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Towards the pre-clinical diagnosis of hypothyroidism caused by iodotyrosine deiodinase (DEHAL1) defects.

机译:迈向由碘酪氨酸脱碘酶(DEHAL1)缺陷引起的甲状腺功能低下的临床前诊断。

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摘要

DEHAL1 (also named IYD) is the thyroidal enzyme that deiodinates mono- and diiodotyrosines (MIT, DIT) and recycles iodine, a scarce element in the environment, for the efficient synthesis of thyroid hormone. Failure of this enzyme leads to the iodotyrosine deiodinase deficiency (ITDD), characterized by hypothyroidism, compressive goiter and variable mental retardation, whose diagnostic hallmark is the elevation of iodotyrosines in serum and urine. However, the specific diagnosis of this type of hypothyroidism is not routinely performed, due to technical and practical difficulties in iodotyrosine determinations. A handful of mutations in the DEHAL1 gene have been identified as the molecular basis for the ITDD. Patients harboring DEHAL1 defects so far described all belong to consanguineous families, and psychomotor deficits were present in some affected individuals. This is probably due to the lack of biochemical expression of the disease at the beginning of life, which causes ITDD being undetected in screening programs for congenital hypothyroidism, as currently performed. This worrying feature calls for efforts to improve pre-clinical detection of iodotyrosine deiodinase deficiency during the neonatal time. Such a challenge poses questions of patho-physiological (natural history of the disease, environmental factors influencing its expression) epidemiological (prevalence of ITDD) and technical nature (development of optimal methodology for safe detection of pre-clinical ITDD), which will be addressed in this review.
机译:DEHAL1(也称为IYD)是一种甲状腺素酶,可以使碘化和二碘代酪氨酸(麻省理工学院,DIT)脱碘,并再循环环境中的稀有元素碘,以有效合成甲状腺激素。该酶的失败会导致碘酪氨酸脱碘酶缺乏症(ITDD),其特征为甲状腺功能减退,甲状腺肿压缩和智力低下,其诊断标志是血清和尿液中的碘酪氨酸升高。然而,由于碘代酪氨酸测定中的技术和实践上的困难,这种常规的甲状腺功能减退症的诊断并未常规进行。 DEHAL1基因中的少数突变已被鉴定为ITDD的分子基础。迄今描述的具有DEHAL1缺陷的患者全部属于近亲家庭,并且某些受影响的个体中存在精神运动缺陷。这可能是由于该疾病在生命之初缺乏生化表达,导致如目前所进行的先天性甲状腺功能低下症筛查程序未检测到ITDD。这一令人担忧的特征要求人们努力改善新生儿时期碘酪氨酸脱碘酶缺乏症的临床前检测。这种挑战提出了病理生理学(疾病的自然病史,影响其表达的环境因素),流行病学(ITDD的患病率)和技术性质(安全检测临床前ITDD的最佳方法的开发)的问题,这些问题将得到解决。在这篇评论中。

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