| Literature DB >> 35370946 |
Kaio Takahashi1, Takatoshi Anno1, Akio Matsuda1, Yukiko Kimura1, Fumiko Kawasaki1, Kohei Kaku1, Koichi Tomoda1, Hirofumi Kawamoto2, Hideaki Kaneto3.
Abstract
Type 1 diabetes mellitus (T1DM) is often complicated with some other autoimmune disorders. The complication of various autoimmune disorders is known as autoimmune polyglandular syndrome (APS). Once autoimmune thyroid disease develops, various autoimmune diseases can also occur. Such phenomena are classified as APS types 3A to 3D. In this report, we show the onset of T1DM in a patient with ulcerative colitis (UC) and Sjogren's syndrome. The most important and interesting point in this case is that, if we did not check her thyroid-associated antibodies, we could not have diagnosed her as APS. From the data of this case, we assumed that the patient suffered from APS type 3A, 3B, and 3D variants. This case pointed out very clearly the importance of testing for thyroid-associated antibodies under various autoimmune disease conditions even if the thyroid hormone levels are euthyroid. Moreover, based on the strong linkage between inflammatory bowel disease and T1DM and the compatibility with both T1DM and APS type 3, we think it is possible that Hashimoto's disease is present under complicated conditions together with UC and T1DM. It would be important to repeatedly check for thyroid-associated antibodies even in euthyroid patients, especially under various autoimmune disease conditions.Entities:
Keywords: Sjogren’s syndrome; autoimmune polyglandular syndrome (APS); euthyroid Hashimoto’s thyroiditis; type 1 diabetes mellitus; ulcerative colitis
Mesh:
Year: 2022 PMID: 35370946 PMCID: PMC8967944 DOI: 10.3389/fendo.2022.836102
Source DB: PubMed Journal: Front Endocrinol (Lausanne) ISSN: 1664-2392 Impact factor: 5.555
Laboratory data at the onset of type 1 diabetes mellitus in this patient.
| Variable | Result | Reference range | Variable | Result | Reference range |
|---|---|---|---|---|---|
|
|
| ||||
| White blood cells (/μl) | 3,340 | 3,300–8,600 | Plasma glucose (mg/dl) | 385 | |
| Red blood cells (×104/μl) | 446 | 386–492 | plasma insulin (μU/ml) | 1.2 | 1.84–12.2 |
| Hemoglobin (g/dl) | 12.9 | 11.6–14.8 | CPR (ng/ml) | 3.70 | 0.61–2.09 |
| Hematocrit (%) | 38.0 | 35.1–44.4 | Hemoglobin A1c (%) | 11.3 | 4.6–6.2 |
| Platelets (×104/μl) | 22.6 | 15.8–34.8 | Glycoalbumin (%) | 31.8 | 12.4–16.3 |
|
| Total cholesterol (mg/dl) | 159 | 142–248 | ||
| Total protein (g/dl) | 7.8 | 6.6–8.1 | LDL cholesterol (mg/dl) | 40 | 65–139 |
| Albumin (g/dl) | 4.3 | 4.1–5.1 | HDL cholesterol (mg/dl) | 55 | 40–90 |
| Globulin (g/dl) | 3.5 | 2.2–3.4 | Triglyceride (mg/dl) | 87 | 40–149 |
| Total bilirubin (mg/dl) | 0.9 | 0.4–1.5 |
| ||
| Direct bilirubin (%) | 16 | 30–52 | TSH (μU/ml) | 1.649 | 0.400–6.000 |
| AST (U/L) | 22 | 13–30 | Free triiodothyronine (pg/ml) | 3.18 | 2.5–4.20 |
| ALT (U/L) | 14 | 7–23 | Free thyroxine (ng/dl) | 0.92 | 0.80–1.60 |
| LDH (U/L) | 163 | 124–222 | ACTH (pg/ml) | 31.4 | 7.2–63.3 |
| ALP (U/L) | 288 | 106–322 | Cortisol (μg/dl) | 15.3 | 4.5–21.1 |
| γ-GTP (U/L) | 22 | 9–32 | DHEA-S (μg/dl) | 121 | 13–154 |
| BUN (mg/dl) | 16 | 8–20 | Aldosterone (pg/ml) | 174 | 4.0–82.1 |
| Creatinine (mg/dl) | 0.69 | 0.64–0.79 | Renin activity (ng ml−1 h−1) | 0.7 | 0.2–3.9 |
| Uric acid (mg/dl) | 4.3 | 2.6–5.5 |
| ||
| Amylase (μg/dl) | 129 | 44–132 | Urinary pH | 7.0 | 5.0–7.5 |
| CRP (mg/dl) | 0.06 | <0.14 | Urinary protein | – | – |
| Sodium (mmol/L) | 142 | 138–145 | Urinary sugar | 3+ | – |
| Potassium (mmol/L) | 3.6 | 3.6–4.8 | Urinary ketone body | 1+ | – |
| Chloride (mmol/L) | 106 | 101–108 | Urinary bilirubin | – | – |
| IP (mg/dl) | 3.9 | 2.7–4.6 | Urinary blood | – | – |
| Calcium (mg/dl) | 9.0 | 8.8–10.1 | |||
| Magnesium (mg/dl) | 2.0 | 1.9–2.6 | |||
AST, aspartate aminotransferase; ALT, alanine aminotransferase; LDH, lactate dehydrogenase; ALP, alkaline phosphatase; γ-GTP, γ-glutamyl transpeptidase; BUN, blood urea nitrogen; CRP, C-reactive protein; IP, inorganic phosphorus; CPR, C-peptide immunoreactivity; LDL, low-density lipoprotein; HDL, high-density lipoprotein; TSH, thyroid-stimulating hormone; ACTH, adrenocorticotropic hormone; DHEA-S, dehydroepiandrosterone sulfate.
