Pathophysiologic Effects of Stable Iodine Used as a Thyroidal Blocking Agent to Reduce Thyroid Radiation Exposure. Final Progress Report, November 1, 1976--December 31, 1977

Pathophysiologic Effects of Stable Iodine Used as a Thyroidal Blocking Agent to Reduce Thyroid Radiation Exposure. Final Progress Report, November 1, 1976--December 31, 1977 PDF Author:
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Languages : en
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In order to determine whether acute administration of iodide leads to any undesirable effects in the general population, we studied a group of patients who received iodinated radiographic contrast medium in the course of routine x-ray diagnostic procedures. We were particularly interested in investigating the possibility that administration of iodine could damage thyroid follicular cells leading to release of intrathyroidal antigens such as thyroglobulin into the blood. An increase in serum thyroglobulin might, in turn, either initiate or exacerbate thyroid autoimmunity in susceptible individuals, leading to autoimmune thyroiditis. We looked for undesirable effects due to the administration of iodide in 3 ways: a possible acute toxic effect on thyroid follicular cells was investigated by determining serum thyroglobulin immediately prior to and 24 hours after injection of iodinated contrast medium; an effect on thyroid autoimmunity was investigated by determining thyroid autoantibodies immediately prior to and 3 to 6 months after injection of iodinated contrast medium; and acute and chronic effects on thyroid function were investigated by performing thyroid function tests immediately prior to, 24 hours after and 3 to 6 months after injection of iodinateed contrast medium.

Pathophysiologic Effects of Stable Iodine Used as a Thyroidal Blocking Agent to Reduce Thyroid Radiation Exposure. Final Progress Report, November 1, 1976--December 31, 1977

Pathophysiologic Effects of Stable Iodine Used as a Thyroidal Blocking Agent to Reduce Thyroid Radiation Exposure. Final Progress Report, November 1, 1976--December 31, 1977 PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Book Description
In order to determine whether acute administration of iodide leads to any undesirable effects in the general population, we studied a group of patients who received iodinated radiographic contrast medium in the course of routine x-ray diagnostic procedures. We were particularly interested in investigating the possibility that administration of iodine could damage thyroid follicular cells leading to release of intrathyroidal antigens such as thyroglobulin into the blood. An increase in serum thyroglobulin might, in turn, either initiate or exacerbate thyroid autoimmunity in susceptible individuals, leading to autoimmune thyroiditis. We looked for undesirable effects due to the administration of iodide in 3 ways: a possible acute toxic effect on thyroid follicular cells was investigated by determining serum thyroglobulin immediately prior to and 24 hours after injection of iodinated contrast medium; an effect on thyroid autoimmunity was investigated by determining thyroid autoantibodies immediately prior to and 3 to 6 months after injection of iodinated contrast medium; and acute and chronic effects on thyroid function were investigated by performing thyroid function tests immediately prior to, 24 hours after and 3 to 6 months after injection of iodinateed contrast medium.

Pathophysiologic Effects of Stable Iodine Used as a Thyroidal Blocking Agent to Reduce Thyroid Radiation Exposure. Progress Report, November 1, 1975--October 31, 1976. [/sup 125/I Tracer Technique]

Pathophysiologic Effects of Stable Iodine Used as a Thyroidal Blocking Agent to Reduce Thyroid Radiation Exposure. Progress Report, November 1, 1975--October 31, 1976. [/sup 125/I Tracer Technique] PDF Author:
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Category :
Languages : en
Pages :

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In an effort to determine whether iodide administration in man can induce injury to thyroid follicular cells similar to that demonstrated in lower animals, this study measures thyroglobulin, thyroxine and triiodothyronine and thyroid autoantibodies in the serum before and after administration of iodine in a variety of patients. In the last eight months primary efforts have been devoted to the development of a high specificity and sensitivity radioimmunoassay of thyroglobulin and its preliminary clinical application. Human thyroglobulin obtained from operative specimens was purified and its identity and purity established. Rabbits were injected with thyroglobulin for 30 weeks with the appearance of significant titres of antibodies within 6 weeks. The antibody developed was examined for immunological purity and used in a radioimmunoassay system with thyroglobulin labeled in this Laboratory with /sup 125/I.

Energy Research Abstracts

Energy Research Abstracts PDF Author:
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Category : Power resources
Languages : en
Pages : 988

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ERDA Energy Research Abstracts PDF Author: United States. Energy Research and Development Administration
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Category : Medicine
Languages : en
Pages : 818

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Category : Nuclear energy
Languages : en
Pages : 564

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Government Reports Announcements & Index PDF Author:
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Category : Science
Languages : en
Pages : 1064

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Government Reports Annual Index PDF Author:
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Category : Government reports announcements & index
Languages : en
Pages : 936

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Toxicological Profile for Iodine PDF Author:
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Category : Environmental toxicology
Languages : en
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Category : Environmental monitoring
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Graves’ Disease

Graves’ Disease PDF Author: Basil Rapoport
Publisher: Springer Science & Business Media
ISBN: 1461544076
Category : Medical
Languages : en
Pages : 328

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Book Description
From the perspective of the investigator, Graves' disease is a fascinating disorder with unique features and opportunities for study. The discovery in 1956 that Graves' disease was caused by a humoral factor, later shown to be an antibody to the TSH receptor, was a triumph for modern investigative medicine. Rapid progress is now being made in (i) understanding the molecular interaction between autoantibodies and the TSH receptor, (ii) identifying the genes that contribute to the predisposition to disease, (iii) developing an animal model of Graves' disease, and (iv) identifying the long-sought orbital antigen in ophthalmopathy. From the clinical standpoint, although Graves' disease is eminently treatable, there is no definitive cure. None of the therapeutic options are ideal. It is hoped that rapid progress in understanding the pathogenesis of the disease will lead to the ultimate goal of some form of immunotherapy that will make antithyroid drugs, radioiodine and thyroidectomy obsolete. The chapters in Graves' Disease: Pathogenesis and Treatment represent the viewpoints of many prominent clinicians and investigators working in the field. The editors are grateful for their contributions which cover an unusually comprehensive compendium of subjects relating to the disease.