Allen Kyle D, Athanasiou Kyriacos A
Department of Bioengineering, Rice University, Houston, Texas 77251-1892, USA.
Tissue Eng. 2006 May;12(5):1183-96. doi: 10.1089/ten.2006.12.1183.
The potential impact of a tissue-engineered temporomandibular joint (TMJ) disc is immense. Currently, patients suffering from a severely dysfunctional TMJ have few options. Facing the general lack of safe, effective TMJ disc implants, many patients undergo discectomy, a procedure that removes the injured TMJ disc in hopes of reducing debilitating symptoms associated with severe TMJ disorders. This procedure may not be ideal as the TMJ is left without an important functional component. Tissue engineering is a promising approach for the creation of viable, effective implants. The first attempt to investigate TMJ disc cells on a biomaterial was conducted in 1991. The first TMJ tissue-engineered constructs to be tested biochemically and biomechanically were formed in 1994; however, in examining this study in retrospect, it is clear how little TMJ knowledge was available at that time. Within the last 10 to 15 years, multiple studies have investigated critical TMJ disc characteristics, and while this characterization is not complete, these data have created a solid foundation for tissue-engineering research. Thus, the last 5 years have yielded core studies investigating the principal elements of tissue engineering: scaffold, cell source, and biological/biomechanical stimuli. Although TMJ disc tissue engineering is still in its formative years, its future is quite promising. Key studies are now being conducted that will assist in the establishment of a solid TMJ disc tissue-engineering approach. As the challenges of tissue engineering are faced and met, the ultimate goal of creating a functional biological implant nears.
组织工程化颞下颌关节(TMJ)盘的潜在影响是巨大的。目前,患有严重功能失调性颞下颌关节的患者选择有限。面对普遍缺乏安全、有效的颞下颌关节盘植入物的情况,许多患者接受了椎间盘切除术,该手术会移除受损的颞下颌关节盘,以期减轻与严重颞下颌关节疾病相关的衰弱症状。由于颞下颌关节失去了一个重要的功能部件,此手术可能并非理想之选。组织工程是一种创建可行、有效植入物的有前景的方法。1991年首次尝试在生物材料上研究颞下颌关节盘细胞。1994年形成了首个经过生物化学和生物力学测试的颞下颌关节组织工程构建体;然而,回顾这项研究时,很明显当时关于颞下颌关节的知识非常有限。在过去的10到15年里,多项研究调查了颞下颌关节盘的关键特征,虽然这种特征描述并不完整,但这些数据为组织工程研究奠定了坚实基础。因此,在过去5年里产生了一些核心研究,探讨组织工程的主要要素:支架、细胞来源以及生物/生物力学刺激。尽管颞下颌关节盘组织工程仍处于发展阶段,但其未来很有前景。目前正在进行一些关键研究,将有助于建立一种坚实的颞下颌关节盘组织工程方法。随着组织工程面临的挑战得到应对,创建功能性生物植入物的最终目标正日益临近。