Literature DB >> 31845334

Combining newborn metabolic and genetic screening for neonatal intrahepatic cholestasis caused by citrin deficiency.

Yiming Lin1,2, Yaru Liu1,3, Lin Zhu4, Kaixing Le1,3, Yuyan Shen5, Chiju Yang6, Xigui Chen6, Haili Hu7, Qingqing Ma7, Xueqin Shi8, Zhenzhen Hu1, Jianbin Yang1, Yaping Shen1, Chien-Hsing Lin9, Chenggang Huang10, Xinwen Huang1.   

Abstract

To evaluate the feasibility of incorporating genetic screening for neonatal intrahepatic cholestasis, caused by citrin deficiency (NICCD), into the current newborn screening (NBS) program. We designed a high-throughput iPLEX genotyping assay to detect 28 SLC25A13 mutations in the Chinese population. From March 2018 to June 2018, 237 630 newborns were screened by tandem mass spectrometry at six hospitals. Newborns with citrulline levels between 1/2 cutoff and cutoff values of the upper limit were recruited for genetic screening using the newly developed assay. The sensitivity and specificity of the iPLEX genotyping assay both reached 100% in clinical practice. Overall, 29 364 (12.4%) newborns received further genetic screening. Five patients with conclusive genotypes were successfully identified. The most common SLC25A13 mutation was c.851_854del, with an allele frequency of 60%. In total, 658 individuals with one mutant allele were identified as carriers. Eighteen different mutations were observed, yielding a carrier rate of 1/45. Notably, Quanzhou in southern China had a carrier rate of up to 1/28, whereas Jining in northern China had a carrier rate higher than that of other southern and border cities. The high throughput iPLEX genotyping assay is an effective and reliable approach for NICCD genotyping. The combined genetic screening could identify an additional subgroup of patients with NICCD, undetectable by conventional NBS. Therefore, this study demonstrates the viability of incorporating genetic screening for NICCD into the current NBS program.
© 2019 SSIEM.

Entities:  

Keywords:  Agena iPLEX assay; MassARRAY genotyping; SLC25A13; neonatal intrahepatic cholestasis caused by citrin deficiency; newborn screening

Year:  2019        PMID: 31845334     DOI: 10.1002/jimd.12206

Source DB:  PubMed          Journal:  J Inherit Metab Dis        ISSN: 0141-8955            Impact factor:   4.982


  10 in total

1.  Genetic screening techniques and diseases for neonatal genetic diseases.

Authors:  Lianshu Han
Journal:  Zhejiang Da Xue Xue Bao Yi Xue Ban       Date:  2021-08-25

2.  Clinical characteristics and genetic analysis of neonatal intrahepatic cholestasis caused by citrin deficiency in comparison with idiopathic neonatal cholestasis.

Authors:  Hao Liu; Chun Li; Xiaowen Li; Chaowen Yu; Xiaoyan He; Jingkun Miao
Journal:  Zhejiang Da Xue Xue Bao Yi Xue Ban       Date:  2021-08-25

3.  Application of the Artificial Intelligence Algorithm Model for Screening of Inborn Errors of Metabolism.

Authors:  Muping Zhou; Liyuan Deng; Yan Huang; Ying Xiao; Jun Wen; Na Liu; Yingchao Zeng; Hua Zhang
Journal:  Front Pediatr       Date:  2022-05-19       Impact factor: 3.569

4.  Increased detection of primary carnitine deficiency through second-tier newborn genetic screening.

Authors:  Yiming Lin; Weifeng Zhang; Chenggang Huang; Chunmei Lin; Weihua Lin; Weilin Peng; Qingliu Fu; Dongmei Chen
Journal:  Orphanet J Rare Dis       Date:  2021-03-23       Impact factor: 4.123

5.  Spectrum Analysis of Inherited Metabolic Disorders for Expanded Newborn Screening in a Central Chinese Population.

Authors:  Xia Li; Jun He; Ling He; Yudong Zeng; Xuzhen Huang; Yechao Luo; Yujiao Li
Journal:  Front Genet       Date:  2022-01-12       Impact factor: 4.599

6.  Application of a next-generation sequencing (NGS) panel in newborn screening efficiently identifies inborn disorders of neonates.

Authors:  Xinwen Huang; Dingwen Wu; Lin Zhu; Wenjun Wang; Rulai Yang; Jianbin Yang; Qunyan He; Bingquan Zhu; Ying You; Rui Xiao; Zhengyan Zhao
Journal:  Orphanet J Rare Dis       Date:  2022-02-21       Impact factor: 4.123

7.  Newborn Screening for Mitochondrial Carnitine-Acylcarnitine Cycle Disorders in Zhejiang Province, China.

Authors:  Duo Zhou; Yi Cheng; Xiaoshan Yin; Haixia Miao; Zhenzhen Hu; Jianbin Yang; Yu Zhang; Benqing Wu; Xinwen Huang
Journal:  Front Genet       Date:  2022-03-14       Impact factor: 4.599

8.  Dynamic changes of metabolic characteristics in neonatal intrahepatic cholestasis caused by citrin deficiency.

Authors:  Ting Zhang; Shasha Zhu; Haixia Miao; Jianbin Yang; Yezhen Shi; Yuwei Yue; Yu Zhang; Rulai Yang; Benqing Wu; Xinwen Huang
Journal:  Front Mol Biosci       Date:  2022-08-24

9.  Citrin deficiency mimicking mitochondrial depletion syndrome.

Authors:  S C Grünert; A Schumann; P Freisinger; S Rosenbaum-Fabian; M Schmidts; A J Mueller; S Beck-Wödl; T B Haack; H Schneider; H Fuchs; U Teufel; G Gramer; L Hannibal; U Spiekerkoetter
Journal:  BMC Pediatr       Date:  2020-11-11       Impact factor: 2.125

10.  Combined primary carnitine deficiency with neonatal intrahepatic cholestasis caused by citrin deficiency in a Chinese newborn.

Authors:  Yiming Lin; Weihua Lin; Yanru Chen; Chunmei Lin; Zhenzhu Zheng; Jianlong Zhuang; Qingliu Fu
Journal:  BMC Pediatr       Date:  2020-10-13       Impact factor: 2.125

  10 in total

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