Erickson Christopher B, Shaw Nichole, Hadley-Miller Nancy, Riederer Michael S, Krebs Melissa D, Payne Karin A
Department of Bioengineering, Department of Orthopedics, University of Colorado Anschutz Medical Campus.
Department of Orthopedics, University of Colorado Anschutz Medical Campus.
J Vis Exp. 2017 Jul 4(125):55571. doi: 10.3791/55571.
A third of all pediatric fractures involve the growth plate and can result in impaired bone growth. The growth plate (or physis) is cartilage tissue found at the end of all long bones in children that is responsible for longitudinal bone growth. Once damaged, cartilage tissue within the growth plate can undergo premature ossification and lead to unwanted bony repair tissue, which forms a "bony bar." In some cases, this bony bar can result in bone growth deformities, such as angular deformities, or it can completely halt longitudinal bone growth. There is currently no clinical treatment that can fully repair an injured growth plate. Using an animal model of growth plate injury to better understand the mechanisms underlying bony bar formation and to identify ways to inhibit it is a great opportunity to develop better treatments for growth plate injuries. This protocol describes how to disrupt the rat proximal tibial growth plate using a drill-hole defect. This small animal model reliably produces a bony bar and can result in growth deformities similar to those seen in children. This model allows for investigation into the molecular mechanisms of bony bar formation and serves as a means to test potential treatment options for growth plate injuries.
所有儿童骨折中有三分之一涉及生长板,可能导致骨骼生长受损。生长板(或骨骺)是儿童所有长骨末端的软骨组织,负责骨骼的纵向生长。一旦受损,生长板内的软骨组织会过早骨化,并导致形成不需要的骨修复组织,即形成“骨桥”。在某些情况下,这种骨桥会导致骨骼生长畸形,如角状畸形,或者它会完全停止骨骼的纵向生长。目前尚无临床治疗方法能够完全修复受损的生长板。利用生长板损伤的动物模型来更好地理解骨桥形成的潜在机制,并确定抑制它的方法,是开发更好的生长板损伤治疗方法的一个绝佳机会。本方案描述了如何使用钻孔缺损破坏大鼠胫骨近端生长板。这种小动物模型能够可靠地产生骨桥,并可导致与儿童所见类似的生长畸形。该模型有助于研究骨桥形成的分子机制,并作为测试生长板损伤潜在治疗方案的一种手段。