Giampietro Philip F, Dunwoodie Sally L, Kusumi Kenro, Pourquié Olivier, Tassy Olivier, Offiah Amaka C, Cornier Alberto S, Alman Benjamin A, Blank Robert D, Raggio Cathleen L, Glurich Ingrid, Turnpenny Peter D
Department of Medical Genetic Services, Marshfield Clinic, 1000 North Oak Avenue, Marshfield, WI 54449, USA.
Ann N Y Acad Sci. 2009 Jan;1151:38-67. doi: 10.1111/j.1749-6632.2008.03452.x.
Vertebral malformations contribute substantially to the pathophysiology of kyphosis and scoliosis, common health problems associated with back and neck pain, disability, cosmetic disfigurement, and functional distress. This review explores (1) recent advances in the understanding of the molecular embryology underlying vertebral development and relevance to elucidation of etiologies of several known human vertebral malformation syndromes; (2) outcomes of molecular studies elucidating genetic contributions to congenital and sporadic vertebral malformation; and (3) complex interrelationships between genetic and environmental factors that contribute to the pathogenesis of isolated syndromic and nonsyndromic congenital vertebral malformation. Discussion includes exploration of the importance of establishing improved classification systems for vertebral malformation, future directions in molecular and genetic research approaches to vertebral malformation, and translational value of research efforts to clinical management and genetic counseling of affected individuals and their families.
椎体畸形在脊柱后凸和脊柱侧凸的病理生理过程中起重要作用,脊柱后凸和脊柱侧凸是与背部和颈部疼痛、残疾、外观畸形及功能障碍相关的常见健康问题。本综述探讨了:(1)在理解椎体发育的分子胚胎学方面的最新进展及其与阐明几种已知人类椎体畸形综合征病因的相关性;(2)阐明先天性和散发性椎体畸形遗传因素的分子研究结果;(3)导致孤立性综合征型和非综合征型先天性椎体畸形发病机制的遗传和环境因素之间的复杂相互关系。讨论内容包括探讨建立改进的椎体畸形分类系统之重要性、椎体畸形分子和遗传研究方法的未来方向,以及研究工作对受影响个体及其家庭的临床管理和遗传咨询的转化价值。