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    Oxidative Stress in Graves Disease and Graves Orbitopathy

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    Oxidative stress is involved in the pathogenesis of Graves hyperthyroidism (GH) and Graves orbitopathy (GO) and an antioxidant approach has been proposed for both. In GH, a disbalance of the cell redox state is associated with thyroid hyperfunction and antithyroid medications may reduce oxidative stress. Tissue hypoxia participates in the pathogenesis of GO, and oxygen free radicals are involved in the typical changes of orbital tissues as reported by in vitro and clinical studies. Antioxidant agents, especially selenium, have been proposed as a therapeutic option for GH and GO. A clinical study regarding the use of selenium in mild GO has provided evidence for a beneficial effect in the short term, even though its beneficial effects in the long term are still to be investigated. In addition to selenium, a protective role of other antioxidant agents, i.e., quercetin, enalapril, vitamin C, N-acetyl-L-cysteine and melatonin has been suggested by in vitro studies, although clinical studies are lacking. Here, we review the role of oxidative stress and antioxidant agents in GH and GO

    Graves disease: latest understanding of pathogenesis and treatment options

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    Graves disease is the most common cause of hyperthyroidism in iodine-sufficient areas. The main responsible mechanism is related to autoantibodies that bind and activate the thyrotropin receptor (TSHR). Although Graves hyperthyroidism is relatively common, no causal treatment options are available. Established treatment modalities are antithyroid drugs, which reduce thyroid hormone synthesis, radioactive iodine and surgery. However, emerging drugs that target the main autoantigen (monoclonal antibodies, small molecules, peptides) or block the immune pathway have been recently tested in clinical trials. Graves disease can involve the thyroid exclusively or it can be associated with extrathyroidal manifestations, among which Graves orbitopathy is the most common. The presence of Graves orbitopathy can change the management of the disease. An established treatment for moderate-to-severe Graves orbitopathy is intravenous glucocorticoids. However, recent advances in understanding the pathogenesis of Graves orbitopathy have allowed the development of new target-based therapies by blocking pro-inflammatory cytokine receptors, lymphocytic infiltration or the insulin-like growth factor 1 receptor (IGF1R), with several clinical trials providing promising results. This article reviews the new discoveries in the pathogenesis of Graves hyperthyroidism and Graves orbitopathy that offer several important tools in disease management

    Statins in Graves Orbitopathy: A New Therapeutic Tool

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    Purpose: Graves orbitopathy (GO) is the most common extrathyroidal manifestation of Graves disease. Although its pathogenesis is not fully elucidated, GO is commonly considered an autoimmune disease due to loss of self-tolerance against autoantigens shared by thyroid epithelial cells and orbital fibroblasts. High-dose intravenous glucocorticoids (ivGCs) are the most used treatment for moderate-to-severe, active GO, but the addition of other immunomodulating treatments can improve the efficacy of ivGCs. Among the various risk factors that can affect the occurrence of GO, cholesterol may be worthy of interest. Since 2015 the role of cholesterol and cholesterol-lowering medications has been investigated. The purpose of this review is to discuss this topic, thereby offering new therapeutic opportunities for patients with GO. Methods: We searched PubMed for studies published between January 1, 1980 and June 1, 2023, using the search terms "Graves orbitopathy," "thyroid eye disease," "Graves ophthalmopathy," "thyroid ophthalmopathy," "thyroid-associated ophthalmopathy," "endocrine ophthalmopathy," "cholesterol," "lipids," "statins," "low-density lipoprotein," "atorvastatin," and "cholesterol-lowering drugs." Only English-language articles were included. Results: A correlation between low-density lipoprotein cholesterol and the risk of GO development has been reported. Furthermore, low-density lipoprotein cholesterol has been proposed as a risk factor that can affect the course of GO and the response to ivGCs. The protective role of cholesterol-lowering medications in preventing GO has been also investigated. Statin treatment was found to have potential benefits in reducing the risk of GO in patients with Graves disease. Given these findings, measurement of low-density lipoprotein cholesterol and treatment of hypercholesterolemia in patients with moderate-to-severe, active GO may be considered before starting ivGCs administration. Recently, a randomized clinical trial aimed at investigating the effects of statins in GO suggested that the addition of oral atorvastatin to ivGCs improves the overall outcome of moderate-to-severe, active GO in hypercholesterolemic patients given ivGCs. Conclusions: Overall, statins seem to have a preventive and therapeutic role in moderate-to-severe active GO. Their efficacy can be related to cholesterol-lowering activity, pleiotropic actions, and interaction with methylprednisolone

    Immune Checkpoint Blockade Anti-PD-L1 as a Trigger for Autoimmune Polyendocrine Syndrome

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    CONTEXT: The programmed cell death protein 1 (PD-1)/programmed cell death protein ligand 1 (PD-L1) pathway is a key regulator in T-cell activation and tolerance, limiting effector T-cell function in peripheral tissues. Atezolizumab, an anti-PD-L1 monoclonal antibody, is approved for treatment of some types of advanced cancer. Its main treatment-related adverse events are immune related, such as thyroid dysfunction and hypophysitis. Autoimmune endocrinopathy can occur as isolated manifestations; only a few cases of autoimmune polyendocrine syndromes have been reported thus far. CASE: We report a case of polyendocrine syndrome type 2, characterized by Addison disease (AD), type 1 diabetes mellitus (T1DM), accompanied by hypophysitis, in a patient treated with atezolizumab. Testing was positive for 21-hydroxylase and pituitary antibodies and negative for islet cells antibodies. HLA typing revealed DRB1*04 and DQB1*03 haplotypes, which are associated with increased susceptibility to T1DM and AD. CONCLUSION: The type and severity of immune-related adverse events in polyendocrine syndrome type 2 are different and depend on the monoclonal antibody used. Although the numerous molecular mechanisms inducing autoimmune endocrine diseases are still unclear, a link exists between HLA haplotypes, gene variants involved in immune checkpoint molecule expression, and increased susceptibility to autoimmune endocrinopathies. Additional studies are needed to identify susceptible patients and adapt therapy to each patient

