Department of Morphology, Biological Sciences Institute, Federal University of Minas Gerais, Belo Horizonte, MG, Brazil.
J Dent Res. 2013 Jul;92(7):575-83. doi: 10.1177/0022034513490957. Epub 2013 May 15.
One of the main goals of bone tissue engineering is to identify and develop new biomaterials and scaffolds for structural support and controlled cell growth, which allow for formation or replacement of bone tissue. Recently, carbon nanotubes (CNT) have emerged as a potential candidate for bone tissue engineering. CNT present remarkable mechanical, thermal, and electrical properties with easy functionalization capability and biocompatibility. In oral regenerative medicine, bone reconstruction is an essential requirement for functional rehabilitation of the stomatognathic system. Autologous bone still represents the gold standard graft material for bone reconstruction. However, the small amounts of bone available in donor regions, together with the high costs of surgeries, are critical aspects that hinder the selection of this procedure. Thus, CNT alone or combined with biopolymers have promise to be used as novel potential biomaterials for the restoration of bone defects. Indeed, recent evidence demonstrates CNT to be a feasible material that can increase the formation of bone in tooth sockets of rats. The purpose of this review is to summarize the recent developments in bone repair/regeneration with CNT or CNT-based composites. We further provide an overview of bone tissue engineering and current applications of biomaterials, especially of CNT, to enhance bone regeneration.
骨组织工程的主要目标之一是识别和开发新的生物材料和支架,以提供结构支撑和控制细胞生长,从而促进骨组织的形成或替代。最近,碳纳米管(CNT)作为骨组织工程的潜在候选材料引起了关注。CNT 具有出色的机械、热和电性能,同时易于功能化和具有生物相容性。在口腔再生医学中,骨重建是口腔颌面部系统功能康复的基本要求。自体骨仍然是骨重建的金标准移植物材料。然而,供区骨量有限,手术费用高昂,这些都是限制该手术选择的关键因素。因此,CNT 单独或与生物聚合物结合有望用作新型潜在的骨缺损修复生物材料。事实上,最近的证据表明 CNT 是一种可行的材料,可以增加大鼠牙槽骨的形成。本文综述了 CNT 或 CNT 基复合材料在骨修复/再生方面的最新进展。我们进一步概述了骨组织工程和生物材料的当前应用,特别是 CNT 在增强骨再生方面的应用。