Tano de la Hoz María Florencia, Katunar María Rosa, González Ariel, Gomez Sanchez Andrea, Díaz Alcira Ofelia, Ceré Silvia
INTEMA, Applied Electrochemistry Division, National University of Mar del Plata-CONICET, Colón 4302, B7608FDQ, Mar del Plata, Argentine.
Biology Department, FCEyN, National University of Mar del Plata, Funes 3250, B7602AYJ, Mar del Plata, Argentine.
Prog Biomater. 2019 Dec;8(4):249-260. doi: 10.1007/s40204-019-00124-0. Epub 2019 Nov 22.
Since surface plays a key role in bioactivity, the response of the host to the biomaterial will determine the success or failure of the prosthesis. The purpose of this study is to make an exhaustive analysis of the histological and histochemical characteristics of new bone tissue around Zr implants anodized at 60 V (Zr60) supported by histomorphometric methods in a rat model. Fibrous tissue was observed around the control implants (Zr0) and osteoblasts were identified on the trabeculae close to the implantation site that showed typical cytological characteristics of active secretory cells, regardless of the surface condition. The histomorphometrical analysis revealed a significant increase in cancellous bone volume, trabecular thickness and in trabecular number together with a decrease in trabecular separation facing Zr60. TRAP staining showed that there was a relative increase in the number of osteoclasts for Zr60. In addition, a larger number of osteoclast with a greater number of nuclei were detected in the tibiae for Zr60. This research demonstrated that the new bone microarchitecture in contact with Zr60 is able to improve the early stages of the osseointegration process and consequently the primary stability of implants which is a crucial factor to reduce recovery time for patients.
由于表面在生物活性中起关键作用,宿主对生物材料的反应将决定假体的成败。本研究的目的是在大鼠模型中,通过组织形态计量学方法,对60V阳极氧化锆植入物(Zr60)周围新骨组织的组织学和组织化学特征进行详尽分析。在对照植入物(Zr0)周围观察到纤维组织,并且在靠近植入部位的小梁上鉴定出成骨细胞,无论表面状况如何,这些成骨细胞都表现出活跃分泌细胞的典型细胞学特征。组织形态计量学分析显示,与Zr60接触的松质骨体积、小梁厚度和小梁数量显著增加,同时小梁间距减小。抗酒石酸酸性磷酸酶(TRAP)染色显示,Zr60的破骨细胞数量相对增加。此外,在Zr60组的胫骨中检测到更多具有更多细胞核的破骨细胞。本研究表明,与Zr60接触的新骨微结构能够改善骨整合过程的早期阶段,从而提高植入物的初期稳定性,这是缩短患者恢复时间的关键因素。