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1.
Front Endocrinol (Lausanne) ; 15: 1424957, 2024.
Article in English | MEDLINE | ID: mdl-39045270

ABSTRACT

Introduction: We aimed to comprehensively investigate the causal relationship between 731 immune cell traits and autoimmune thyroiditis (AIT) and to identify and quantify the role of 1400 metabolic traits as potential mediators in between. Methods: Using summary-level data from genome-wide association studies (GWAS) we performed a two-sample bidirectional Mendelian randomization (MR) analysis of genetically predicted AIT and 731 immune cell traits. Furthermore, we used a two-step MR analysis to quantify the proportion of the total effects (that the immune cells exerted on the risk of AIT) mediated by potential metabolites. Results: We identified 24 immune cell traits (with odds ratio (OR) ranging from 1.3166 6 to 0.6323) and 10 metabolic traits (with OR ranging from 1.7954 to 0.6158) to be causally associated with AIT, respectively. Five immune cell traits (including CD38 on IgD+ CD24-, CD28 on CD28+ CD45RA+ CD8br, HLA DR+ CD4+ AC, TD CD4+ %CD4+, and CD8 on EM CD8br) were found to be associated with the risk of AIT, which were partially mediated by metabolites (including glycolithocholate sulfate, 5alpha-androstan-3alpha,17beta-diol disulfate, arachidonoylcholine, X-15486, and kynurenine). The proportion of genetically predicted AIT mediated by the identified metabolites could range from 5.58% to 17.7%. Discussion: Our study identified causal associations between AIT and immune cells which were partially mediated by metabolites, thus providing guidance for future clinical and basic research.


Subject(s)
Genome-Wide Association Study , Mendelian Randomization Analysis , Thyroiditis, Autoimmune , Humans , Thyroiditis, Autoimmune/genetics , Thyroiditis, Autoimmune/immunology , Thyroiditis, Autoimmune/metabolism , Polymorphism, Single Nucleotide , Genetic Predisposition to Disease
2.
Nat Commun ; 15(1): 5748, 2024 Jul 09.
Article in English | MEDLINE | ID: mdl-38982041

ABSTRACT

Autoimmune thyroid disease (AITD) is a common autoimmune disease. In a GWAS meta-analysis of 110,945 cases and 1,084,290 controls, 290 sequence variants at 225 loci are associated with AITD. Of these variants, 115 are previously unreported. Multiomics analysis yields 235 candidate genes outside the MHC-region and the findings highlight the importance of genes involved in T-cell regulation. A rare 5'-UTR variant (rs781745126-T, MAF = 0.13% in Iceland) in LAG3 has the largest effect (OR = 3.42, P = 2.2 × 10-16) and generates a novel start codon for an open reading frame upstream of the canonical protein translation initiation site. rs781745126-T reduces mRNA and surface expression of the inhibitory immune checkpoint LAG-3 co-receptor on activated lymphocyte subsets and halves LAG-3 levels in plasma among heterozygotes. All three homozygous carriers of rs781745126-T have AITD, of whom one also has two other T-cell mediated diseases, that is vitiligo and type 1 diabetes. rs781745126-T associates nominally with vitiligo (OR = 5.1, P = 6.5 × 10-3) but not with type 1 diabetes. Thus, the effect of rs781745126-T is akin to drugs that inhibit LAG-3, which unleash immune responses and can have thyroid dysfunction and vitiligo as adverse events. This illustrates how a multiomics approach can reveal potential drug targets and safety concerns.


Subject(s)
Antigens, CD , Codon, Initiator , Genetic Predisposition to Disease , Lymphocyte Activation Gene 3 Protein , Humans , Codon, Initiator/genetics , Antigens, CD/genetics , Antigens, CD/metabolism , Diabetes Mellitus, Type 1/genetics , Diabetes Mellitus, Type 1/immunology , Female , Polymorphism, Single Nucleotide , Vitiligo/genetics , Male , Genome-Wide Association Study , Thyroiditis, Autoimmune/genetics , 5' Untranslated Regions/genetics , Case-Control Studies , Iceland , Adult
3.
Mymensingh Med J ; 33(3): 914-922, 2024 Jul.
Article in English | MEDLINE | ID: mdl-38944740

