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[因DUOX2基因双等位基因缺陷导致的短暂性先天性甲状腺功能减退症。两例临床病例]

[Transient congenital hypothyroidism due to biallelic defects of DUOX2 gene. Two clinical cases].

作者信息

Enacán Rosa E, Masnata María E, Belforte Fiorella, Papendieck Patricia, Olcese María C, Siffo Sofía, Gruñeiro-Papendieck Laura, Targovnik Héctor, Rivolta Carina M, Chiesa Ana E

机构信息

Centro de Investigaciones Endocrinológicas (CEDIE)-Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET)-Fundación de Endocrinología Infantil (FEI)-División de Endocrinología, Hospital de Niños R. Gutiérrez, Ciudad Autónoma de Buenos Aires, Argentina.

Instituto de Inmunología, Genética y Metabolismo (INIGEM, CONICET-Universidad de Buenos Aires, UBA), Facultad de Farmacia y Bioquímica, Hospital de Clínicas "José de San Martín", Buenos Aires, Argentina.

出版信息

Arch Argent Pediatr. 2017 Jun 1;115(3):e162-e165. doi: 10.5546/aap.2017.e162.

Abstract

Congenital hypothyroidism affects 1:2000-3000 newborns detected by neonatal screening programs. Dual oxidases, DUOX1 and 2, generate hydrogen peroxide needed for the thyroid hormone synthesis. Hipotiroidismo congénito transitorio por defectos bialélicos del gen DUOX2. Dos casos clínicos Transient congenital hypothyroidism due to biallelic defects of DUOX2 gene. Two clinical cases Mutations in the DUOX2 gene have been described in transient and permanent congenital hypothyroidism. Two brothers with congenital hypothyroidism detected by neonatal screening with eutopic gland and elevated thyroglobulin are described. They were treated with levothyroxine until it could be suspended in both during childhood, assuming the picture as transient. Organification disorder was confirmed. Both patients were compounds heterozygous for a mutation in exon 9 of the paternal allele (c.1057_1058delTT, p.F353PfsX36 or p.F353fsX388) and in exon 11 of the maternal allele (c.1271T > G, p.Y425X) of DUOX2 gene. Our finding confirms that the magnitude of the defect of DUOX2 is not related to the number of inactivated alleles, suggesting compensatory mechanisms in the peroxide supply.

摘要

先天性甲状腺功能减退症在通过新生儿筛查项目检测出的新生儿中发病率为1:2000 - 3000。双氧化酶DUOX1和DUOX2产生甲状腺激素合成所需的过氧化氢。DUOX2基因双等位基因缺陷导致的短暂性先天性甲状腺功能减退症。两例临床病例 因DUOX2基因双等位基因缺陷导致的短暂性先天性甲状腺功能减退症。两例临床病例 已在短暂性和永久性先天性甲状腺功能减退症中描述了DUOX2基因的突变。描述了两兄弟通过新生儿筛查发现患有先天性甲状腺功能减退症,甲状腺腺体位置正常且甲状腺球蛋白升高。他们接受左甲状腺素治疗,直到儿童期可以停药,诊断为短暂性疾病。确诊为有机化障碍。两名患者均为DUOX2基因父本等位基因第9外显子(c.1057_1058delTT,p.F353PfsX36或p.F353fsX388)和母本等位基因第11外显子(c.1271T > G,p.Y425X)突变的复合杂合子。我们的发现证实,DUOX2缺陷的严重程度与失活等位基因的数量无关,提示在过氧化氢供应中存在补偿机制。

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