外显子组测序
产前诊断
遗传咨询
医学
队列
发育不良
胎儿
人类遗传学
生物信息学
队列研究
产科
表型
医学遗传学
回顾性队列研究
外显子组
羊膜穿刺术
基因检测
儿科
病理
基因型
产前护理
胎儿游离DNA
病态的
遗传异质性
骨软骨发育不良
疾病
怀孕
遗传学
作者
Guozhuang Li,Kexin Xu,Jihao Cai,Yulin Jiang,Xiya Zhou,Yan Lv,Na Hao,Yiqi Yu,Sen Zhao,Qing Li,Lina Zhao,Zhengye Zhao,Zhihong Wu,Ying Zou,Jianguo Zhang,Yuanqiang Zhang,Nan Wu,Qingwei Qi
标识
DOI:10.1016/j.jgg.2025.09.005
摘要
Fetal skeletal dysplasia (FSD) encompasses diverse clinical features and complicates prenatal diagnosis and perinatal care. In this retrospective study, we integrate prenatal deep phenotyping with exome or genome sequencing (ES/GS) to elucidate comprehensive genotype and phenotype landscapes, diagnostic outcomes, genotype-phenotype correlations, and postnatal follow-up findings and to refine genetic counseling and clinical decision-making. The study includes a cohort of 152 fetuses with FSD in China. All fetuses undergo prenatal deep phenotyping followed by ES/GS analysis. Prenatal deep phenotyping enables classification into isolated and non-isolated FSD groups and identifies previously unrecognized prenatal features associated with KBG syndrome and Segawa syndrome. Among skeletal anomalies, limb bone anomalies are the most common (72.4%). Genetic testing yields positive diagnoses in 88 fetuses (57.9%). Notably, fetuses with cranial and limb bone abnormalities demonstrate a higher diagnostic yield. Comparative analysis of prenatal and postnatal genotypes and phenotypes in individuals harboring pathogenic variants in four hotspot genes provides a deeper understanding of skeletal dysplasia phenotypes. Genetic findings from this cohort directly inform reproductive decisions in 16 subsequent pregnancies. Our findings significantly enhance genotype-phenotype correlations and contribute to improved prenatal counseling, informed clinical decision-making, and optimized perinatal care, and advance precision medicine strategies for FSD-affected families.
科研通智能强力驱动
Strongly Powered by AbleSci AI