ABSTRACT

Autoimmune thyroiditis gradually destroys the thyroid gland leading to hypothyroidism and may even lead to papillary thyroid carcinoma. Deficiency of Vitamin D has been linked to development of autoimmunity. Single nucleotide polymorphisms of the Vitamin D receptor gene have associated with autoimmune diseases in several studies. In this hospital based non interventional cross-sectional study Vitamin D receptor gene was studied for FokI (rs2228570) polymorphism from purified DNA in forty-eight adult cases and fifty age and sex matched healthy controls. This study was conducted in the department of Biochemistry, Calcutta National Medical College, Kolkata, West Bengal, India from January 2021 to July 2022. Their DNA was isolated using phenol chloroform method and were analysed for the related single nucleotide polymorphism by restriction digestion using appropriate restriction enzymes after amplification by PCR. Differences in allele frequencies between two groups were estimated by chi square and odds ratio test. Any potential association between the vitamin D anti TPO antibody and thyroid hormone status with polymorphic variations were assessed by post hoc ANOVA among the three genotypes. The distribution of FF genotype was significantly higher among the case group (Χ²=10.2788, p=0.006). The odds ratio for the allele F was significantly higher in case group for a range of 1.97 to 5.94 for 95 percent confidence interval (Χ²=13.9678, p=<0.001). The genotype FF group had significantly lowest Vitamin D (p=0.008) and highest Anti TPO ab (p=0.031) compared to Ff and ff genotypes. Thus, significant association was revealed between the VDR gene Fok1(rs2228570) polymorphism and autoimmune thyroiditis with the predominance of FF genotype being a strong susceptibility factor for autoimmune thyroiditis and Vitamin D deficiency in the studied population of Eastern India.


Subject(s)
Receptors, Calcitriol , Thyroiditis, Autoimmune , Humans , Receptors, Calcitriol/genetics , Thyroiditis, Autoimmune/genetics , Thyroiditis, Autoimmune/epidemiology , Male , Female , Adult , Vitamin D/blood , Polymorphism, Single Nucleotide , Cross-Sectional Studies , Case-Control Studies , Middle Aged , India/epidemiology , Genetic Predisposition to Disease , Gene Frequency , Genotype
4.
Immunogenetics ; 76(4): 219-231, 2024 Aug.
Article in English | MEDLINE | ID: mdl-38940861

ABSTRACT

Autoimmune thyroid diseases (AITDs), mainly including Graves' disease (GD) and Hashimoto's thyroiditis (HT), are common autoimmune disorders characterized by abnormal immune responses targeting the thyroid gland. We conducted a bidirectional two-sample MR analysis using the largest dataset of peripheral immune cell phenotypes from Sardinia, and the AITD dataset from the 10th round of the FinnGen and the UK Biobank project. Instrumental variables (IVs) were rigorously selected based on the three assumptions of MR and analyzed using the Wald ratio, inverse-variance weighted (IVW), MR-Egger, and weighted median methods. Additionally, sensitivity analyses were performed using Cochrane's Q, the Egger intercept, the MR-PRESSO, and the leave-one-out (LOO) method to ensure the robustness of the results. The Steiger test was utilized to identify and exclude potential reverse causation. The results showed that 3, 3, and 11 immune cell phenotypes were significantly associated with the risk of AITD. In GD, the proportion of naive CD4-CD8- (DN) T cells in T cells and the proportion of terminally differentiated CD4+T cells in T cells showed the strongest inducing and protective effects, respectively. In HT, lymphocyte count and CD45 on CD4+T cells showed the strongest inducing and protective effects, respectively. In autoimmune hypothyroidism, CD127 CD8+T cell count and terminally differentiated DN T cell count exhibited the strongest inducing and protective effects, respectively. Through MR analysis, our study provides direct genetic evidence of the impact of immune cell traits on AITD risk and lays the groundwork for potential therapeutic and diagnostic target discovery.


Subject(s)
Graves Disease , Mendelian Randomization Analysis , Humans , Graves Disease/genetics , Graves Disease/immunology , Hashimoto Disease/genetics , Hashimoto Disease/immunology , Phenotype , Genetic Predisposition to Disease , Thyroiditis, Autoimmune/genetics , Thyroiditis, Autoimmune/immunology , Autoimmune Diseases/genetics , Autoimmune Diseases/immunology , Polymorphism, Single Nucleotide
5.
Tohoku J Exp Med ; 263(2): 133-139, 2024 Jul 09.
Article in English | MEDLINE | ID: mdl-38692862

ABSTRACT

Genetic factors, particularly human leukocyte antigen (HLA) class II genes, are known to significantly influence the onset of type 1 diabetes (T1D). Additionally, patients with T1D often develop autoimmune thyroid diseases (AITD). Despite this association, comprehensive research on individuals with both AITD and T1D in Japan, especially regarding the influence of specific HLA alleles, remains insufficient. In this retrospective study, we analyzed 44 inpatients diagnosed with T1D. These patients were predominantly female, with an average onset age of 35 years, poor blood sugar control, and approximately 43.2% had concurrent AITD. We observed significant associations of HLA-DRB1*04:05, HLA-DRB1*09:01 and HLA-DRB1*15:02 alleles with T1D regardless of AITD presence, which had been previously established for T1D in Japanese. In this context, comparing Japanese patients with AITD alone, we noted AITD comorbidity with T1D results in alterations in the frequencies of HLA-DRB1*09:01, HLA-DRB1*04:03, and HLA-DRB1*15:02. Furthermore, HLA-DRB1*04:05, HLA-DRB1*09:01, HLA-DRB1*13:02, and HLA-DRB1*15:01 alleles may be alleles whose susceptibility varies for both conditions. These findings underscore the importance of understanding the relationship between T1D, AITD, and HLA genetics, which may inform personalized treatment strategies and facilitate the development of targeted therapies. Future research endeavors should aim to elucidate underlying mechanisms and validate these findings in larger cohorts.


