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A Söderbergh

Publications and source records attributed to A Söderbergh.

5 recordsLinked to original sources

Autoantibodies against aromatic L-amino acid decarboxylase identifies a subgroup of patients with Addison's disease.

Autoantibodies against aromatic L-amino acid decarboxylase (AADC) are present in about 50 percent of sera from patients with autoimmune polyendocrine syndrome type I (APS I) but absent in sera from patients with different organ-specific autoimmune diseases, such as insulin-dependent diabetes mellitus, Hashimoto's thyroiditis, and Graves' disease. AADC is expressed in the pancreatic beta-cells, the liver, and the nervous system; and the presence of AADC antibodies has been shown to correlate to hepatitis and vitiligo in APS I patients. Among 101 investigated patients with autoimmune Addison's disease, 15 had high titers of AADC antibodies. According to the clinical characteristics of these patients, only 3 had APS I. The remaining 12 had either isolated Addison's disease or associated diabetes mellitus, hypothyroidism, vitiligo, alopecia, gonadal failure, and pernicious anemia. Autoantibodies against 21-hydroxylase were present in 9 of 12, whereas autoantibodies against side-chain cleavage enzyme and 17alpha-hydroxylase were present in 3 of 12. Two patients had only autoantibodies against AADC. DNA was available from 3 of these 12 patients. One of the patients, a woman with Addison's disease, autoimmune thyroiditis, and premature menopause was heterozygous for a point mutation (G1021A, Val301Met) in the first plant homeodomain zinc finger domain of the autoimmune regulator (AIRE) gene. The presence of AADC autoantibodies identifies patients with APS I and a subgroup of Addison patients who may have a milder atypical form of APS I or represent a distinct entity. Measurement of autoantibodies against AADC should be included in the evaluation of Addison's disease.

17-Hydroxysteroid Dehydrogenases↗

The autoimmune basis of adrenocortical destruction in Addison's disease.

Addison's disease is mainly caused by autoimmune destruction of the steroid-producing cells in the adrenal glands. Key enzymes in steroid biosynthesis have been implicated as the major targets of autoantibodies in this disease. The study of B-cell-dependent autoimmune responses reveals two distinguishable forms of Addison's disease. This should permit very accurate diagnosis of the disease and increase future prospects of disease prevention.

Addison Disease↗

Adrenal autoantibodies and organ-specific autoimmunity in patients with Addison's disease.

OBJECTIVE: Autoimmune destruction of the adrenal gland is the major cause of Idiopathic Addison's disease, but the significance of 21-hydroxylase autoantibodies and their correlation with the presence of other autoantibodies have not so far been investigated in a larger population of patients with Addison's disease. We have now characterized a cohort of patients with idiopathic Addison's disease (n = 97) regarding the specificity of autoantibodies against the adrenal cortex and, as Addison's disease can be either an isolated condition or part of a polyendocrine disorder, we investigated the presence of organ-specific polyendocrine autoimmunity in this patient population. DESIGN: Cross-sectional study. MEASUREMENTS: Autoantibodies were analysed with indirect immunofluorescence (IF) on tissue preparations, ELISA and in Western blots using bacterially expressed proteins. RESULTS: Eighty-four per cent (81/97) of the patient sera recognized the steroid-producing cells of the adrenal cortex in indirect IF. The antigen was identified as 21-hydroxylase by 72% (70/97) of the patient sera in Western blots. Seven sera that were negative on adrenocortical IF identified 21-hydroxylase on Western blot, while eight IF-positive sera were 21-hydroxylase-negative. Five sera weakly recognized 17 alpha-hydroxylase in Western blots, but all of these were also positive for 21-hydroxylase. In 13 cases (12 women), the sera also reacted with testicular Leydig cells, and nine of these identified the side-chain cleavage (SCC) enzyme. Other clinically evident organ-specific autoimmune disorders were present in 40% of the 97 patients and abnormal titres of organ-specific antibodies were found in 60% of the patients. CONCLUSIONS: In idiopathic Addison's disease, auto-antibodies against 21-hydroxylase are found in a majority of cases and this represents an important diagnostic tool. The enzyme 17 alpha-hydroxylase does not seem to constitute a major autoantigen in Addison's disease. In a subgroup of patients with autoantibodies to gonads, antibodies to SCC are produced, often in parallel with antibodies to 21-hydroxylase. In yet another subgroup the specificity of autoantibodies giving positive immunofluorescence is still unknown. Three patients revealed a polyendocrine syndrome which clinically resembles autoimmune polyendocrine syndrome (APS) type I, but serologically corresponds to APS type II. Polyendocrine disorders are often associated with Addison's disease, and screening, including quantification of autoantibodies, may help to identify those at risk of developing associated autoimmune disorders.

Addison Disease↗