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甲状腺稳态的计算参数:用于鉴别诊断和临床研究的新兴工具

Calculated Parameters of Thyroid Homeostasis: Emerging Tools for Differential Diagnosis and Clinical Research.

作者信息

Dietrich Johannes W, Landgrafe-Mende Gabi, Wiora Evelin, Chatzitomaris Apostolos, Klein Harald H, Midgley John E M, Hoermann Rudolf

机构信息

Medical Department I, Endocrinology and Diabetology, Bergmannsheil University Hospitals, Ruhr University of Bochum, Bochum, Germany; Ruhr Center for Rare Diseases (CeSER), Ruhr University of Bochum, Bochum, Germany; Ruhr Center for Rare Diseases (CeSER), Witten/Herdecke University, Bochum, Germany.

Zentrum für Unfallchirurgie, Orthopädie und Wirbelsäulenchirurgie, HELIOS Klinikum Schwelm , Schwelm , Germany.

出版信息

Front Endocrinol (Lausanne). 2016 Jun 9;7:57. doi: 10.3389/fendo.2016.00057. eCollection 2016.

Abstract

Although technical problems of thyroid testing have largely been resolved by modern assay technology, biological variation remains a challenge. This applies to subclinical thyroid disease, non-thyroidal illness syndrome, and those 10% of hypothyroid patients, who report impaired quality of life, despite normal thyrotropin (TSH) concentrations under levothyroxine (L-T4) replacement. Among multiple explanations for this condition, inadequate treatment dosage and monotherapy with L-T4 in subjects with impaired deiodination have received major attention. Translation to clinical practice is difficult, however, since univariate reference ranges for TSH and thyroid hormones fail to deliver robust decision algorithms for therapeutic interventions in patients with more subtle thyroid dysfunctions. Advances in mathematical and simulative modeling of pituitary-thyroid feedback control have improved our understanding of physiological mechanisms governing the homeostatic behavior. From multiple cybernetic models developed since 1956, four examples have also been translated to applications in medical decision-making and clinical trials. Structure parameters representing fundamental properties of the processing structure include the calculated secretory capacity of the thyroid gland (SPINA-GT), sum activity of peripheral deiodinases (SPINA-GD) and Jostel's TSH index for assessment of thyrotropic pituitary function, supplemented by a recently published algorithm for reconstructing the personal set point of thyroid homeostasis. In addition, a family of integrated models (University of California-Los Angeles platform) provides advanced methods for bioequivalence studies. This perspective article delivers an overview of current clinical research on the basis of mathematical thyroid models. In addition to a summary of large clinical trials, it provides previously unpublished results of validation studies based on simulation and clinical samples.

摘要

尽管现代检测技术已基本解决了甲状腺检测的技术问题,但生物变异仍是一项挑战。这适用于亚临床甲状腺疾病、非甲状腺疾病综合征,以及10%的甲状腺功能减退患者,这些患者尽管在左甲状腺素(L-T4)替代治疗下促甲状腺激素(TSH)浓度正常,但仍报告生活质量受损。对于这种情况的多种解释中,治疗剂量不足以及脱碘功能受损的患者采用L-T4单一疗法受到了主要关注。然而,向临床实践的转化很困难,因为TSH和甲状腺激素的单变量参考范围无法为甲状腺功能更细微异常的患者提供可靠的治疗干预决策算法。垂体-甲状腺反馈控制的数学和模拟建模进展增进了我们对调节稳态行为的生理机制的理解。自1956年以来开发的多个控制论模型中,有四个例子也已转化应用于医学决策和临床试验。代表处理结构基本特性的结构参数包括计算得出的甲状腺分泌能力(SPINA-GT)、外周脱碘酶的总活性(SPINA-GD)以及用于评估促甲状腺垂体功能的约斯特尔TSH指数,并辅以最近发表的用于重建个人甲状腺稳态设定点的算法。此外,一系列综合模型(加利福尼亚大学洛杉矶分校平台)为生物等效性研究提供了先进方法。这篇观点文章基于数学甲状腺模型对当前临床研究进行了概述。除了大型临床试验的总结外,还提供了基于模拟和临床样本的验证研究的此前未发表的结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1109/4899439/0c1a39862158/fendo-07-00057-g001.jpg

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