Subject(s)
Alleles , Diabetes Mellitus, Type 1 , Genetic Predisposition to Disease , Humans , Diabetes Mellitus, Type 1/genetics , Female , Male , Adult , HLA-DRB1 Chains/genetics , Japan , Asian People/genetics , Thyroiditis, Autoimmune/genetics , Middle Aged , Gene Frequency/genetics , Genes, MHC Class II/genetics , Histocompatibility Antigens Class II/genetics , Young Adult , Adolescent , East Asian People
6.
Skin Res Technol ; 30(6): e13742, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38807429

ABSTRACT

BACKGROUND: Vitiligo is an acquired autoimmune depigmented disorder characterized by the presence of white and well-defined patches on the skin, mucous membrane, or both. It is associated with a significant disease burden and has a profoundly impacts patients' quality of life. Autoimmune thyroid diseases (AITDs) result from an autoimmune system dysregulation, leading to an erroneous immune attack on the thyroid gland. Previous observational and epidemiological studies have suggested the association between vitiligo and AITDs. However, the bidirectional cause-effect relationship between vitiligo and AITDs has not been formally assessed. METHOD: Two-sample bidirectional Mendelian randomization (MR) analysis was conducted to explore potential causal relationships between genetically increased risk of vitiligo and AITDs, using summary statistics from genome-wide association studies in European populations. Causal effects were primarily estimated using the inverse variance weighted method, and additional quality control was performed using the MR-Egger, weighted median, simple mode, and weight mode methods. Sensitivity analysis was conducted to assess the robustness of the results. RESULTS: The forward MR analysis showed a positive causal relationship between vitiligo and autoimmune thyroiditis (AIT), autoimmune hyperthyroidism (AIH), and Graves' disease (GD). The odds ratio (OR) were 1.17 (95% CI, 1.01-1.35; p = 0.04), 1.12 (95% CI, 1.03-1.22; p = 0.01), and 1.13 (95% CI, 1.06-1.20; p < 0.01), respectively. In the reverse MR analysis, a positive causal relationship was found between AIT and vitiligo, with an OR of 1.10 (95% CI, 1.01-1.35; p = 0.04). However, no causal relationship was observed between AIH (p = 0.10) or GD (p = 0.61) and vitiligo. Sensitivity analysis revealed no evidence of horizontal pleiotropy or heterogeneity. CONCLUSIONS: The genetic-level investigation provides evidence of a genetic causal association between susceptibility to vitiligo and an increased risk of AITDs. Additionally, the results demonstrate a genetic causal association between susceptibility to AIT and an increased risk of vitiligo, while not indicating a similar association with susceptibility to AIH or GD.


Subject(s)
Genome-Wide Association Study , Mendelian Randomization Analysis , Vitiligo , Vitiligo/genetics , Vitiligo/epidemiology , Humans , Genetic Predisposition to Disease/genetics , Thyroiditis, Autoimmune/genetics , Thyroiditis, Autoimmune/epidemiology , Autoimmune Diseases/genetics , Autoimmune Diseases/epidemiology , Thyroid Diseases/genetics , Thyroid Diseases/epidemiology , Polymorphism, Single Nucleotide
7.
Int Immunopharmacol ; 136: 112313, 2024 Jul 30.
Article in English | MEDLINE | ID: mdl-38810306

ABSTRACT

Autoimmune thyroid diseases (AITDs), including Graves' disease and Hashimoto's thyroiditis, are organ-specific autoimmune disorders characterized by conditions including goiter, autoimmune thyroiditis, hyperthyroidism, and hypothyroidism, which represent the most severe clinical manifestations of AITDs. The prevalence of autoimmune thyroid disorders is on the rise, influenced by increased environmental factors and changes in modern lifestyles. Understanding the pathophysiology of AITDs is crucial for identifying key factors that affect the disease's onset, progression, and recurrence, thereby laying a solid foundation for precise diagnosis and treatment. The development of AITDs involves a complex interplay of environmental influences, immune dysfunctions, and genetic predispositions. Genetic predispositions, in particular, are significant, with numerous genes identified as being linked to AITDs. This article focuses on examining the genes vulnerable to AITDs to deepen our understanding of the relevant genetic contributors, ultimately facilitating the development of effective prevention and treatment methods.