    Going Beyond Counting First Authors in Author Co-citation Analysis

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    The present study examines one of the fundamental aspects of author co-citation analysis (ACA) - the way co-citation counts are defined. Co-citation counting provides the data on which all subsequent statistical analyses and mappings are based, and we compare ACA results based on two different types of co-citation counting - the traditional type that only counts the first one among a cited work's authors on the one hand and a non-traditional type that takes into account the first 5 authors of a cited work on the other hand. Results indicate that the picture produced through this non-traditional author co-citation counting contains more coherent author groups and is therefore considerably clearer. However, this picture represents fewer specialties in the research field being studied than that produced through the traditional first-author co-citation counting when the same number of top-ranked authors is selected and analyzed. Reasons for these effects are discussed

    Ocular surface disease index in Graves’ orbitopathy: a cross-sectional study

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    Introduction: Graves' Orbitopathy (GO) is an autoimmune disorder characterized by inflammation of orbital tissues, leading to various ocular manifestations, including ocular surface disease. This cross-sectional study aimed to assess the presence of ocular surface disease using the Ocular Surface Disease Index (OSDI) in patients with Graves' disease (GD) and moderate-to-severe active GO compared to those with GD and mild non-active GO. Additionally, we aimed to investigate the correlation between ocular surface disease and the eye features of GO. Methods: Consecutive GD patients with GO referred to the Ophthalmology and Endocrinology Units of the University Hospital of Pisa between June 2022 and February 2023 were enrolled. OSDI scores were obtained from 79 GD patients, categorized into moderate-to-severe active GO and mild non-active GO groups. Results: OSDI scores were significantly higher in patients with moderate-to-severe active GO compared to those with mild non-active GO (P=0.0006). A cutoff value of 33 for positive tests revealed a higher frequency of pathological OSDI in moderate-to-severe active GO patients compared to mild non-active GO patients (P=0.0221; OR 3.673, CI 1.277-9.531). Within the moderate-to-severe active GO group, a significant positive correlation was found between OSDI and Clinical Activity Score (CAS) (R= 0.3867, 95% CI from 0.1403 to 0.5880; P=0.0030). Using a cutoff value of 55 (the 75th percentile of the study population), patients with CAS ≥ 3 had a significantly higher proportion of pathological OSDI compared to those with CAS <3 (P=0.0039; OR 4.075, CI 1.619-10.39). Proptosis values ≥ 22 mm and the presence of lagophthalmos were identified as significant risk factors for ocular surface disease development (P=0.0406 and P=0.0493, respectively). Discussion: Our study highlights a significantly higher prevalence of ocular surface disease, as measured by OSDI, in patients with moderate-to-severe active GO compared to those with mild non-active disease. The degree of GO activity positively correlates with ocular surface involvement, and proptosis and lagophthalmos increase the risk of its occurrence. These findings emphasise the importance of assessing and managing ocular surface health in GO patients. Early identification and appropriate treatment of ocular surface disease need to be pursued to improve patient management

    Beneficial effect of low-dose radioiodine ablation for Graves' orbitopathy: results of a retrospective study

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    Graves' orbitopathy (GO) reflects an autoimmune response against antigens expressed by the thyroid and orbital tissues. Elimination of thyroid antigens may be beneficial for GO. Total thyroid ablation (TTA) [thyroidectomy (Tx), followed by 30 mCi of radioiodine] was shown to exert a beneficial effect on GO following intravenous glucocorticoids (ivGC) compared with Tx alone. Here, we investigated retrospectively whether TTA performed with a 15 mCi of radioiodine still maintains advantages over Tx

    Insights Into the Role of DNA Methylation and Gene Expression in Graves Orbitopathy

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    Context: A role of DNA methylation in Graves orbitopathy (GO) has been proposed. Objective: This work aimed to investigate DNA methylation and gene expression in orbital fibroblasts from control and GO patients, under basal conditions or following challenge with an anti- thyrotropin (TSH) receptor antibody (M22) or cytokines involved in GO; to investigate the relationship between DNA methylation and cell function (proliferation); and to perform a methylome analysis. Methods: Orbital fibroblasts from 6 GO and 6 control patients from a referral center underwent methylome analysis of the whole genome. Results: Global DNA methylation increased significantly both in control and GO fibroblasts on incubation with M22. Expression of 2 selected genes (CYP19A1 and AIFM2) was variably affected by M22 and interleukin-6. M22 increased cell proliferation in control and GO fibroblasts, which correlated with global DNA methylation. Methylome analysis revealed 19 869 DNA regions differently methylated in GO fibroblasts, encompassing 3957 genes and involving CpG islands, shores, and shelves. A total of 119 gene families and subfamilies, 89 protein groups, 402 biological processes, and 7 pathways were involved. Three genes found to be differentially expressed were concordantly hypermethylated or hypomethylated. Among the differently methylated genes, insulin-like growth factor-1 receptor and several fibroblast growth factors and receptors were included. Conclusion: We propose that, when exposed to an autoimmune environment, orbital fibroblasts undergo hypermethylation or hypomethylation of certain genes, involving CpG promoters, which results in differential gene expression, which may be responsible for functional alterations, in particular higher proliferation, and ultimately for the GO phenotype in vivo
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