Hosseinzadeh Pooya, Milbrandt Todd
aPediatric Orthopedics, Baptist Children's Hospital, Miami, FloridabPediatric Orthopedics, Mayo Clinic, Rochester, Minnesota, USA.
J Pediatr Orthop B. 2016 Jul;25(4):385-92. doi: 10.1097/BPB.0000000000000245.
The growth plate (physis) is responsible for enabling and regulating longitudinal growth of upper and lower limbs. This regulation occurs through interaction of the cells in the growth plate with systemic and locally produced factors. This complex interaction leads to precisely controlled changes in chondrocyte size, receptors, and matrix, which ultimately result in endochondral bone formation. With advances in cellular and molecular biology, our knowledge about these complex interactions has increased significantly over the past decade. Deficiency of any of the regulating factors or physeal injury during childhood can alter this well-orchestrated sequence of events and lead to abnormalities in growth. This review highlights the histology of the normal physis, including recent findings at the cellular and molecular levels, mechanics and mechanobiology of the growth plate, pathologies that can affect the physis, and treatment options, including interposition materials.
生长板(骺板)负责促进和调节上下肢的纵向生长。这种调节通过生长板中的细胞与全身及局部产生的因子相互作用来实现。这种复杂的相互作用导致软骨细胞大小、受体和基质发生精确控制的变化,最终导致软骨内成骨。随着细胞生物学和分子生物学的发展,在过去十年中,我们对这些复杂相互作用的认识有了显著提高。儿童时期任何调节因子的缺乏或骺板损伤都可能改变这一精心编排的事件序列,并导致生长异常。本综述重点介绍了正常骺板的组织学,包括细胞和分子水平的最新发现、生长板的力学和力学生物学、可影响骺板的病理学以及治疗选择,包括植入材料。