Subject(s)
Genetic Predisposition to Disease , Humans , Thyroiditis, Autoimmune/genetics , Animals , Autoimmune Diseases/genetics , Autoimmune Diseases/immunology , Thyroid Diseases/genetics , Thyroid Diseases/immunology , Hashimoto Disease/genetics , Hashimoto Disease/immunology
8.
Eur Rev Med Pharmacol Sci ; 28(8): 2988-2995, 2024 Apr.
Article in English | MEDLINE | ID: mdl-38708455

ABSTRACT

OBJECTIVE: The impact of selenium on autoimmune thyroid disease (AITD) is a subject of ongoing debate. This study aimed to analyze the causal correlations of selenium with autoimmune thyroiditis (AIT), autoimmune hyperthyroidism (AIH), and Graves' disease (GD) by Mendelian randomization (MR). MATERIALS AND METHODS: Single nucleotide polymorphisms related to selenium, AIT, AIH, and GD were sourced from the IEU Open GWAS project and FinnGen. Exposure-outcome causality was assessed using inverse variance weighted, MR-Egger, and weighted median. Horizontal pleiotropy was examined using the MR-Egger intercept, heterogeneity was evaluated with Cochran's Q test, and the robustness of the results was confirmed via leave-one-out sensitivity analysis. RESULTS: The MR analysis revealed that selenium did not exhibit a causal relationship with AIT (OR 0.993, 95% CI 0.786 to 1.108, p=0.432), AIH (OR 1.066, 95% CI 0.976 to 1.164, p=0.154), or GD (OR 1.052, 95% CI 0.984 to 1.126, p=0.138). Moreover, the MR-Egger intercept and Cochran's Q test demonstrated the absence of horizontal pleiotropy or heterogeneity in these results (p>0.05). Sensitivity analysis affirmed the robustness of these results. CONCLUSIONS: This MR analysis concluded that selenium was not linked to AIT, AIH, or GD risk. Therefore, indiscriminate selenium supplementation is not advisable for AITD patients without concurrent selenium deficiency.


Subject(s)
Graves Disease , Mendelian Randomization Analysis , Polymorphism, Single Nucleotide , Selenium , Thyroiditis, Autoimmune , Humans , Selenium/administration & dosage , Thyroiditis, Autoimmune/genetics , Graves Disease/genetics , Genome-Wide Association Study
9.
Arthritis Care Res (Hoboken) ; 76(8): 1162-1172, 2024 Aug.
Article in English | MEDLINE | ID: mdl-38556923

ABSTRACT

OBJECTIVE: Rheumatoid arthritis (RA) and thyroid dysfunction are frequently observed in the same patient. However, whether they co-occur or exhibit a causal relationship remains uncertain. We aimed to systematically investigate the causal relationship between RA and thyroid function using a large sample and advanced methods. METHODS: Bidirectional two-sample Mendelian randomization (MR) analysis was performed based on RA and six thyroid function trait data sets from the European population. The robustness of the results was demonstrated using multiple MR methods and a series of sensitivity analyses. Multivariable MR using Bayesian model averaging (MR-BMA) was performed to adjust for possible competing risk factors. A sensitivity data set, which included data from patients with seropositive RA and controls, was used to repeat the analyses. Furthermore, enrichment analysis was employed to discover the underlying mechanism between RA and thyroid functions. RESULTS: A significantly positive causal effect was identified for RA on autoimmune thyroid disease (AITD) as well as for AITD on RA (P < 0.001). Further sensitivity analyses showed consistent causal estimates from a variety of MR methods. After removing the outliers, MR-BMA results showed that RA and AITD were independent risk factors in their bidirectional causality, even in the presence of other competing risk factors (adjusted P < 0.05). Enrichment analysis showed immune cell activation and immune response play crucial roles in them. CONCLUSION: Our results illustrate the significant bidirectional causal effect of RA and AITD, which holds even in multiple competing risk factors. Clinical screening for thyroid dysfunction in patients with RA deserves further attention, and vice versa.


Subject(s)
Arthritis, Rheumatoid , Mendelian Randomization Analysis , Thyroid Gland , Humans , Arthritis, Rheumatoid/genetics , Arthritis, Rheumatoid/diagnosis , Thyroid Gland/physiopathology , Thyroid Gland/immunology , Risk Factors , Bayes Theorem , Thyroid Function Tests , Genetic Predisposition to Disease , Thyroiditis, Autoimmune/genetics , Thyroiditis, Autoimmune/diagnosis , Thyroiditis, Autoimmune/epidemiology
11.
Curr Protoc ; 4(3): e938, 2024 Mar.
Article in English | MEDLINE | ID: mdl-38436133

