Pregnancy in a Woman Suffering from Type 1 Diabetes Associated with Addison's Disease and Hashimoto's Thyroiditis (Fully Developed Autoimmune Polyglandular Syndrome Type 2)

2004 ◽  
Vol 112 (06) ◽  
pp. 333-337 ◽  
Author(s):  
K. Stechova ◽  
D. Bartaskova ◽  
M. Mrstinova ◽  
M. Cerny ◽  
M. Snajderova ◽  
...  
2005 ◽  
Vol 153 (6) ◽  
pp. 895-899 ◽  
Author(s):  
Heinrich Kahles ◽  
Elizabeth Ramos-Lopez ◽  
Britta Lange ◽  
Oliver Zwermann ◽  
Martin Reincke ◽  
...  

Background: Endocrine autoimmune disorders share genetic susceptibility loci, causing a disordered T-cell activation and homeostasis (HLA class II genes, CTLA-4). Recent studies showed a genetic variation within the PTPN22 gene to be an additional risk factor. Materials and Methods: Patients with type 1 diabetes (n = 220), Hashimoto’s thyroiditis (n = 94), Addison’s disease (n = 121) and healthy controls (n = 239) were genotyped for the gene polymorphism PTPN22 1858 C/T. Results: Our study confirms a significant association between allelic variation of the PTPN22 1858 C/T polymorphism and type 1 diabetes mellitus (T1D). 1858T was observed more frequently in T1D patients (19.3% vs 11.3%, P = 0.0009; odds ratio for allele T = 1.88, 95% confidence interval [1.3–2.7]). Furthermore, we found a strong association in female patients with T1D (P = 0.0003), whereas there was no significant difference between male patients with type 1 diabetes and male controls. No significant difference was observed between the distribution of PTPN22 C/T in patients with Hashimoto’s thyroiditis or Addison’s disease and healthy controls. Conclusion: The PTPN22 polymorphism 1858 C/T may be involved in the pathogenesis of type 1 diabetes mellitus by a sex-specific mechanism that contributes to susceptibility in females.


2021 ◽  
Vol 12 ◽  
Author(s):  
Roberto Perniola ◽  
Alessandra Fierabracci ◽  
Alberto Falorni

The autoimmune polyglandular syndrome type 1 (APS1) is caused by pathogenic variants of the autoimmune regulator (AIRE) gene, located in the chromosomal region 21q22.3. The related protein, AIRE, enhances thymic self-representation and immune self-tolerance by localization to chromatin and anchorage to multimolecular complexes involved in the initiation and post-initiation events of tissue-specific antigen-encoding gene transcription. Once synthesized, the self-antigens are presented to, and cause deletion of, the self-reactive thymocyte clones. The clinical diagnosis of APS1 is based on the classic triad idiopathic hypoparathyroidism (HPT)—chronic mucocutaneous candidiasis—autoimmune Addison's disease (AAD), though new criteria based on early non-endocrine manifestations have been proposed. HPT is in most cases the first endocrine component of the syndrome; however, APS1-associated AAD has received the most accurate biochemical, clinical, and immunological characterization. Here is a comprehensive review of the studies on APS1-associated AAD from initial case reports to the most recent scientific findings.


2004 ◽  
pp. 193-197 ◽  
Author(s):  
ER Lopez ◽  
O Zwermann ◽  
M Segni ◽  
G Meyer ◽  
M Reincke ◽  
...  

BACKGROUND: CYP27B1 hydroxylase catalyzes the conversion of 25 hydroxyvitamin D(3) (25OHD(3)) to 1,25(OH)(2)D(3), the most active natural vitamin D metabolite, which plays a role in the regulation of immunity and cell proliferation. We therefore investigated two single nucleotide polymorphisms in the CYP27B1 hydroxylase gene for an association with Addison's disease, Hashimoto's thyroiditis, Graves' disease and type 1 diabetes mellitus. METHODS: Patients with Addison's disease (n=124), Hashimoto's thyroiditis (n=139), Graves' disease (n=334), type 1 diabetes mellitus (n=252) and healthy controls (n=320) were genotyped for the promoter (-1260) C/A polymorphism and for the intron 6 (+2838) C/T polymorphism of the CYP27B1 gene. Patients and controls were compared using genotype-wise and allele-wise X(2) testing. RESULTS: A significant association was found between allelic variation of the promoter (-1260) C/A polymorphism and Addison's disease, Hashimoto's thyroiditis, Graves' disease and type 1 diabetes mellitus (P=0.0062, P=0.0173, P=0.0094 and P=0.0028 respectively). Significant differences were also observed for the intron 6 (+2838) C/T polymorphism (P=0.0058) in Hashimoto's thyroiditis but not for the other autoimmune endocrine diseases. CONCLUSIONS: The CYP27B1 promoter (-1260) C/A polymorphism appears to be associated with endocrine autoimmune diseases but the CYP27B1 intron 6 (+2838) C/T polymorphism appears to be associated only with Hashimoto's thyroiditis. These results imply a regulatory difference of the CYP27B1 hydroxylase to predispose to endocrine autoimmunity.


Author(s):  
Joana Lima Ferreira ◽  
Francisco Simões de Carvalho ◽  
Ana Paula Marques ◽  
Rosa Maria Príncipe

Summary Autoimmune polyglandular syndrome type 1 (APS-1) is a very rare autoimmune entity, accounting for about 400 cases reported worldwide. It is characterized by the presence of at least two of three cardinal components: chronic mucocutaneous candidiasis (CMC), hypoparathyroidism and Addison’s disease. It typically manifests in childhood with CMC and years later with hypoparathyroidism. A 50-year-old man was referred to the Endocrinology outpatient clinic due to irregular follow-up of primary hypoparathyroidism diagnosed at age 7. Previous analysis reported frequent fluctuations of calcium and phosphate levels and persistent hypercalciuria. He presented several comorbidities, including bilateral cataracts, other ocular disorders, transient alopecia and chronic gastritis. Due to weight loss, fatigue, gastrointestinal complaints and the findings at objective examination, Addison’s disease and CMC were investigated and confirmed. Antifungal therapy and hormonal replacement were started with evident clinical improvement. Regarding hypoparathyroidism, calcium-phosphate product decreased and other extraskeletal calcifications were diagnosed, such as nephrolithiasis and in basal ganglia. Further evaluation by genetic analysis revealed homozygosity for a frameshift mutation considered to be a pathogenic variant. It was reported only in two Asian siblings in compound heterozygosity. This case highlights the broad phenotypic spectrum of APS-1 and the significative intra-familial phenotype variability. A complete clinical history taking and high index of suspicion allowed the diagnosis of this rare entity. This case clarifies the need for regular long-term follow-up. In the specific case of hypoparathyroidism and Addison’s disease in combination, the management of APS-1 can be complex. Learning points: Autoimmune polyglandular syndrome type 1 (APS-1) is a deeply heterogeneous genetic entity with a broad spectrum of clinical manifestations and a significant intra-family phenotypic variability. Early diagnosis of APS-1 is challenging but clinically relevant, as endocrine and non-endocrine manifestations may occur during its natural history. APS-1 should be considered in cases of acquired hypoparathyroidism, and even more so with manifestations with early onset, family history and consanguinity. APS-1 diagnosis needs a high index of suspicion. Key information such as all the comorbidities and family aspects would never be valued in the absence of a complete clinical history taking. Especially in hypoparathyroidism and Addison’s disease in combination, the management of APS-1 can be complex and is not a matter of simply approaching individually each condition. Regular long-term monitoring of APS-1 is essential. Intercalary contact by phone calls benefits the control of the disease and the management of complications.


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