Sandbox Reserved 1650: Difference between revisions

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Since serum TG levels are correlated with the volume of thyroid tissue, we can also estimate the mass of thyroid tissue to detect hyperthyroidism, a disease related to an enlarged thyroid or, conversely, hypothyroidism.
Since serum TG levels are correlated with the volume of thyroid tissue, we can also estimate the mass of thyroid tissue to detect hyperthyroidism, a disease related to an enlarged thyroid or, conversely, hypothyroidism.
   
   
For example, thyroidectomy and a 131I therapy can be performed to cure thyroid cancer with an 80% chance. Following removal and 131I therapy, thyroglobulin is this time produced by malignant thyrocytes. As a result, its blood level is indistinguishable from that of a healthy person.  
For example, thyroidectomy and a iodine-131 therapy can be performed to cure thyroid cancer with an 80% chance. Following removal and iodine-131 therapy, thyroglobulin is this time produced by malignant thyrocytes. As a result, its blood level is indistinguishable from that of a healthy person.  
But in case of recurrence and persistence of cancer, its level can increase again. Thyroglobulin therefore always serves as a tumor marker allowing us to estimate the risk of recurrence (>2ng/ml) or persistence (>1ng/ml) or remission.
But in case of recurrence and persistence of cancer, its level can increase again. Thyroglobulin therefore always serves as a tumor marker allowing us to estimate the risk of recurrence (>2ng/ml) or persistence (>1ng/ml) or remission.



Revision as of 17:35, 14 January 2021

This Sandbox is Reserved from 26/11/2020, through 26/11/2021 for use in the course "Structural Biology" taught by Bruno Kieffer at the University of Strasbourg, ESBS. This reservation includes Sandbox Reserved 1643 through Sandbox Reserved 1664.
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Human thyroglobulin (TG)

Human thyroglobulin

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References