ABSTRACT

The main challenge in the "post-GWAS" era is to determine the functional meaning of genetic variants and their contribution to disease pathogenesis. Development of suitable mouse models is critical because disease susceptibility is triggered by complex interactions between genetic, epigenetic, and environmental factors that cannot be modeled by in vitro models. Thyroglobulin (TG) is a key gene for autoimmune thyroid disease (AITD) and several single nucleotide polymorphisms (SNPs) in the TG coding region have been associated with AITD. The classical model of experimental autoimmune thyroiditis (EAT), based on immunization of genetically susceptible mouse strains with purified TG protein in adjuvant, does not allow testing the impact of TG sequence variants on the development of autoimmune thyroiditis. Here we describe a protocol for the induction of EAT by immunization of mice susceptible to thyroiditis with an adenovirus vector carrying full-length human TG cDNA (Ad-TG EAT). We also provide support protocols for evaluation of autoimmune thyroiditis including serological assessment of TG antibodies, in vitro splenocyte proliferation assay and cytokines secretion, thyroid histology, and evaluation of thyroid lymphocytic infiltration by immunostaining. This protocol for EAT induction allows manipulation of the TG cDNA to introduce variants associated with AITD, enabling the testing of the functional effects of susceptible variants and their haplotypes on the immunogenicity of TG. Furthermore, the Ad-TG EAT mouse model is a valuable model for studying the interactions of the TG variants with non-genetic factors influencing AITD development (e.g., cytokines, iodine exposure) or with variants of other susceptible genes (e.g., HLA-DRß1). © 2024 Wiley Periodicals LLC. Basic Protocol: Development of a mouse model of autoimmune thyroiditis induced by immunization with adenovirus containing full-length thyroglobulin cDNA Support Protocol 1: Splenocytes isolation Support Protocol 2: T cell stimulation and carboxyfluorescein diacetate succinimidyl ester (CFSE) based cell proliferation assay Support Protocol 3: Cytokine assays: measuring levels of interferon gamma (IFNγ) and interleukins IL-2, IL-4, and IL-10 in splenocyte supernatants Support Protocol 4: Evaluating thyroid histology and infiltration with immune cells: hematoxylin-eosin staining of mice thyroid glands Support Protocol 5: Immunohistochemistry of thyroid tissues: Immunofluorescence protocol of paraffin-embedded thyroid sections Support Protocol 6: Anti-thyroglobulin antibody measurement in mice sera by enzyme-linked immunosorbent assay (ELISA).


Subject(s)
Adenoviridae Infections , Hashimoto Disease , Thyroiditis, Autoimmune , Humans , Animals , Mice , Thyroglobulin/genetics , Adenoviridae/genetics , DNA, Complementary/genetics , Immunization , Thyroiditis, Autoimmune/genetics , Cytokines , Disease Models, Animal
12.
Int J Mol Sci ; 25(6)2024 Mar 14.
Article in English | MEDLINE | ID: mdl-38542286

ABSTRACT

(1) Autoimmune thyroiditis (AIT) is the most common cause of primary hypothyroidism and one of the most frequent organ-specific autoimmune diseases. Its pathogenesis is polygenic and still requires further research. The aim of the study was to assess, for the first time in the Caucasian population, the role of selected TPO gene promoter polymorphisms (rs2071399 G/A, rs2071400C/T, rs2071402 A/G, and rs2071403 A/G) in the development of AIT. A total of 237 patients diagnosed with AIT and 130 healthy controls were genotyped for four TPO gene polymorphisms, and the results were statistically analyzed to check for the role of these polymorphisms. There were no significant differences in the genotype and allele frequencies of the studied TPO gene promoter polymorphisms between patients and controls (p > 0.05). The haplotype distribution (rs2071400-rs2071402-rs2071403) between the two studied groups was similar for the most common variants (CGA, CAG, TGG). Only a rare haplotype (CGG) occurred more frequently among patients compared to controls (p = 0.04). The studied TPO gene promoter polymorphisms did not show an association with susceptibility to AIT in the Caucasian Polish population, contrary to the results in Japanese patients.


Subject(s)
Hashimoto Disease , Thyroiditis, Autoimmune , Humans , Autoantibodies , Hashimoto Disease/genetics , Iodide Peroxidase/genetics , Poland , Polymorphism, Single Nucleotide , Thyroiditis, Autoimmune/genetics
13.
J Trace Elem Med Biol ; 83: 127413, 2024 May.
Article in English | MEDLINE | ID: mdl-38387427

ABSTRACT

BACKGROUND: Iodine excess (IE) intake leads to lymphocyte dysfunction and contributes to autoimmune thyroiditis (AIT). Abnormal thyroid function is associated with adverse cardiovascular events, endothelial dysfunction is often an early pathophysiological feature in most cardiovascular disease. However, the relationship between iodine and the cardiovascular system is currently unclear. Therefore, the aim of this study was to investigate the effects of IE on endothelial function in mouse model. METHODS: A total of 24 NOD.H-2h4 mice were randomly divided into different groups. A sodium iodide (NaI) group supplied with 0.05% NaI water for 8 weeks. Serum levels of tumor necrosis factors α (TNFα), interleukin-6 (IL-6) and C-reactive Protein (CRP), as well as endothelin-1 (ET-1), von Willebrand factor (VWF) and thrombomodulin (THBD) were detected by Elisa. In addition, the mRNA and protein expression of these genes were measured by RT-PCR and Western blotting. RESULTS: Here, we found the urinary iodine concentration (UIC) was higher in the NaI group compared to the control group. Serum levels of ET-1, VWF, and THBD were also significantly lower in the NaI group, however, CRP serum levels are significantly increased. In aorta, the mRNA and protein expression of ET-1, VWF, THBD were downregulated, however, the expression of IL-6, CRP and TNFα mRNA and protein were upregulated in the NaI group. A correlation analysis showed negative correlation between UIC with ET-1, VWF, and THBD, similarly, negative correlation between CRP with THBD was observed. In addition, positive correlations between UIC with CRP. CONCLUSION: Collectively, in the NOD.H-2h4 mice, IE supplementation had a suppressive effect on endothelial function, and this inhibition maybe due to the increase expression of inflammatory cytokines.


