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关于重组人促甲状腺素在改善多结节性甲状腺肿放射性碘治疗中的潜在应用概述。

An outline concerning the potential use of recombinant human thyrotropin for improving radioiodine therapy of multinodular goiter.

作者信息

Medeiros-Neto Geraldo, Marui Suemi, Knobel Meyer

机构信息

Thyroid Unit, Division of Endocrinology and Metabolism, Hospital das Clinicas, University of Sao Paulo Medical School, Av Dr. Eneas de Carvalho Aguiar, 155, PAmb 8 A, bl 3, Sao Paulo, SP, 05403-900, Brazil.

出版信息

Endocrine. 2008 Apr;33(2):109-17. doi: 10.1007/s12020-008-9077-7. Epub 2008 May 20.

Abstract

Radioiodine ((131)I) treatment for nontoxic and toxic multinodular goiter (MNG) is an alternative therapeutic procedure used especially for patients with contraindication for surgery. Several studies have been conducted in recent years assessing the use of recombinant human TSH (rhTSH) in increasing (131)I uptake in MNGs. This procedure also decreases the activity level of the administered (131)I, changes the distribution of (131)I in the thyroid, lowers the absorption dose, and dramatically reduces the volume of the goiter (50-75% of the baseline volume). A major disadvantage, however, is the induction of hypothyroidism in a relatively large number of patients. A transient increase in thyroid volume and tenderness was noted in the first week of treatment. Also a short period (2-4 weeks) of hyperthyroidism was observed in most patients with potential consequences particularly for the elderly. Still, there has been no evidence to date that the adverse effects outweigh the positive results of using rhTSH. The use of rhTSH in benign goiter disease has not yet been approved worldwide, but its positive activity in MNG is remarkable and promising.

摘要

放射性碘(¹³¹I)治疗非毒性和毒性多结节性甲状腺肿(MNG)是一种替代治疗方法,尤其适用于有手术禁忌证的患者。近年来进行了多项研究,评估重组人促甲状腺素(rhTSH)在增加MNG对¹³¹I摄取方面的应用。该方法还可降低所给予¹³¹I的活性水平,改变¹³¹I在甲状腺中的分布,降低吸收剂量,并显著缩小甲状腺肿体积(降至基线体积的50 - 75%)。然而,一个主要缺点是在相当数量的患者中会诱发甲状腺功能减退。在治疗的第一周观察到甲状腺体积和触痛有短暂增加。大多数患者还出现了短时间(2 - 4周)的甲状腺功能亢进,这对老年人尤其可能产生潜在后果。尽管如此,迄今为止尚无证据表明这些不良反应超过使用rhTSH的积极效果。rhTSH在良性甲状腺疾病中的应用尚未在全球范围内获得批准,但其在MNG中的积极作用显著且前景广阔。

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