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新型骨植入材料多孔钽-骨结合界面成骨以及相关成骨因子的表达及意义

赖振权 崔逸爽 陈超 周国龙 潘祥宇 王茜 甘洪全 王志强 李琪佳

中国组织工程研究2017,Vol.21Issue(18):2789-2795,7.
中国组织工程研究2017,Vol.21Issue(18):2789-2795,7.DOI:10.3969/j.issn.2095-4344.2017.18.001

新型骨植入材料多孔钽-骨结合界面成骨以及相关成骨因子的表达及意义

Expression and significance of osteogenic genes on porous tantalum-bone interface during osteogenesis

赖振权 1崔逸爽 1陈超 2周国龙 1潘祥宇 1王茜 3甘洪全 4王志强 4李琪佳1

作者信息

  • 1. 华北理工大学,医学实验中心,河北省唐山市 063000
  • 2. 河北省遵化市人民医院病理科,河北省遵化市 064200
  • 3. 华北理工大学,基础医学院,河北省唐山市 063000
  • 4. 华北理工大学附属医院骨科,河北省唐山市 063000
  • 折叠

摘要

Abstract

BACKGROUND:Previous studies have shown that home-made porous tantalum has non-toxicity and good biocompatibility, and can promote osteogenesis. Herein, we explore the mechanisms of tantalum-bone interface osseointegration.OBJECTIVE:To observe the morphological characteristics and expressions of integrin β1 and fibronectin on the interface between porous tantalum and bone tissues after implantation into the right rabbit femur, and to evaluate the biological mechanisms of tantalum-bone interface osseointegration.METHODS: Animal models of bilateral femoral condyle defects were made in Japanese big ear rabbits. Porous tantalum rod and allogeneic bone were respectively implanted into the left (experimental group) and right (control group) femur of rabbits. The animal specimens at the bone defect region were taken and made into paraffin sections and hard tissue sections at postoperative 2, 4, 8 weeks for morphological observation of new bone at the junction between the tantalum rod and host bone under light microscope, for osteogenic observation of the tantalum-bone interface under scanning electron microscope, and for immunohistochemical detection of integrin β1 and fibronectin expression.RESULTS AND CONCLUSION:Porous tantalum was bonded closely with the host bone. The loose and thick fibrous capsule was observed in the early stage and became thinner in the late stage shown by hematoxylin-eosin staining. The new bone was visible on tantalum-bone interface. Hard tissue slicing observation showed that the new bone was seen on the porous tantalum-bone interface, blood capillaries grew into the pores at postoperative 2 weeks and the pores were full of new bone tissues at postoperative 4 and 8 weeks. Under the scanning electron microscope, the osteoblasts appeared on the tantalum surface and in the pores at the early stage, and bone maturation and lamelar bone were seen at the late stage. The immunohistochemical results showed that the expression of integrin β1 in the experimental group was significantly lower than that in the control group at postoperative 2 weeks (P < 0.05), but the expression of fibronectin had no significant difference between the two groups (P > 0.05). In addition, there was a decline trend in the expression of integrin β1 and fibronectin atpostoperative 2, 4, 8 weeks. To conclude, the porous tantalum material is beneficial to enhance adhesion of osteoblasts on the surface and inside the micro-pores. Increased expression of integrin β1 and fibronectin on the tantalum-bone interface at early stage may promote early osteogenesis, while their decreased expression at bone maturing stage can promote osseointegration and bone remodeling.

关键词

生物材料/骨生物材料/多孔钽/整合素/纤维粘连蛋白/钽-骨界面/成骨

Key words

Tantalum/Bone Transplantation/Biocompatible Materials/Tissue Engineering

分类

医药卫生

引用本文复制引用

赖振权,崔逸爽,陈超,周国龙,潘祥宇,王茜,甘洪全,王志强,李琪佳..新型骨植入材料多孔钽-骨结合界面成骨以及相关成骨因子的表达及意义[J].中国组织工程研究,2017,21(18):2789-2795,7.

基金项目

国家科技部科技支撑课题(2012BAE06B03).河北省科技支撑课题(16277776D).河北省医学科学研究重点课题计划项目(20160225).华北理工大学大学生创新计划(X2015045)the Science and Technology Supporting Project of the Ministry of Science and Technology of China, No. 2012BAE06B03 (2012BAE06B03)

the Science and Technology Supporting Project of Hebei Province, No. 16277776D ()

the Major Medical Research Project of Hebei Province, No. 20160225 ()

the Undergraduate Innovation Plan in the North China University of Science and Technology, No. X2015045 ()

中国组织工程研究

OA北大核心CSTPCD

2095-4344

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