Disease-specific antibodies and HLA DNA typing in this subject.
| Variable | Result | Reference range |
|---|---|---|
| Anti-glutamic acid decarboxylase Ab (U/ml) | 1,6878.7 | <5.0 |
| Anti-insulinoma-associated protein 2 Ab (U/ml) | Negative | 0–0.3 |
| Ant-islet cell Ab (JDF unit) | Negative | <1.25 |
| Anti-zinc transporter 8 Ab (U/ml) | Negative | <15.0 |
| Anti-insulin Ab (nU/ml) | <125.0 | <125.0 |
| Anti-nuclear Ab | 105 (+) | <20.0 |
| Rheumatoid factor (U/ml) | 165 | 0–15 |
| Anti-ds-DNA Ab (IU/ml) | <10 | 0–12 |
| Anti-ribonucleoprotein Ab (U/ml) | <2.0 | <10.0 |
| Anti-Smith Ab (U/ml) | 3.0 | <10.0 |
| Anti-Scl-70 Ab (U/ml) | 1.8 | <10.0 |
| Anti-centromere Ab (index) | <5.0 (−) | <10.0 |
| Anti-Jo-1 Ab (U/ml) | 2.6 | <10.0 |
| Lupus anticoagulant | 1.07 | <1.3 |
| Anti-cardiolipin immunoglobulin G Ab (U/ml) | ≤1.2 | <3.5 |
| Anti-cardiolipin β2-glycoprotein I Ab (U/ml) | ≤8 | <10 |
| Anti-SS-A/Ro Ab (U/ml) | ≥256 | Negative |
| Anti-SS-B/La Ab (U/ml) | 16.3 | Negative |
| Anti-cyclic citrullinated peptide Ab (U/ml) | <0.5 | <4.5 |
| Matrix metalloproteinase-3 (ng/ml) | 50.3 | 17.3–59.7 |
| Myeloperoxidase–anti-neutrophil cytoplasmic antibody (U/ml) | <1.0 | <3.5 |
| Proteinase 3-antineutrophil cytoplasmic antibody (U/ml) | 1.3 | <3.5 |
| Anti-aminoacyl-tRNA synthetase Ab | 6.3 negative | <25.0 |
| Antimitochondrial M2 antibody | <1.5 negative | <7.0 |
| Anti-thyrotropin receptor Ab (IU/L) | <1.0 | <1.0 |
| Anti-thyroid stimulating Ab (%) | 110 | 0–120 |
| Anti-thyroid peroxidase Ab (IU/ml) | ≥600 | <16.0 |
| Anti-thyroglobulin Ab (IU/ml) | 277.5 | <28.0 |
| HLA DNA typing |
| |
HLA, human leukocyte antigen; Ab, antibody; JDF, Juvenile Diabetes Foundation.
Figure 1(A, B) Oral glucose tolerance test (OGTT, 75 g) (A) and glucagon stimulation test (GST) (B) after reduction of glucose toxicity. Both the 75 g OGTT and GST results revealed that the patient’s insulin secretory capacity was decreased, although not exhausted.
Classification of autoimmune polyglandular syndrome (APS) according to Neufeld and Blizzard (2, 4, 8).
| APS type 1 | Chronic candidiasis, chronic hypoparathyroidism, autoimmune Addison’s disease (at least two present) |
| APS type 2 | Autoimmune Addison’s disease + autoimmune thyroid diseases and/or type 1 diabetes mellitus (Addison’s disease must always be present) |
| APS type 3 | Thyroid autoimmune diseases + other autoimmune diseases (excluding autoimmune Addison’s disease, hypoparathyroidism, and chronic candidiasis) |
| APS type 4 | Two or more organ-specific autoimmune diseases (which do not fall into type 1, 2, or 3) |
Characteristics of autoimmune polyglandular syndrome (APS) type 3 (2, 4).
| Autoimmune thyroid diseases | |||
| Hashimoto’s thyroiditisAsymptomatic autoimmune thyroiditis | Graves’ disease | Idiopathic myxedema Endocrine ophthalmopathy | |
| + | + | + | + |
| Type 1 diabetes mellitus | Chronic atrophic gastritis | Vitiligo | SLE or DLE |
| 3A | 3B | 3C | 3D |
POF, premature ovarian failure; SLE, systemic lupus erythematosus; DLE, discoid lupus erythematosus.