Subject(s)
Iodine , Thyroiditis, Autoimmune , Mice , Animals , Interleukin-6 , Iodine/adverse effects , Tumor Necrosis Factor-alpha , von Willebrand Factor/adverse effects , Mice, Inbred NOD , Thyroiditis, Autoimmune/chemically induced , Thyroiditis, Autoimmune/genetics , RNA, Messenger
14.
Int Immunopharmacol ; 129: 111605, 2024 Mar 10.
Article in English | MEDLINE | ID: mdl-38316082

ABSTRACT

PURPOSE: This study aimed to evaluate the associations between disulfidptosis related genes-SLC3A2, SLC7A11 and FLNB polymorphisms and risk of autoimmune thyroiditis (AIT). METHODS: Six SNPs in the SLC3A2, SLC7A11 and FLNB were genotyped in 650 AIT cases and 650 controls using a MassARRAY platform. RESULTS: Minor alleles of SLC3A2-rs12794763, rs1059292 and FLNB-rs839240 might lead to a higher risk of AIT (p < 0.001), while SLC7A11-rs969319-C allele tends to decrease the risk of the disease (p = 0.006). Genetic model analysis showed that SLC3A2-rs12794763, SLC3A2-rs1059292 and FLNB-rs839240 polymorphisms were risk factors for AIT (p < 0.001); while SLC7A11-rs969319 showed a protective role for the disease in all genetic models (p < 0.005). Stratification analysis showed that SLC3A2-rs1059292 and rs12794763 were correlated with higher risk of AIT regardless of sex (p < 0.05). Moreover, FLNB-rs839240 exhibited higher risk of disease only in females (p < 0.05). By contrast, SLC7A11-rs969319 showed a protective role only in females (p < 0.05). CONCLUSION: Our results shed new light on the association between disulfidptosis-related genes and AIT risk.


Subject(s)
Hashimoto Disease , Thyroiditis, Autoimmune , Female , Humans , Thyroiditis, Autoimmune/epidemiology , Thyroiditis, Autoimmune/genetics , Alleles , Polymorphism, Single Nucleotide , China , Amino Acid Transport System y+ , Fusion Regulatory Protein 1, Heavy Chain , Filamins
15.
Eur J Med Res ; 28(1): 526, 2023 Nov 16.
Article in English | MEDLINE | ID: mdl-37974233

ABSTRACT

BACKGROUND: Recent studies have reported associations between body mass index (BMI) and various autoimmune disorders. However, it is still uncertain whether there exists a direct cause-and-effect relationship between BMI and autoimmune thyroiditis (AIT). The aim of our study is to investigate the causal association between BMI and AIT. METHODS: We conducted a two-sample summary data Mendelian randomization (MR) analysis using genome-wide association studies (GWAS) summary statistics data related to BMI as exposure, and GWAS summary statistic data sets for AIT as the outcome. Robustly associated single-nucleotide polymorphisms (SNPs) for BMI were selected as instrumental variables (IVs). We used the inverse variance weighted (IVW) method as the primary method and performed other MR methods such as MR-Egger regression, weighted median, simple mode, and weighted mode analyses for further validation. The slope of MR-Egger regression was used to correct for pleiotropy and provide estimates of causality. The p-value for the intercept in MR-Egger was utilized to detect any directional pleiotropic effects. Heterogeneity and sensitivity analyses were performed to assess the robustness of our findings. RESULTS: Seventy-eight SNPs were selected from GWAS on BMI as the IVs. Our MR analysis using the IVW method showed a potential causal association between BMI and AIT (OR = 3.071, 95% CI 1.324-7.118). Findings from other MR methods are non-significant, although the direction of effect is consistent. There was no evidence that the result was affected by genetic pleiotropy (MR-Egger regression intercept = 0.01, SE = 0.00025, p = 0.719). Heterogeneity and sensitivity analyses revealed no significant heterogeneity among SNPs, and no single SNP drove the observed associations. CONCLUSION: Our findings suggest a potential causal association between BMI and AIT, which may provide a basis for further investigation into the relationship between BMI and AIT. Further studies are required as only the IVW method shows significant results, and the case sample size is small.


