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Mathematical Modeling of the Pituitary–Thyroid Feedback Loop: Role of a TSH-T3-Shunt and Sensitivity Analysis

机译:垂体-甲状腺反馈回路的数学建模:TSH-T3-分流器的作用和灵敏度分析

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摘要

Despite significant progress in assay technology, diagnosis of functional thyroid disorders may still be a challenge, as illustrated by the vague upper limit of the reference range for serum thyrotropin (TSH). Diagnostical problems also apply to subjects affected by syndrome T, i.e., those 10% of hypothyroid patients who continue to suffer from poor quality of life despite normal TSH concentrations under substitution therapy with levothyroxine (L-T4). In this paper, we extend a mathematical model of the pituitary–thyroid feedback loop in order to improve the understanding of thyroid hormone homeostasis. In particular, we incorporate a TSH-T3-shunt inside the thyroid, whose existence has recently been demonstrated in several clinical studies. The resulting extended model shows good accordance with various clinical observations, such as a circadian rhythm in free peripheral triiodothyronine (FT3). Furthermore, we perform a sensitivity analysis of the derived model, revealing the dependence of TSH and hormone concentrations on different system parameters. The results have implications for clinical interpretation of thyroid tests, e.g., in the differential diagnosis of subclinical hypothyroidism.
机译:尽管测定技术取得了重大进展,但甲状腺功能性甲状腺疾病的诊断仍可能是一项挑战,正如血清促甲状腺激素(TSH)参考范围的模糊上限所说明的那样。诊断问题也适用于受T综合征影响的受试者,即甲状腺功能不全的甲状腺功能减退患者中,尽管在甲状腺素(L-T4)替代疗法中TSH浓度正常,但仍生活质量较差的甲状腺功能减退患者中的10%。在本文中,我们扩展了垂体-甲状腺反馈回路的数学模型,以增进对甲状腺激素稳态的了解。特别是,我们在甲状腺内部整合了TSH-T3分流器,最近在一些临床研究中证明了其存在。所得扩展模型显示出与各种临床观察结果相符的良好结果,例如游离外周三碘甲腺氨酸(FT3)中的昼夜节律。此外,我们对衍生模型进行了敏感性分析,揭示了TSH和激素浓度对不同系统参数的依赖性。该结果对于甲状腺测试的临床解释具有意义,例如在亚临床甲状腺功能减退的鉴别诊断中。

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