Department of Internal Medicine and Oncological Chemotherapy, Medical University of Silesia, Katowice, Poland.
Department of Radiology and Nuclear Medicine, Medical University of Silesia, Katowice, Poland.
Front Endocrinol (Lausanne). 2023 Aug 3;14:1138569. doi: 10.3389/fendo.2023.1138569. eCollection 2023.
The most frequent extrathyroidal Graves' disease manifestation is Graves' orbitopathy (GO). The treatment of GO is determined by its severity and activity. There is currently no reliable, impartial method for assessing it clinically or distinguishing fibrosis from active inflammatory disorders. Today, imaging methods including orbital ultrasound (US), computed tomography (CT), and magnetic resonance imaging (MRI) are frequently employed to show pathological abnormalities in the ocular adnexa of GO patients. In addition, a not widely accepted technique - 99mTc-DTPA SPECT - has some potential to evaluate retrobulbar inflammation in GO patients. However, FDG-PET/CT is possibly superior to other imaging modalities in detecting inflammation in GO and it may be useful in assessing disease activity in case of clinical or serological uncertainty. It might also act as an early indicator of GO development and its aggravation before irreversible tissue alterations take place and may be used in the differential diagnosis of inflammatory disorders of the orbit. However, before FDG-PET/CT could be applied in daily clinical practice, the methodology of GO activity assessment with defined cut-off values for radionuclide concentration - standardized units of value (SUV) have to be established and validated. In addition, the limitations of this technique have to be recognized.
最常见的甲状腺外格雷夫斯病表现是格雷夫斯眼病(GO)。GO 的治疗取决于其严重程度和活动度。目前,临床上尚无可靠、公正的方法来评估它,也无法区分纤维化与活动性炎症性疾病。如今,包括眼眶超声(US)、计算机断层扫描(CT)和磁共振成像(MRI)在内的成像方法经常用于显示 GO 患者眼附属器的病理异常。此外,一种尚未被广泛接受的技术 - 99mTc-DTPA SPECT - 具有评估 GO 患者球后炎症的潜力。然而,FDG-PET/CT 在检测 GO 中的炎症方面可能优于其他成像方式,并且在临床或血清学不确定的情况下,它可能有助于评估疾病活动度。它还可能在不可逆组织改变发生之前作为 GO 发展及其加重的早期指标,并可用于眼眶炎症性疾病的鉴别诊断。然而,在 FDG-PET/CT 可以应用于日常临床实践之前,必须建立和验证具有放射性核素浓度定义截止值(标准化单位值(SUV))的 GO 活性评估方法。此外,还必须认识到该技术的局限性。