Subject(s)
Arthritis, Rheumatoid , Thyroiditis, Autoimmune , Humans , Thyroiditis, Autoimmune/genetics , Thyroiditis, Autoimmune/complications , Body Mass Index , Mendelian Randomization Analysis , Genome-Wide Association Study , Arthritis, Rheumatoid/genetics , Polymorphism, Single Nucleotide/genetics
16.
Eur Thyroid J ; 12(5)2023 10 01.
Article in English | MEDLINE | ID: mdl-37548297

ABSTRACT

Objective: A vicious cycle between circadian disruption and escalating immune responses has been described in diverse inflammatory disease. The current study aimed to explore the role of circadian clock disruption in autoimmune thyroiditis (AIT). Methods: Thirty AIT patients and 30 controls were enrolled and biopsied for thyroid tissues. Alterations of core clock genes expression in AIT thyroid tissues, and its association with serum and tissue inflammatory biomarkers were assessed. For animal studies, C57BL/6J mice administered with porcine thyroglobulin or PBS (as control) combined with adjuvants were sacrificed at four time points to investigate the circadian characteristic of experimental autoimmune thyroiditis (EAT). Light shift (LS) conditions were used to explore the influence of external circadian disturbance on EAT. Results: The expression of clock genes BMAL1 and PER2 was significantly reduced in thyroid tissues from AIT patients and was negatively correlated to levels of thyroid peroxidase antibodies. In mouse models, diurnal fluctuations of proinflammatory cytokines were demonstrated, and further exposing mice to LS led to overproduction of TNF-α, IFN-γ, and anti-thyroglobulin antibodies. Circadian analysis revealed significant oscillations of Bmal1, Clock, Per2, Cry1, Ror, and Rev-erb, which was broadly disturbed in EAT, LS, and EAT + LS groups. Conclusions: This study demonstrates that expression pattern of clock genes was disrupted in AIT thyroid, and chronic circadian disruption may aggravate the inflammatory responses in AIT. Whether maintaining a regular circadian rhythm can alleviate autoimmune thyroid diseases warrants further research.


Subject(s)
Circadian Clocks , Hashimoto Disease , Thyroiditis, Autoimmune , Mice , Animals , Swine , Thyroiditis, Autoimmune/genetics , Circadian Clocks/genetics , ARNTL Transcription Factors/genetics , Mice, Inbred C57BL
17.
Georgian Med News ; (337): 99-103, 2023 Apr.
Article in English | MEDLINE | ID: mdl-37354681

ABSTRACT

Autoimmune thyroid disease (AITD) is a common organ-specific autoimmune disease. A strong influence of genetic and epigenetic modifications has been demonstrated to take part in the development and progression of autoimmune thyroid diseases. The linkage between the Vitamin D receptor (VDR) polymorphism and several autoimmune disorders, including the AITD. In this article, we aim to investigate the Frequency of VDR Fokl (rs2228570) genotypes (CC, CT, TT) and alleles (C,T) in autoimmune thyroiditis. The investigation of VDR Fokl (rs2228570) was conducted on 150 samples (control (75 healthy women) and diseased women (75 diseased with autoimmune thyroiditis)) patients from the Adjara (Georgia) Population. It also examined some clinical and laboratory characteristics of the study population. Autoimmune thyroiditis's disease was diagnosed by measuring blood antibodies, determining the level of thyroperoxidase, and conducting an ultrasound examination. Anti-TPO and TSH were studied using the ELISA method. The genomic DNA was extracted from the peripheral blood. The polymerase chain reaction was evaluated to examine the VDR Fokl rs2228570 SNP polymorphism. According to VDR Fokl (rs2228570) genotypes (CC; CT, TT) frequency, in the control group, the Frequency of CC-genotype is 48%, CT-heterozygous genotype is 29.33%, and TT-genotype is 22.67%; in the diseased population, the Frequency of CC-genotype is 57.33%, CT-genotype is 34.67%, and TT-genotype is 8%. According to VDR Fokl (rs2228570) alleles (C, T), the Frequency of the C-allele is high, and the Frequency of the T-allele is low in both populations. The Frequency of the CC and CT genotypes of VDR Fokl (rs2228570) is high in the population with autoimmune thyroiditis compared to the control group; the TT genotype is relatively low in the population suffering from autoimmune thyroiditis; According to VDR Fokl (rs2228570) alleles (C, T), the Frequency of C-allele is high both population.


Subject(s)
Hashimoto Disease , Thyroiditis, Autoimmune , Humans , Female , Thyroiditis, Autoimmune/diagnosis , Thyroiditis, Autoimmune/genetics , Genetic Predisposition to Disease , Gene Frequency , Receptors, Calcitriol/genetics , Georgia (Republic) , Genotype , Polymorphism, Single Nucleotide , Case-Control Studies
18.
Sci Transl Med ; 15(696): eadg0675, 2023 05 17.
Article in English | MEDLINE | ID: mdl-37196065

