两只钛板和两只钛铜板同时肌内植入9只大鼠后,血清铜升高至48小时,而在48小时后,移植样品上的残留铜相应减少。对于两个系列,植入物周围的总巨噬细胞和组织巨噬细胞均增加至72小时,而对于Ti-Cu则增加。由于总巨噬细胞和组织巨噬细胞的数量相当,因此巨噬细胞可能是组织来源的。 MHC-II类阳性细胞仅对Ti-Cu有所增加。 T淋巴细胞的数目比巨噬细胞低得多,两个系列之间没有增加或不同,因此重要性不大。组织反应超出了铜释放的范围,表明表面结合的铜或更可能是植入物本身的作用。总体而言,Ti-Cu样品在体外具有抗菌作用,在体内释放出可测量的Cu量,并引起中等程度的局部炎症反应,表明Cu涂层具有抗感染潜力。

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