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ENPP1基因单等位基因失活突变对小儿骨骼发育的影响:一例病例报告及文献综述

The impact of monoallelic inactivation mutations in the ENPP1 gene on pediatric skeletal development: a case report and literature review.

作者信息

Lu Siyi, Sun Ning, Li Yuan, Wu Zongyi, Zhang Jingdong

机构信息

Department of Pediatric Orthopedic, The Second Affiliated Hospital and Yuying Children's Hospital of Wenzhou Medical University, Wenzhou, China.

出版信息

Front Endocrinol (Lausanne). 2025 Apr 9;16:1430681. doi: 10.3389/fendo.2025.1430681. eCollection 2025.

Abstract

BACKGROUND

Recently, in our clinical work, we discovered a case of abnormal bone metabolism in children resulting from an inactivated mutation of the ENPP1 gene. Through this discovery, we highlighted the impact of the ENPP1 gene on the skeletal growth and development of children, and provided new ideas for the clinical diagnosis of bone diseases in children.

CASE SUMMARY

A 17-year-old boy presented with abnormal gait and hip pain. The anteroposterior (AP) pelvis X-ray revealed bilateral abnormalities in the femoral metaphysis, acetabulum, and ilium bones, as well as slippage of the left femoral head epiphysis. After genetic testing was carried out, it was found that the patient had a monoallelic inactivation mutations in the ENPP1 gene, which is the pathogenic gene of Autosomal-Recessive Hypophosphatemic Rickets 2 (ARHR2). Genetic testing identified that the patient had an inactivating mutation in the ENPP1 gene, which is associated with Autosomal-Recessive Hypophosphatemic Rickets 2 (ARHR2). Since symptoms were present at the time of diagnosis, the current treatment plan includes symptomatic treatments, such as calcium supplementation and femoral epiphyseal fixation.

CONCLUSION

We discovered that the inactivating mutation of the ENPP1 gene has an influence on bone metabolism, particularly calcium and phosphorus metabolism, which can lead to severe adverse effects on the growth and development of pediatric patients. Through this case and a review of the literature, we aim to enable clinical physicians to establish a holistic perspective during pediatric consultations.

摘要

背景

近期,在我们的临床工作中,我们发现了一例因ENPP1基因失活突变导致儿童骨代谢异常的病例。通过这一发现,我们强调了ENPP1基因对儿童骨骼生长发育的影响,并为儿童骨病的临床诊断提供了新思路。

病例摘要

一名17岁男孩出现步态异常和髋部疼痛。骨盆前后位X线片显示双侧股骨干骺端、髋臼和髂骨异常,以及左侧股骨头骨骺滑脱。进行基因检测后发现,该患者在ENPP1基因中有单等位基因失活突变,ENPP1基因是常染色体隐性低磷性佝偻病2型(ARHR2)的致病基因。基因检测确定该患者在ENPP1基因中有失活突变,这与常染色体隐性低磷性佝偻病2型(ARHR2)有关。由于诊断时已出现症状,目前的治疗方案包括对症治疗,如补钙和股骨骨骺固定。

结论

我们发现ENPP1基因的失活突变对骨代谢有影响,特别是钙和磷代谢,这可能对儿科患者的生长发育产生严重不良影响。通过这个病例及文献回顾,我们旨在使临床医生在儿科会诊时能够建立整体观。

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本文引用的文献

1
Autosomal recessive hypophosphatemic rickets type 2 due to ENPP1 deficiency (ARHR2).
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Case Report and Review of Literature: Autosomal Recessive Hypophosphatemic Rickets Type 2 Caused by a Pathogenic Variant in Gene.
Front Endocrinol (Lausanne). 2022 Jul 29;13:911672. doi: 10.3389/fendo.2022.911672. eCollection 2022.
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Hypothyroidism Presenting as Slipped Capital Femoral Epiphysis.
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Autosomal recessive hypophosphatemic rickets type 2 (ARHR2) due to ENPP1-deficiency.
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