ABSTRACT

Autoimmune toxicity occurs in up to 60% of patients treated with immune checkpoint inhibitor (ICI) therapy for cancer and represents an increasing clinical challenge for expanding the use of these treatments. To date, human immunopathogenic studies of immune-related adverse events (IRAEs) have relied on sampling of circulating peripheral blood cells rather than affected tissues. Here, we directly obtained thyroid specimens from individuals with ICI-thyroiditis, one of the most common IRAEs, and compared immune infiltrates with those from individuals with spontaneous autoimmune Hashimoto's thyroiditis (HT) or no thyroid disease. Single-cell RNA sequencing revealed a dominant, clonally expanded population of thyroid-infiltrating cytotoxic CXCR6+ CD8+ T cells (effector CD8+ T cells) present in ICI-thyroiditis but not HT or healthy controls. Furthermore, we identified a crucial role for interleukin-21 (IL-21), a cytokine secreted by intrathyroidal T follicular (TFH) and T peripheral helper (TPH) cells, as a driver of these thyrotoxic effector CD8+ T cells. In the presence of IL-21, human CD8+ T cells acquired the activated effector phenotype with up-regulation of the cytotoxic molecules interferon-γ (IFN-γ) and granzyme B, increased expression of the chemokine receptor CXCR6, and thyrotoxic capacity. We validated these findings in vivo using a mouse model of IRAEs and further demonstrated that genetic deletion of IL-21 signaling protected ICI-treated mice from thyroid immune infiltration. Together, these studies reveal mechanisms and candidate therapeutic targets for individuals who develop IRAEs.


Subject(s)
Thyroiditis , Humans , CD8-Positive T-Lymphocytes/metabolism , Hashimoto Disease , Interleukins , Thyroiditis, Autoimmune/genetics , Thyroiditis, Autoimmune/pathology , Thyroiditis/chemically induced , Thyroiditis/immunology
19.
Br J Nutr ; 130(12): 2039-2052, 2023 12 28.
Article in English | MEDLINE | ID: mdl-37183696

ABSTRACT

Iodine is an essential nutrient that may change the occurrence of autoimmune thyroiditis (AIT). Apoptosis and DNA methylation participate in the pathogenesis and destructive mechanism of AIT. We detected the methylation and the expression of mRNA of intrinsic apoptosis-associated genes (YWHAG, ING4, BRSK2 and GJA1) to identify the potential interactions between the levels of methylation in these genes and different levels of iodine. 176 adult patients with AIT in Shandong Province, China, were included. The MethylTargetTM assay was used to verify the levels of methylation. We used PCR to detect the mRNA levels of the candidate genes. Interactions between methylation levels of the candidate genes and iodine levels were evaluated with multiplicative and addictive interaction models and GMDR. In the AIT group, YWHAG_1 and six CpG sites and BRSK2_1 and eight CpG sites were hypermethylated, whereas ING4_1 and one CpG site were hypomethylated. A negative correlation was found between methylation levels of YWHAG and mRNA expression. The combination of iodine fortification, YWHAG_1 hypermethylation and BRSK2_1 hypermethylation was significantly associated with elevated AIT risk. A four-locus model (YWHAG_1 × ING4_1 × BRSK2_1 × iodine level) was found to be the best model of the gene-environment interactions. We identified abnormal changes in the methylation status of YWHAG, ING4 and BRSK2 in patients with AIT in different iodine levels. Iodine fortification not only affected the methylation levels of YWHAG and BRSK2 but also interacted with the methylation levels of these genes and may ultimately increase the risk of AIT.


Subject(s)
Iodine , Thyroiditis, Autoimmune , Adult , Humans , Thyroiditis, Autoimmune/genetics , DNA Methylation , Iodine/metabolism , Gene-Environment Interaction , Apoptosis/genetics , RNA, Messenger/metabolism , 14-3-3 Proteins/genetics , 14-3-3 Proteins/metabolism
20.
J Vis Exp ; (193)2023 03 17.
Article in English | MEDLINE | ID: mdl-37010279

ABSTRACT

In recent years, Hashimoto's thyroiditis (HT) has become the most common autoimmune thyroid disease. It is characterized by lymphocyte infiltration and the detection of specific serum autoantibodies. Although the potential mechanism is still not clear, the risk of Hashimoto's thyroiditis is related to genetic and environmental factors. At present, there are several types of models of autoimmune thyroiditis, including experimental autoimmune thyroiditis (EAT) and spontaneous autoimmune thyroiditis (SAT). EAT in mice is a common model for HT, which is immunized with lipopolysaccharide (LPS) combined with thyroglobulin (Tg) or supplemented with complete Freund's adjuvant (CFA). The EAT mouse model is widely established in many types of mice. However, the disease progression is more likely associated with the Tg antibody response, which may vary in different experiments. SAT is also widely used in the study of HT in the NOD.H-2h4 mouse. The NOD.H2h4 mouse is a new strain obtained from the cross of the nonobese diabetic (NOD) mouse with the B10.A(4R), which is significantly induced for HT with or without feeding iodine. During the induction, the NOD.H-2h4 mouse has a high level of TgAb accompanied by lymphocyte infiltration in the thyroid follicular tissue. However, for this type of mouse model, there are few studies to comprehensively evaluate the pathological process during the induction of iodine. A SAT mouse model for HT research is established in this study, and the pathologic changing process is evaluated after a long period of iodine induction. Through this model, researchers can better understand the pathological development of HT and screen new treatment methods for HT.


Subject(s)
Iodine , Thyroiditis, Autoimmune , Mice , Animals , Thyroiditis, Autoimmune/genetics , Thyroiditis, Autoimmune/pathology , Autoantibodies , Mice, Inbred NOD , Dietary Supplements , Disease Models, Animal
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